975 resultados para 41 kDa protein
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With the aim of characterizing specific immunogenic proteins of Mycoplasma mycoides subsp. mycoides small colony (SC) type, the aetiological agent of contagious bovine pleuropneumonia, a gene encoding a major immunogenic protein of 72 kDa named P72 was cloned and expressed in Escherichia coli. The expressed protein was of the same apparent molecular mass as that produced by the parent strain. The predicted molecular mass of P72, based on the DNA-deduced amino acid sequence, was 61.118 kDa, significantly lower than the apparent molecular mass of endogenous or recombinant P72 on SDS-PAGE. Analysis of the amino acid sequence revealed a typical prokaryotic signal peptidase II-membrane lipoprotein lipid attachment site and a transmembrane structure domain in the leader sequence at the amino-terminal end of the protein. P72 was shown to be a lipoprotein and its surface location was confirmed by trypsin treatment of whole cells. An unassigned gene encoding a peptide with some similarity to P72 was found on the genome sequence of M. capricolum subsp. capricolum but not on that of Mycoplasma genitalium. The P72 gene was detected in 11/11 M. mycoides subsp. mycoides SC strains. Antiserum against recombinant P72 reacted strongly with 12/12 strains of M. mycoides subsp. mycoides SC, weakly with Mycoplasma bovine group 7 strain PG50, but not with other members of the 'mycoides cluster' or closely related mycoplasmas. Cows experimentally contact-infected with M. mycoides subsp. mycoides SC developed a humoral response against P72 within 35 d. P72 is a specific antigenic membrane lipoprotein of M. mycoides subsp. mycoides SC with potential for use in development of diagnostic reagents. It seems to belong to a family of lipoproteins of the "mycoides cluster'.
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PURPOSE To evaluate the safety, tolerability and bioactivity of ascending doses of MP0112, a designed ankyrin repeat protein (DARPin) that binds with high affinity to vascular endothelial growth factor-A (VEGF-A), in treatment-naive patients with exudative age-related macular degeneration (AMD). DESIGN Phase I/II, open-label, multicenter, dose-escalation study. METHODS Patients were to receive a single intravitreal injection of MP0112 at doses ranging from 0.04 to 3.6 mg and be monitored for 16 weeks for safety, efficacy, pharmacokinetics, and dose response. RESULTS Altogether, 32 patients received a single injection of MP0112. The maximum tolerated dose was 1.0 mg because of a case of endophthalmitis in the 2.0 mg cohort. Drug-related adverse events were reported by 13 (41%) of 32 patients; they included ocular inflammation in 11 patients (7 mild, 4 moderate in severity). Visual acuity scores were stable or improved compared with baseline for ≥4 weeks following injection; both retinal thickness and fluorescein angiography leakage decreased in a dose-dependent manner. Rescue therapy was administered to 20 (91%) of 22 patients who received 0.04-0.4 mg MP0112 compared with 4 of 10 (40%) patients who received 1.0 or 2.0 mg. Of patients in the higher-dose cohorts who did not require rescue treatment, 83% (5/6) maintained reductions in central retinal thickness through week 16. CONCLUSIONS A single injection of 1.0 or 2.0 mg MP0112 resulted in mean decreases in retinal thickness and leakage area despite ocular inflammation. Larger-scale studies are warranted to confirm these observations.
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Mitochondrial protein import is an essential function of the unique mitochondrion in T. brucei as roughly 1000 different nuclear encoded proteins need to be correctly localized to their mitochondrial subcompartment. For this reason the responsible import machinery is expected to be similarly complex as in other Eukaryotes. This was recently demonstrated for the translocation machinery in the outer mitochondrial membrane. In contrast, the composition of the inner membrane import machinery and the exact molecular pathway(s) taken by various substrates are still ill-defined. To elucidate this further, we performed a pulldown analysis of epitope tagged TbTim17 in combination with quantitative mass spectrometry. By this we identified novel components of the mitochondrial import machinery in trypanosomes. One of these, TimX, is an essential mitochondrial membrane protein of 42 kDa that is unique to kinetoplastids. This protein migrates on Blue Native PAGE in a high molecular weight complex similar to TbTim17. Ablation of either of the two proteins leads to a destabilization of the complex containing the other protein. Furthermore, its involvement in protein import could be demonstrated by in vivo and in vitro protein import assays. This corroborates that TimX together with TbTim17 forms a protein import complex in the inner mitochondrial membrane. As TbTim17 the TimX protein was subjected to pulldown analysis in combination with quantitative mass spectrometry. The overlap of candidates defined by these two sets of IPs likely defines further components of the inner membrane translocase which are presently being analyzed. In summary our study on novel components of the trypanosome mitochondrial protein import system gives us fascinating new insights into evolution of the mitochondrion.
