843 resultados para isopentenyl transferase
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A-kinase anchoring proteins (AKAPs) target the cAMP-regulated protein kinase (PKA) to its physiological substrates. We recently identified a novel anchoring protein, called AKAP-Lbc, which functions as a PKA-targeting protein as well as a guanine nucleotide exchange factor (GEF) for RhoA. We demonstrated that AKAP-Lbc Rho-GEF activity is stimulated by the alpha subunit of the heterotrimeric G protein G12. Here, we identified 14-3-3 as a novel regulatory protein interacting with AKAP-Lbc. Elevation of the cellular concentration of cAMP activates the PKA holoenzyme anchored to AKAP-Lbc, which phosphorylates the anchoring protein on the serine 1565. This phosphorylation event induces the recruitment of 14-3-3, which inhibits the Rho-GEF activity of AKAP-Lbc. AKAP-Lbc mutants that fail to interact with PKA or with 14-3-3 show a higher basal Rho-GEF activity as compared to the wild-type protein. This suggests that, under basal conditions, 14-3-3 maintains AKAP-Lbc in an inactive state. Therefore, while it is known that AKAP-Lbc activity can be stimulated by Galpha12, in this study we demonstrated that it is inhibited by the anchoring of both PKA and 14-3-3.
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Human HCF-1 (also referred to as HCFC-1) is a transcriptional co-regulator that undergoes a complex maturation process involving extensive O-GlcNAcylation and site-specific proteolysis. HCF-1 proteolysis results in two active, noncovalently associated HCF-1N and HCF-1C subunits that regulate distinct phases of the cell-division cycle. HCF-1 O-GlcNAcylation and site-specific proteolysis are both catalyzed by O-GlcNAc transferase (OGT), which thus displays an unusual dual enzymatic activity. OGT cleaves HCF-1 at six highly conserved 26 amino acid repeat sequences called HCF-1PRO repeats. Here we characterize the substrate requirements for OGT cleavage of HCF-1. We show that the HCF-1PRO-repeat cleavage signal possesses particular OGT-binding properties. The glutamate residue at the cleavage site that is intimately involved in the cleavage reaction specifically inhibits association with OGT and its bound cofactor UDP-GlcNAc. Further, we identify a novel OGT-binding sequence nearby the first HCF-1PRO-repeat cleavage signal that enhances cleavage. These results demonstrate that distinct OGT-binding sites in HCF-1 promote proteolysis, and provide novel insights into the mechanism of this unusual protease activity.
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UNLABELLED: Pancreatic cancer (PC) is one of the most lethal human malignancies and a major health problem. Patients diagnosed with PC and treated with conventional approaches have an overall 5-year survival rate of less than 5%. Novel strategies are needed to treat this disease. Herein, we propose a combinatorial strategy that targets two unrelated metabolic enzymes overexpressed in PC cells: NAD(P)H: quinone oxidoreductase-1 (NQO1) and nicotinamide phosphoribosyl transferase (NAMPT) using β-lapachone (BL) and APO866, respectively. We show that BL tremendously enhances the antitumor activity of APO866 on various PC cell lines without affecting normal cells, in a PARP-1 dependent manner. The chemopotentiation of APO866 with BL was characterized by the following: (i) nicotinamide adenine dinucleotide (NAD) depletion; (ii) catalase (CAT) degradation; (iii) excessive H2O2 production; (iv) dramatic drop of mitochondrial membrane potential (MMP); and finally (v) autophagic-associated cell death. H2O2 production, loss of MMP and cell death (but not NAD depletion) were abrogated by exogenous supplementation with CAT or pharmacological or genetic inhibition of PARP-1. Our data demonstrates that the combination of a non-lethal dose of BL and low dose of APO866 optimizes significantly cell death on various PC lines over both compounds given separately and open new and promising combination in PC therapy.