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Previous studies have demonstrated the serologic and T-cell immunogenicity for cattle of a recombinant form of the apical complex-associated 77-kDa merozite protein of Babesia bovis, designated Bb-1. The present study characterizes the immunogenic epitopes of the Bb-1 protein. A series of recombinant truncated fusion proteins spanning the majority of the Bb-1 protein were expressed in Escherichia coli, and their reactivities with bovine peripheral blood mononuclear cells and T-cell clones derived from B. bovis-immune cattle and with rabbit antibodies were determined. Lymphocytes from two immune cattle were preferentially stimulated by the N-terminal half of the Bb-1 protein (amino acids 23 to 266, termed Bb-1A), localizing the T-cell epitopes to the Bb-1A portion of the molecule. CD4+ T-cell clones derived by stimulation with the intact Bb-1 fusion protein were used to identify two T-cell epitopes in the Bb-1A protein, consisting of amino acids SVVLLSAFSGN VWANEAEVSQVVK and FSDVDKTKSTEKT (residues 23 to 46 and 82 to 94). In contrast, rabbit antiserum raised against the intact fusion protein reacted only with the C-terminal half of the protein (amino acids 267 to 499, termed Bb-1B), which contained 28 tandem repeats of the tetrapeptide PAEK or PAET. Biological assays and Northern (RNA) blot analyses for cytokines revealed that following activation with concanavalin A, T-cell clones reactive against the two Bb-1A epitopes produced interleukin-2, gamma interferon, and tumor necrosis factors beta and alpha, but not interleukin-4, suggesting that the Bb-1 antigen preferentially stimulates the Th1 subset of CD4+ T cells in cattle. The studies described here report for the first time the characterization, by cytokine production, of the Th1 subset of bovine T cells and show that, as in mice, protozoal antigens can induce Th1 cells in ruminants. This first demonstration of B. bovis-encoded Th1 cell epitopes provides a rationale for incorporation of all or part of the Bb-1 protein into a recombinant vaccine.
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Interferons (IFNs) have been shown to exert antiviral, cell growth regulatory, and immunomodulatory effects on target cells. Both type I (α and β) and type II (γ) IFNs regulate cellular activities by specifically inducing the expression or activation of endogenous proteins that perform distinct biological functions. p202 is a 52 kDa nuclear phosphoprotein known to be induced by IFNs. p202 interacts with a variety of cellular transcription and growth regulatory factors and affects their functions. ^ In this report, we showed that the expression of p202 was associated with an anti-proliferative effect on human prostate cancer cells. Cells that expressed p202 showed reduced ability to grow in soft-agar, indicating a loss of transformation phenotype. More importantly, p202 expression reduced the tumorigenicity of human prostate cancer cells. p202-expressing cells exhibit an elevated level of hypophosphorylated form of pRb, and reduced level of cyclin B1 and p55CDC. ^ Our data suggest that p202 is a growth inhibitor gene in prostate cancer cells and its expression may also suppress transformation phenotype and tumorigenicity of prostate cancer cells. ^ In addition to inhibiting in vitro cell growth, suppressing the tumorigenicity of breast cancer cells in vivo, p202 expression could sensitize breast cancer cells to apoptosis induced by TNF-α treatment. One possible mechanism contributing to this sensitization is the inactivation of NF-κB by its interaction with p202. These results provide a scientific basis for a novel therapeutic strategy that combines p202 and TNF-α treatment against breast cancer. ^ It has been reported that NF-κB is constitutively active in human pancreatic cancer cells. Since p202 interacts with NF-κB and inhibits its activity, we examined a potential p202-mediated anti-tumor activity in pancreatic cancer. We used both ectopic and orthotopic xenograft models and demonstrated that p202 expression is associated with multiple anti-tumor activities that include inhibition of tumor growth, reduced tumorigenicity, prolonged survival, and remarkably, suppression of metastasis and angiogenesis. In vitro invasion assay also showed that p202-expressing pancreatic cancer cells are less invasive than those without p202 expression. That observation was supported by the findings that p202-expressing tumors showed reduced expression of angiogenic factors such as IL-8, and VEGF by inhibiting their transcription, and p202-expressing pancreatic cancer cells have reduced level of MAP-2 activity, a secreted protease activity important for metastasis. Together, our results strongly suggest that p202 expression mediates multiple anti-tumor activities against pancreatic cancer, and that may provide a scientific basis for developing a p202-based gene therapy in pancreatic cancer treatment. ^ Importantly, we demonstrated a treatment efficacy by using p202/SN2 liposome complex in a nude mice orthotopic breast cancer, and an ectopic pancreatic cancer xenograft model, through systemic and intra-tumor injection respectively. These results suggest a feasibility of using p202/SN2 liposome in future pre-clinical gene therapy experiments. ^
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Overexpression of insulin-like growth factor binding protein 2 (IGFBP2) is associated with progression and poor survival in many types of human cancer (such as prostate, ovarian, adrenocortical, breast, colorectal carcinomas, leukemia, and high-grade gliomas). We therefore hypothesize that IGFBP2 is a key regulator of tumor progression. We tested our hypothesis in gliomas using the somatic gene transfer RCAS-tva mouse model system, which permits the introduction of specific genes into specific, cell lineages, in this case glial cells (RCAS: Replication competent avian sarcomavirus, tv-a: avian RCAS virus receptor). Mice are transgenic and harbor the tv-a receptor under the control of a glial-specific promoter and study genes are cloned into the RCAS vector for post-natal intracranial delivery. For these experiments, the study genes were IGFBP2, platelet-derived growth factor B (PDGFB), K-Ras, Akt, and IIp45 (invasion inhibitory protein 45 kDa; known to bind and block IGFBP2 activity), which were delivered separately and in combination. Our results show that PDGFB signaling leads exclusively to the formation of low-grade (WHO grade II) oligodendrogliomas. PDGFB delivered in combination with IGFBP2 results in the formation of anaplastic oligodendrogliomas (WHO grade III), which are characterized by increased cellularity, vascular proliferation, small regions of necrosis, increased mitotic activity, and increased activation of the Akt pathway. IIp45 injected in combination with PDGFB and IGFBP2 ablates IGFBP2-induced tumor progression, which results in formation of low-grade oligodendrogliomas, and an overall reduction in tumor incidence. K-Ras expression was required to form astrocytomas with either IGFBP2 or Akt, indicating the activation of two separate pathways is necessary for gliomagenesis. In ex vivo experiments, blockade of Akt by an inhibitor led to decreased viability of cells co-expressing IGFBP2 versus PDGFB expression alone. This study provides definitive evidence, for the first time, that: (1) IGFBP2 plays a role in activation of the Akt pathway, (2) IGFBP2 collaborates with K-Ras or PDGFB in the development and progression of two major types of glioma, and (3) IGFBP2-induced tumor progression can be ablated by IIp45 or by specific inhibition of the Akt pathway. ^
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Regulation of uterine quiescence involves the integration of the signaling pathways regulating uterine contraction and relaxation. Uterine contractants increase intracellular calcium through receptor/GαqPLC coupling, resulting in contraction of the myometrium. Elevation of cAMP concentration has been correlated with relaxation of the myometrium. However, the mechanism of cAMP action in the uterus is unclear. ^ Both endogenous and exogenous increases in cAMP inhibited oxytocin-stimulated phosphatidylinositide turnover in an immortalized pregnant human myometrial cell line (PHM1-41). This inhibition was reversed by cAMP-dependent protein kinase (PKA) inhibitors, suggesting the involvement of PKA. cAMP inhibited phosphatidyinositide turnover stimulated by different agonists in different cell lines. These data suggest that the cAMP inhibitory mechanism is neither cell nor receptor dependent, and inhibits Gαq/PLCβ1 and PLCβ3 coupling. ^ The subcellular localization of PKA occurs via PKA binding to A-Kinase-Anchoring-Proteins (AKAP), and peptides that inhibit this association have been developed (S-Ht31). S-Ht31 blocked cAMP-stimulated PKA activity and decreased PKA concentration in PHM1-41 cell plasma membranes. S-Ht31 reversed the ability of CPT-cAMP, forskolin and relaxin to inhibit phosphatidylinositide turnover in PHM1-41 cells. Overlay analysis of both PHM1-41 cell and nonpregnant rat myometrium found an AKAPs of 86 kDa and 150 kDa associated with the plasma membrane, respectively. These data suggest that PKA anchored to the plasma membrane via AKAP150/PKA anchoring is involved in the cAMP inhibitory mechanism. ^ CPT-cAMP and isoproterenol inhibited phosphatidylinositide turnover in rat myometrium from days 12 through 20 of gestation. In contrast, neither agent was effective in the 21 day pregnant rat myometrium. The decrease in the cAMP inhibitory mechanism was correlated with a decrease in PKA and an increase in protein phosphatase 2B (PP2B) concentration in rat myometrial plasma membranes on day 21 of gestation. In myometrial total cell homogenates, both PKA and PP2B concentration increased on day 21. S-Ht31 inhibited cAMP inhibition of phosphatidylinositide turnover in day 19 pregnant rat myometrium. Both PKA and PP2B coimmunoprecipitated with an AKAP150 in a gestational dependent manner, suggesting this AKAP localizes PKA and PP2B to the plasma membrane. ^ These data presented demonstrate the importance of the cAMP inhibitory mechanism in regulating uterine contractility. ^