Resumo:
Post-translational protein modifications are crucial for many fundamental cellular and extracellular processes and greatly contribute to the complexity of organisms. Human HCF-1 is a transcriptional co-regulator that undergoes complex protein maturation involving reversible and irreversible post-translational modifications. Upon synthesis as a large precursor protein, HCF-1 undergoes extensive reversible glycosylation with β-N-acetylglucosamine giving rise to O-linked-β-N-acetylglucosamine (O-GlcNAc) modified serines and threonines. HCF-1 also undergoes irreversible site-specific proteolysis, which is important for one of HCF-1's major functions - the regulation of the cell-division cycle. HCF-1 O-GlcNAcylation and site-specific proteolysis are both catalyzed by a single enzyme with an unusual dual enzymatic activity, the O-GlcNAc transferase (OGT). HCF-1 is cleaved by OGT at any of six highly conserved 26 amino acid repeated sequences (HCF-1PRO repeats), but the mechanisms and the substrate requirements for OGT-mediated cleavage are not understood. In the present work, I characterized substrate requirements for OGT-mediated cleavage and O-GlcNAcylation of HCF-1. I identified key elements within the HCF-1PRO-repeat sequence that are important for proteolysis. Remarkably, an invariant single amino acid side-chain within the HCF-1PRO-repeat sequence displays particular OGT-binding properties and is essential for proteolysis. Additionally, I characterized substrate requirements for proteolysis outside of the HCF-1PRO repeat and identified a novel, highly O-GlcNAcylated OGT-binding sequence that enhances cleavage of the first HCF-1PRO repeat. These results link OGT association and its O-GlcNAcylation activities to HCF-1PRO-repeat proteolysis.
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Apoptosis is an essential cellular mechanism involved in many processes such as embryogenesis, metamorphosis, and tissue homeostasis. DNA fragmentation is one of the key markers of this form of cell death. DNA fragmentation is executed by endogenous endonucleases such as caspase-activated DNase (CAD) in caspase-dependent apoptosis. The TUNEL (TdT-mediated dUTP-biotin nick end labeling) technique is the most widely used method to identify apoptotic cells in a tissue or culture and to assess drug toxicity. It is based on the detection of 3'-OH termini that are labeled with dUTP by the terminal deoxynucleotidyl transferase. Although the test is very reliable and sensitive in caspase-dependent apoptosis, it is completely useless when cell death is mediated by pathways involving DNA degradation that generates 3'-P ends as in the LEI/L-DNase II pathway. Here, we propose a modification in the TUNEL protocol consisting of a dephosphorylation step prior to the TUNEL labeling. This allows the detection of both types of DNA breaks induced during apoptosis caspase-dependent and independent pathways, avoiding underestimating the cell death induced by the treatment of interest.
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The investigation of extracts from six species of marine invertebrates yielded one new and several known natural products. Isoptilocaulin from the sponge Monanchora aff. arbuscula displayed antimicrobial activity at 1.3 mg/mL against an oxacillin-resistant strain of Staphylococcus aureus. Five inactive known dibromotyrosine derivatives, 2 6, were isolated from a new species of marine sponge, Aplysina sp. The sponges Petromica ciocalyptoides and Topsentia ophiraphidites yielded the known halistanol sulfate A (7) as an inhibitor of the antileishmanial target adenosine phosphoribosyl transferase. The ascidian Didemnum ligulum yielded asterubin (10) and the new N,N-dimethyl-O-methylethanolamine (11). The octocoral Carijoa riisei yielded the known 18-acetoxypregna-1,4,20-trien-3-one (12), which displayed cytotoxic activity against the cancer cell lines SF295, MDA-MB435, HCT8 and HL60.