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Heterotrimeric G protein-mediated signal transduction is one of numerous means that cells utilize to respond to external stimuli. G proteins consist of α, β andγ subunits. Extracellular ligands bind to seven-transmembrane helix receptors, triggering conformational changes. This is followed by activation of coupled G proteins through the exchange of GDP for GTP on the Gα subunit. Once activated, Gα-GTP dissociates from the βγ dimer. Both of these two moieties can interact with downstream effectors, such as adenylyl cyclase, phospholipase C, phosphodiesterases, or ion channels, leading to a series of changes in cellular metabolism and physiology. ^ Neurospora crassa is a eukaryotic multicellular filamentous fungus, with asexual/vegetative and sexual phases to its life cycle. Three Gα (GNA-1, GNA-2, GNA-3) and one Gβ (GNB-1) proteins have been identified in this organism. This dissertation investigates GNA-1 and GNB-1 mediated signaling pathways in N. crassa. ^ GNA-1 was the first identified microbial Gα that belongs to a mammalian superfamily (Gαi). Deletion of GNA-1 leads to multiple defects in N. crassa. During the asexual cycle, Δgna-1 strains display a slower growth rate and delayed conidiation on solid medium. In the sexual cycle, the Δgna-1 mutant is male-fertile but female-sterile. Biochemical studies have shown that Δ gna-1 strains have lower adenosine 3′–5 ′ cyclic monophosphate (cAMP) levels than wild type under conditions where phenotypic defects are observed. In this thesis work, strains containing one of two GTPase-deficient gna-1 alleles (gna-1 R178C, gna-1Q204L) leading to constitutive activation of GNA-1 have been constructed and characterized. Activation of GNA-1 causes uncontrolled aerial hyphae proliferation, elevated sensitivity to heat and oxidative stresses, and lower carotenoid synthesis. To further study the function of GNA-1, constructs to enable expression of mammalian Gαi superfamily members were transformed into a Δ gna-1 strain, and complementation of Δgna-1 defects investigated. Gαs, which is not a member of Gα i superfamily was used as a control. These mammalian Gα genes were able to rescue the vegetative growth rate defect of the Δ gna-1 strain in the following order: Gαz > Gα o > Gαs > Gαt > Gαi. In contrast, only Gαo was able to complement the sexual defect of a Δgna-1 strain. With regard to the thermotolerance phenotype, none of the mammalian Gα genes restored the sensitivity to a wild type level. These results suggest that GNA-1 regulates two independent pathways during the vegetative and sexual cycles in N. crassa. ^ GNB-1, a G protein β subunit from N. crassa, was identified and its functions investigated in this thesis work. The sequence of the gnb-1 gene predicts a polypeptide of 358 residues with a molecular mass of 39.7 kDa. GNB-1 exhibits 91% identity to Cryphonectria parasitica CPGB-1, and also displays significant homology with human and Dictyostelium Gβ genes (∼66%). A Δ gnb-1 strain was constructed and shown to exhibit defects in asexual spore germination, vacuole number and size, mass accumulation and female fertility. A novel role for GNB-1 in regulation of GNA-1 and GNA-2 protein levels was also demonstrated. ^
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SHP1 is a cytosolic protein tyrosine phosphatase that contains two SH2 domains. It is highly expressed in hematopoietic cells and expressed in normal epithelium at lower levels. While SHP1 in hematopoietic cells is thought to be a negative regulator of cellular signaling by associating with and dephosphorylating various receptors and their downstream effectors after they become activated, its precise function in epithelium remains to be understood. The potential involvement of SHP1 in human tumorigenesis has been hypothesized from the findings that SHP1 can interact with, dephosphorylate, and regulate the activity of several protein tyrosine kinases (PTKs) implicated in human cancer. These PTKs include epidermal growth factor receptor (EGFR) and Src. Such speculation is also supported by the report that SHP1 is overexpressed in human ovarian cancers. ^ Here we report, for the first time, that the levels of SHP1 expression and activity are altered in human breast cancer cells in comparison with normal breast epithelium. In particular, SHP1 expression is nearly lost in the breast cancer cell lines MDA-MB231 and MDA-MB435. After the re-introduction of SHP1 both in wild type (wt) and enzymatically inactive (dn) forms, into the MDA-MB231 cells, we observed no changes in cellular proliferation. However, the overexpression of wt SHP1 led to increased anchorage-independent growth in the MDA-MB231 cells. SHP1 phosphatase activity is essential for such an increase since the overexpression of dn SHP1 had no effect. Enhanced turnorigenicity in nude mice was also observed in the MDA-MB231 cells overexpressing wt SHP1, but not dn SHP1, suggesting the crucial function of SHP1 enzymatic activity in this process. Our observations in this study indicate that SHP1 promotes tumorigenesis by a mechanism or mechanisms apart from enchancing angiogenesis. In addition, we have found no evidence that the overexpression of SHP1 could affect metastatic potential in the MDA-MB231 cells. ^ In the MDA-MB231 cells stably transfected with either wt or dn SHP1 the peak level of EGFR tyrosine phosphorylation induced by EGF, as well as the sensitivity to EGF stimulation, was not altered. However, the overexpression of wt SHP1 led to a slight increase in the kinetics of EGFR dephosphorylation, whereas the overexpression of dn SHP1 led to slightly delayed kinetics of EGFR dephosphorylation. The overexpression of either the wt or dn SHP1 did not lead to any significant increase in Src kinase activity. ^ In NIH3T3 cells, the transient overexpression of SHP1 led to no significant changes in MAP kinase (ERK2) activation by EGF or Akt activation by PDGF. In 3T3H4 cells, the transient overexpression of SHP1 led to no significant changes in MAP kinase (ERK2) activation by heregulin. The transient overexpression of wt SHP1 in the MDA-MB231 cells caused an apparent increase, ranging from 10% to 20%, in the G0/G1 population of the cells with a corresponding decrease in the S phase population. ^ In order to understand the mechanisms by which SHP1 exerts its positive effect on the tumorigenic potential of the MDA-MB231 cells, we employed two-dimensional electrophoresis in an attempt to identify cellular protein(s) with significantly altered tyrosine phosphorylation level upon wt SHP1 overexpression. The overexpression of wt SHP1 but not dn SHP1, leads increased tyrosine phosphorylation of a protein with a molecular weight of approximately 40 kDa and a pI between 5.9 to 6.6. ^
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A 12-wk experiment was conducted to investigate the effect of feeding program, dietary fiber, and CP content of the diet on productive performance of Ross broiler breeder hens (41 wk of age). There were 12 treatments arranged factorially with 2 levels of CP (14.5 vs. 17.4%), 3 fiber sources (0 vs. 3% inulin vs. 3% cellulose), and 2 levels of feed intake (160 vs. 208 g/d) that corresponded to restricted (R) or ad libitum (AL) feeding systems. The experimental diets contained 2,800 kcal ME with either 0.65 (14.5% CP) or 0.78% Lys (17.4% CP).
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El objetivo principal de esta tesis fue incrementar el valor proteico para rumiantes de la harina de girasol mediante tratamientos combinados con ácidos y calor para proteger sus proteínas frente a la degradación ruminal. Estos estudios comprenden dos experimentos realizados sobre ovinos mediante tecnologías in vitro (experimento 1) o in situ e in vivo (experimento 2), empleando siempre dos ácidos: málico u ortofosfórico. Aprovechando este último experimento, también se consideraron otros objetivos de carácter metodológico con el fin de mejorar la precisión de las estimas de i) la degradabilidad ruminal y la digestibilidad intestinal de la proteína y los aminoácidos (AAs) de los alimentos y ii) la síntesis microbiana ruminal y su contribución al flujo post-ruminal de nutrientes al animal. En el experimento 1 (capítulo 2) se efectuaron cuatro ensayos in vitro para estudiar la influencia de distintos factores que puedan afectar la eficacia de estos tratamientos. En cada ensayo se utilizó una réplica por tratamiento (dos para el tratamiento control) y dos bolsas vacías (empleadas para corregir la contaminación microbiana) en cada una de las cuatro botellas del incubador (ANKOM Daisy II). Cada botella contenía 2 l de medio de incubación, saturado con CO2 para asegurar la anaerobiosis. Este medio consistió en una mezcla de solución McDougall y liquido ruminal filtrado en relación 4:1. El liquido ruminal fue obtenido de 2 corderos canulados en rumen, utilizándose bien solo o mezclado con el del otro cordero en una relación 3:1. Así, cada botella de incubación contenía un inoculo ruminal diferente. Las incubaciones se realizaron a 39 ºC durante 20 h, siendo las bolsas lavadas con agua corriente y almacenadas a -20 ºC. Tras ser descongeladas, se lavaron 3 veces durante 5 min en una mini-lavadora de turbina, se desecaron a 80 ºC durante 48 h y se destinaron íntegras al análisis de N-Kjeldahl. En el ensayo 1 se estudió el efecto del volumen de disolución de dos dosis de ácido ortofosfórico (0,4 y 1,2 equivalentes gramo (eq)/kg de harina de girasol), testando cinco volúmenes de disolución (80, 160, 240, 320 and 400 ml/kg de harina) para cada dosis, desecándose las harinas a 60 ºC hasta sequedad al tacto. La proteína bruta (PB) indegradada se incremento con la dosis de ácido empleada y también (como tendencia, P < 0,1) con el volumen de dilución. En base a ello en los siguientes ensayos se utilizo el volumen de dilución mayor (400 ml/kg). En el ensayo 2 se estudió el efecto de la dosis y del tipo de ácido a cuatro dosis (1,2; 2,4; 3,6 y 4,8 eq/kg), secándose igualmente las muestras tratadas