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Structural studies of proteins aim at elucidating the atomic details of molecular interactions in biological processes of living organisms. These studies are particularly important in understanding structure, function and evolution of proteins and in defining their roles in complex biological settings. Furthermore, structural studies can be used for the development of novel properties in biomolecules of environmental, industrial and medical importance. X-ray crystallography is an invaluable tool to obtain accurate and precise information about the structure of proteins at the atomic level. Glutathione transferases (GSTs) are amongst the most versatile enzymes in nature. They are able to catalyze a wide variety of conjugation reactions between glutathione (GSH) and non-polar components containing an electrophilic carbon, nitrogen or sulphur atom. Plant GSTs from the Tau class (a poorly characterized class) play an important role in the detoxification of xenobiotics and stress tolerance. Structural studies were performed on a Tau class fluorodifen-inducible glutathione transferase from Glycine max (GmGSTU4-4) complexed with GSH (2.7 Å) and a product analogue Nb-GSH (1.7 Å). The three-dimensional structure of the GmGSTU4-4-GSH complex revealed that GSH binds in different conformations in the two subunits of the dimer: in an ionized form in one subunit and a non-ionized form in the second subunit. Only the ionized form of the substrate may lead to the formation of a catalytically competent complex. Structural comparison between the GSH and Nb-GSH bound complexes revealed significant differences with respect to the hydrogen-bonding, electrostatic interaction pattern, the upper part of -helix H4 and the C-terminus of the enzyme. These differences indicate an intrasubunit modulation between the G-and Hsites suggesting an induced-fit mechanism of xenobiotic substrate binding. A novel binding site on the surface of the enzyme was also revealed. Bacterial type-II L-asparaginases are used in the treatment of haematopoietic diseases such as acute lymphoblastic leukaemia (ALL) and lymphomas due to their ability to catalyze the conversion of L-asparagine to L-aspartate and ammonia. Escherichia coli and Erwinia chrysanthemi asparaginases are employed for the treatment of ALL for over 30 years. However, serious side-effects affecting the liver and pancreas have been observed due to the intrinsic glutaminase activity of the administered enzymes. Structural studies on Helicobacter pylori L-asparaginase (HpA) were carried out in an effort to discover novel L-asparaginases with potential chemotherapeutic utility in ALL treatment. Detailed analysis of the active site geometry revealed structurally significant differences between HpA and other Lasparaginases that may be important for the biological activities of the enzyme and could be further exploited in protein engineering efforts.
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OBJETIVOS: verificar as freqüências dos genótipos nulos para os genes GSTT1 e GSTM1, assim como as freqüências do alelo polimórfico do gene CYP1A1 em um grupo de mulheres com endometriose, e comparar essas freqüências com aquelas observadas em um grupo que não apresenta a doença (controle), visando uma possível identificação de biomarcadores de suscetibilidade à endometriose. MÉTODOS: foram incluídas 50 mulheres com sinais clínicos sugestivos de endometriose e que foram submetidas à videolaparoscopia e biópsia das lesões avaliadas histologicamente. A endometriose foi confirmada em 25 mulheres, consideradas como o grupo caso, e resultado negativo foi observado nas outras 25 (grupo controle). Os genótipos nulos para os genes GSTT1 e GSTM1 foram avaliados pela reação em cadeia da polimerase (PCR) multiplex. A investigação do alelo polimórfico do gene CYP1A1 foi realizada por meio da técnica de PCR-RFLP (polimorfismos de comprimento de fragmentos de restrição). Para a análise estatística utilizou-se o teste exato de Fisher. RESULTADOS: em ambos os grupos, as freqüências dos polimorfismos de deleção apresentaram valores de 16% para o gene GSTT1 e de 44% para o gene GSTM1. Portanto, os resultados não mostraram diferenças na distribuição dos genótipos nulos GSTT1 e GSTM1 entre os grupos estudados. A diferença da freqüência alélica para o alelo m1 do gene CYP1A1, embora não significante, foi mais elevada nas mulheres com endometriose (0,22) quando comparada àquelas do grupo controle (0,14). CONCLUSÃO: os resultados não mostraram uma associação entre os polimorfismos avaliados e o diagnóstico de endometriose.