a 60 ºC. La PB indegradada aumentó con la dosis de ácido, siendo también mayor para el ácido málico, tanto en este ensayo como en los posteriores. En el ensayo 3 se estudiaron los efectos de los dos ácidos, cuatro concentraciones (0,6; 1,2; 1,8 y 2,4 eq/kg) y tres tratamientos térmicos para el secado de las muestras (100, 150 and 200 ºC durante 60, 30 y 20 minutos, respectivamente). Con los tratamientos térmicos a 100 y 150 ºC no hubo un incremento de protección para concentraciones superiores a 0,8 eq/kg para ambos ácidos. Para incrementar la protección fue necesario aumentar la temperatura a 200 ºC y la dosis a 1,2 eq/kg, no observándose un aumento de protección a dosis mayores. En el ensayo 4 se estudiaron los efectos sobre la lisina disponible, la solubilidad de la PB en saliva artificial de McDougall y la PB indegradada in vitro de tratar la harina solo con agua o con disoluciones de ambos ácidos a dosis de 0,8 eq/kg y temperaturas de secado de 100 ó 150 ºC en las mismas condiciones que en el ensayo 3. No se apreciaron efectos sobre la lisina disponible para ninguno de los tratamientos. El efecto específico de los ácidos quedo demostrado tanto por la fuerte reducción de la solubilidad de la PB como por el aumento de la PB indegradada frente al tratamiento con agua. En conjunto, los resultados de este experimento mostraron que la eficacia de estos tratamientos depende del tipo y dosis de ácido y de su dilución, así como de las condiciones de secado. Como tratamiento de mayor interés a aplicar posteriormente en el experimento 2 se consideró una dosis de 0,8 eq/kg de harina, aplicada en un volumen de 400 ml/kg (correspondiente a soluciones 1 M y 0,67 M para los ácidos málico y ortofosfórico, respectivamente) y desecación a 150 ºC. El experimento 2 (capítulos 3 a 7) se realizó con un diseño en cuadrado latino 3x3, empleando tres corderos canulados en rumen y duodeno y tres dietas isoproteicas: U, M y P, que incluían harinas de girasol sin tratar (control) y tratadas con acido málico u ortofosfórico, respectivamente. La harina de girasol se trató en las condiciones ya indicadas siendo necesarias 6 horas para su secado en estufa. Las dietas incluían 40% de heno de raigrás italiano y 60% de concentrado a base de harina de girasol (tratada y/o sin tratar), trigo y corrector vitamínico-mineral, siendo suministradas a 75 g/kg P0.75 (equivalente a 2,3 × mantenimiento). La relación harina de girasol sin tratar y tratada fue de 100:0 en la dieta U y entorno a 40:60 en las dietas M y P. Tras 10 días de adaptación a la dieta, se estudiaron sucesivamente: i) el tránsito hasta el duodeno de las partículas del heno (solo en la dieta control) y de la harina de girasol marcadas previamente con europio e iterbio, respectivamente; ii) la fermentación ruminal durante el periodo postprandial, iii) la degradación ruminal in situ de la harina de girasol específica de cada dieta (y del trigo y el heno en la dieta control) y iv) la magnitud y composición del contenido ruminal mediante el vaciado manual del rumen-retículo. Durante todo el periodo experimental se infundio de forma continua una solución de sulfato amónico enriquecido en 15N (98 átomos %) para corregir la contaminación microbiana ruminal en los estudios in situ y para establecer las diferencias de composición química entre las bacterias libres (BAL) y adherentes (BAS) del rumen. Esta solución incluyó en los dos últimos días Li-Cr- EDTA para determinar la tasa de dilución ruminal. Posteriormente, y tras un periodo de al menos 10 días para eliminar el enriquecimiento en 15N de la digesta, se estudió la digestibilidad intestinal de los distintos alimentos mediante la técnica de bolsas móviles. La determinación del bypass (BP) o de la degradabilidad efectiva (DE) de la materia seca (MS) y de la PB se realizó por el método tradicional de integración matemática; estos valores se obtuvieron también para la PB y los AAs generando una muestra representativa del flujo post-ruminal del alimento en estudio en cada animal. Ello se realizó mediante la mezcla de los distintos residuos de incubación en base a la función que describe el flujo de alimento indegradado que abandona el rumen. Todos estos trabajos se realizaron considerando la tasa de salida de partículas del rumen (kp) y, según casos, considerando también la tasa de conminución y mezcla de las partículas en este compartimento (kc). Para este último caso se ha desarrollado también el modelo matemático que describe este flujo y permite este cálculo. Los valores no corregidos por la contaminación microbiana del BP (o de DE) de la PB resultantes de ambos métodos se han comparado tanto en las harinas de girasol como en los restantes alimentos de la dieta, obteniéndose valores similares, sin apreciarse desviaciones sistemáticas. Sobre las muestras compuestas representativas de la composición química del BP se determino la digestibilidad intestinal efectiva (DIE) de la MS, PB y AAs. Todos los valores resultantes de esta técnica fueron corregidos para la contaminación microbiana de las partículas que tiene lugar en el rumen. Los estudios de transito digestivo se realizaron tras suministrar en el comedero a los corderos una dosis simple de los alimentos marcados, seguida de la toma de muestras de la digesta duodenal durante 82 h. En la dieta testigo se suministraron simultáneamente el heno de raigrás y la harina de girasol, mientras que en las otras dietas solo se suministró esta última. La harina de girasol mostro un mayor valor para kc frente al heno (0,5766 v. 0,0892, /h), mientras que no hubo diferencias entre los dos alimentos para kp (0,0623 v. 0,0609, /h). Para la harina de girasol no se apreciaron diferencias entre dietas para kc, pero si se redujo de manera moderada la tasa kp con los tratamientos, siendo ésta también menor al utilizar ácido ortofosfórico frente al uso de ácido malico (0,0577 v. 0,0600, /h). El empleo de las harinas tratadas no modifico los parámetros de fermentación ruminal, la composición de los contenidos ruminales o la tasa de dilución del rumen. Los valores efectivos del BP y de DIE de la MS, PB y AAs de las harinas de girasol se obtuvieron considerando kc y kp, conjuntamente. Los tratamientos de protección incrementaron el BP de MS y PB en 48,5 y 268% de media, respectivamente. Estos incrementos se debieron principalmente al descenso de la fracción soluble y de la velocidad de degradación, pero también al aumento de la fracción indegradable, especialmente usando ácido ortofosfórico. Con los tratamientos se incrementó también la DIE de la MS (108% de media) y de la PB con gran diferencia entre los ácidos málico y ortofosfórico (20,7 v. 11,8%). Como consecuencia de estos cambios la protección aumentó la fracción realmente digerida en el intestino en 211% (MS) y 325% (PB), sin efectos entre ambos ácidos. Considerando la reducción del suministro de energía fermentable para los microorganismos ruminales asociada a la protección y los parámetros indicados por el sistema PDI francés para la síntesis de proteína microbiana digestible, la eficacia de conversión de PB en proteína metabolizable aumentó de 0,244 a 0,559 y 0,515 con el tratamiento con acido málico y ortofosfórico, respectivamente. El contenido en aminoácidos (AAs) fue similar en todas las harinas salvo por una disminución de lisina en las harinas tratadas. De forma análoga a la PB, los tratamientos de protección incrementaron el BP y la DIE de la mayoría de AAs. El aporte de AAs metabolizabes de la harina se multiplico en 3,87 para los AAs azufrados y en menor medida (2,5 veces) para la lisina, como consecuencia de las pérdidas sufridas a consecuencia del tratamiento térmico. Estos tratamientos se muestran, por tanto, útiles para incrementar el valor proteico de la harina de girasol, si bien su empleo junto con concentrados proteicos ricos en lisina bypass digestible mejoraría el perfil de la proteína metabolizable. La corrección de la contaminación microbiana de las partículas que tiene lugar en el rumen se asoció en todos los alimentos testados y, de forma general, con reducciones del BP y de su DIE en todas las fracciones estudiadas. Estas reducciones fueron pequeñas en todos los concentrados, de forma acorde con los muy pequeños niveles de contaminación registrados tanto en las harinas de girasol como en el grano de trigo. Por el contrario, esta contaminación, al igual que los efectos de su corrección, fueron muy importantes en el heno de raigrás. Esta contaminación aumentó al tener en cuenta kc. Así, para la proporción de PB de origen microbiano existente en las muestras compuestas representativas del BP, este aumento fue significativo para el heno de raigrás (0,463 v. 0,706) y solo numérico para la harina de girasol (0,0170 v. 0,0208). La reducción de las estimas de DIE al corregir esta contaminación fue consecuencia de la eliminación de forma casi completa de los microorganismos adherentes en todos los residuos testados. Así, esta biomasa se redujo en 96,1% como media de 7x3 observaciones. Como resultado de las diferencias acumulativas a nivel del rumen e intestino, la no corrección de la contaminación microbiana junto con la no consideración de kc condujo a fuertes sobrestimaciones de la PB digerida en el intestino. Ésta fue de 39% en la harina de girasol (0,146 v. 0,105) y de 761% en el heno de raigrás (0,373 v. 0,0433). Estos resultados muestran que es necesario considerar tanto kc como corregir la contaminación microbiana para obtener estimas in situ precisas en forrajes, mientras que en concentrados, siempre que la contaminación microbiana sea pequeña, es más importante considerar kc. La elevada contaminación microbiana observada en el heno de raigrás se asoció también con importantes errores a nivel del N asociado a la fibra neutro (FND) y ácido (FAD) detergente (NDIN y ADIN, respectivamente) e incluso de estas fracciones de fibra, evidenciándose que estos métodos no eliminan completamente la contaminación microbiana que sufren los alimentos en su paso por el retículorumen. Así, en la muestra compuesta representativa de la composición química del flujo postruminal antes descrita, la sobrevaloración por