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PURPOSE: This study aimed to evaluate the frequency of homozygous deletion of GSTM1 and GSTT1 genes and their combinations between patients with breast cancer and healthy individuals, associating them with disease susceptibility. METHODS: This is a case-control study in which 49 women diagnosed with breast cancer confirmed by pathological examination and 49 healthy women with no evidence of cancer and no prior family history of breast cancer were invited to participate. All of them answered a questionnaire with epidemiological data and were submitted to blood sample collection. Genomic DNA was extracted from blood, and genotyping was performed by polymerase chain reaction. Data were analyzed with SPSS 20.0. RESULTS: The frequency of null alleles for GSTM1 and GSTT1 was 58.8 and 61.7%, respectively, for patients with breast cancer, and 41.2 and 38.3%, respectively, in control patients. In homozygous deletion of the GSTM1 gene, a significantly higher frequency was found in the breast cancer cases. CONCLUSION: Breast cancer patients presented higher frequency of homozygous deletion of the GSTM1 gene compared with the control group.
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Descreve-se um surto de aflatoxicose ocorrido no outono de 2004, em uma granja de suínos, no município de Sentinela do Sul, RS. O milho utilizado no arraçoamento dos animais e que causou a intoxicação, foi produzido e processado na propriedade. Morreram 7 porcas e 8 leitões, e foram relatados dois casos de aborto. Os sinais clínicos foram apatia, anorexia, icterícia, urina amarelada com sangue e fotossensibilização. A gama-glutamil transferase (GGT) e a bilirrubina total mostraram-se elevadas nos animais necropsiados. Os principais achados de necropsia incluíam icterícia generalizada, fígado amarelo-alaranjado, edema de parede da vesícula biliar e presença de líquido amarelado nas cavidades abdominal e pericárdica. As lesões microscópicas mais importantes foram encontradas no fígado e consistiam em tumefação, degeneração e necrose individual de hepatócitos, proliferação de ductos biliares e colestase. O diagnóstico foi baseado nos sinais clínicos, nos achados de necropsia e de histopatologia e nos níveis altos de aflatoxina B1 (milho 3140ppb, ração 4670ppb) encontrados no milho e na ração.
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Ipomoea sericophylla and Ipomoea riedelii cause a glycoprotein storage disease in goats. This paper reports the experimental poisoning in goats by dried I. sericophylla and I. riedelii containing 0.05% and 0.01% swainsonine, respectively. Three groups with four animals each were used. Group 1 received daily doses of 2g/kg body weight (bw) of dried I. sericophylla (150mg of swainsonine/kg). Goats from this group had clinical signs 36-38 days after the start of ingestion. Group 2 received dried I. riedelii daily doses of 2g/kg of I. riedelii (30mg of swainsonine/kg) for 70 days. No clinical signs were observed, therefore the swainsonine dose was increased to 60mg/kg for another 70 days. Goats from Group 2 had clinical signs 26-65 days after increase in swainsonine dose to 60mg/kg. Group 3 was used as control. In these experiments the minimum toxic dose was 60mg/kg which represents 0.0004% of the dry matter in goats ingesting 1.5% bw of the dry matter. For goats ingesting 2%-2.5% bw of dry matter this dose would be 0.00024%-0.0003% of the dry matter. After the end of the experiment two goats were euthanized and another six were observed for recovery of clinical signs. Four goats that continued to consume swainsonine containing plant for 39-89 days after the first clinical signs had non reversible signs, while two goats that ingested the plant for only 15 and 20 days after the first clinical signs recovered completely. These and previous results indicate that irreversible lesions due to neuronal loss occur in goats that continue to ingest the plants for about 30 days after the first clinical signs. Clinical signs and histological lesions were similar to those reported previously for goats poisoned by swainsonine containing plants. No significant alterations were found in packed cell volume, red and white blood cell counts, hemoglobin and mean corpuscular hemoglobin concentrations, mean corpuscular volume, and serum levels of glucose, total protein, and albumin, and the serum activities of gamma glutamyl transferase and aspartate aminotransferase. Swainsonine concentration of 0.05% in I. sericophylla and 0.01% in I. riedelii are different from samples of these plants used in previous experiments, which contained 0.14% and 0.5% swainsonine, respectively, demonstrating a wide variation in the toxicity of different samples.