no corregir la contaminación microbiana fue de 99,8; 24,2; 3,34 y 0,48% para NDIN, ADIN, FND y FAD, respectivamente. Las subvaloraciones asociadas para su DE fueron 34,1; 8,79; 4,41 y 0,51%, respectivamente. La DE corregida del NDIN y ADIN (0,743 y 0,728, respectivamente) mostró un aprovechamiento ruminal elevado de estos compuestos, si bien menor al de la PB total (0,85). El estudio de este aprovechamiento sobre los residuos de incubación ruminal a 6 y 72 h demostró, además, una más rápida degradación del ADIN frente al NDIN, así como un mayor potencial de degradación de este último en este alimento. Para comprobar si la digestión en el abomaso eliminaba la contaminación microbiana en la FND y FAD se estudio esta contaminación y sus posibles errores en muestras liofilizadas de contenidos ruminales y duodenales correspondientes a una dieta mixta de similar composición a la utilizada en el experimento 2, comparándose, además, las diferencias entre la extracción secuencial o directa de la FAD. Utilizando como referencia las BAS se apreciaron elevadas contaminaciones en la FND y FAD y su N asociado tanto en las muestras ruminales como en las duodenales. Sin embargo, los resultados de enriquecimiento en 15N de las partículas fueron intermedios entre los correspondientes a BAS y BAL lo que evidencia una elevada contaminación con BAL en estas muestras probablemente durante el proceso de liofilización. Ello conlleva una sobrevaloración de esta estimación. El método de extracción directa de FAD se mostró, por otra parte, marcadamente menos eficaz en la eliminación de la contaminación microbiana. Los resultados muestran la necesidad de corregir la contaminación microbiana para obtener estimaciones precisas de la degradabilidad de las proteínas de las paredes celulares vegetales. Estos errores deberían ser también considerados para FND y FAD en estudios in situ e in vivo. La elevada tasa fraccional de degradación del grano de trigo (60,9 y 42,0%/h para MS y PB, respectivamente) implico que su flujo de material indegradado (calculado solo en base a la kp obtenida para la harina de girasol) se redujera muy rápidamente, de forma que es casi nulo a 8 h tras la ingestión. Los valores corregidos de PB digerida en el intestino (0,15) representan solo el 18,7% de la proteína metabolizable, lo que muestra que el valor proteico del grano de trigo está estrechamente ligado a la síntesis de proteína microbiana derivada de su fermentación. En el experimento 2 se observaron menores concentraciones para materia orgánica, lípidos y PB, así como en la proporción N-AAs/N total en BAL que en BAS, siendo, por el contrario, mayor su enriquecimiento en 15N. Estos últimos resultados se utilizaron (junto con los de otros trabajos previos de este equipo) para validar una predicción preexistente del enriquecimiento en 15N de las BAS a partir de este valor en las BAL. Esta ecuación, de muy alta precisión (R2 = 0.995), permite calcular la subvaloración que se comete en los aportes de nutrientes correspondientes a las BAS al usar las BAL como muestra de referencia. Esta subvaloración representa aproximadamente 21, 32,5 y 60% para PB, proteína verdadera y lípidos.
Resumo:
Cross-reactivity of plant foods is an important phenomenon in allergy, with geographical variations with respect to the number and prevalence of the allergens involved in this process, whose complexity requires detailed studies. We have addressed the role of thaumatin-like proteins (TLPs) in cross-reactivity between fruit and pollen allergies. A representative panel of 16 purified TLPs was printed onto an allergen microarray. The proteins selected belonged to the sources most frequently associated with peach allergy in representative regions of Spain. Sera from two groups of well characterized patients, one with allergy to Rosaceae fruit (FAG) and another against pollens but tolerant to food-plant allergens (PAG), were obtained from seven geographical areas with different environmental pollen profiles. Cross-reactivity between members of this family was demonstrated by inhibition assays. Only 6 out of 16 purified TLPs showed noticeable allergenic activity in the studied populations. Pru p 2.0201, the peach TLP (41%), chestnut TLP (24%) and plane pollen TLP (22%) proved to be allergens of probable relevance to fruit allergy, being mainly associated with pollen sensitization, and strongly linked to specific geographical areas such as Barcelona, Bilbao, the Canary Islands and Madrid. The patients exhibited mayor que50% positive response to Pru p 2.0201 and to chestnut TLP in these specific areas. Therefore, their recognition patterns were associated with the geographical area, suggesting a role for pollen in the sensitization of these allergens. Finally, the co-sensitizations of patients considering pairs of TLP allergens were analyzed by using the co-sensitization graph associated with an allergen microarray immunoassay. Our data indicate that TLPs are significant allergens in plant food allergy and should be considered when diagnosing and treating pollen-food allergy.