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O objetivo desse estudo foi confirmar a toxidez e caracterizar os aspectos clínicos e patológicos da intoxicação por Trema micrantha em equinos. Três equinos, pôneis, com idade entre 2 e 7 anos consumiram espontaneamente folhas de T. micrantha em doses únicas de 30g/kg, 25g/ kg e 20g/kg. Os três animais adoeceram e evoluíram para morte. Outro equino recebeu 15 e 25g/kg da planta com intervalo de 30 dias entre as doses e não apresentou alteração clínica. Coletas diárias de sangue foram realizadas para análises bioquímicas. Os principais sinais clínicos apresentados foram apatia, desequilíbrios, dificuldade de deglutição, decúbito esternal, decúbito lateral, movimentos de pedalagem, coma e morte. Os três equinos afetados apresentaram elevação da atividade sérica de gama-glutamil transferase, dos níveis séricos de amônia e diminuição da glicemia. Esses animais foram necropsiados e fragmentos de diversos órgãos foram coletados para análise histopatológica e imuno-histoquímica. Os principais achados patológicos foram encontrados no fígado e no encéfalo dos três animais. O fígado apresentava, macroscopicamente, acentuação do padrão lobular; enquanto que, no encéfalo havia áreas amareladas na superfície de corte, mais evidentes na substância branca do cerebelo. Microscopicamente, o fígado apresentava tumefação hepatocelular, necrose de coagulação predominantemente centrolobular e hemorragia associada. No encéfalo, havia edema perivascular generalizado e astrócitos Alzheimer tipo II na substância cinzenta. Esses astrócitos apresentaram marcação fraca ou negativa na imuno-histoquímica anti-GFAP e marcação positiva do antígeno S-100. A dose letal mínima de folhas de T. micrantha estabelecida nesse experimento foi de 20g/kg. A ampla distribuição e palatabilidade desta planta, associadas à alta sensibilidade da espécie equina, constatada nesse experimento, reforçam a importância da planta em casos acidentais de intoxicação em equinos.
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Passive immunity transfer (PIT) evaluation is an essential tool for the maintenance of healthy calves during the first months of life. Since lactation number and breed have been proven to influence immunoglobulin levels in colostrum, the aim of this study was to evaluate PIT from primiparous and multiparous Canchim cows to their calves. Blood samples were collected from the calves before colostrum intake and 1, 2, 7, 15 and 30 days thereafter, while colostrum samples from the cows were taken immediately after parturition. Activities of gamma-glutamyl transferase (GGT), alkaline phosphatase (ALP), and concentrations of total protein, albumin, globulins, immunoglobulin A (IgA), immunoglobulin G (IgG), total and ionized calcium, inorganic phosphorus, magnesium, sodium and potassium were evaluated in calves' serum and activities of GGT and ALP and concentrations of total protein, IgA and IgG were assessed in cow's colostrum whey. Immunoglobulins concentrations were evaluated by electrophoresis in polyacrylamide gels. Serum biochemistry evaluations revealed an increase in gamma-glutamyl transferase and alkaline phosphatase activities and in total protein, globulins, immunoglobulin A and immunoglobulin G levels in calves' serum after colostrum intake. Only total protein and light chain immunoglobulin G levels in colostrum whey were affected by the cows' lactation number. Phosphorus and magnesium levels in blood serum increased after colostrum intake, while sodium and potassium levels oscillated in the experimental period. PIT was influenced by the cows' lactation number but was efficient in both groups.
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Foram realizados dois experimentos para determinar os efeitos tóxicos de diferentes doses de aflatoxinas em bezerros, considerando-se aspectos clínicos, produtivos e patológicos. No primeiro experimento, nove bezerros, Holandês, com 2-4 meses de idade, receberam ração contendo 500±100 ppb de aflatoxina, na quantidade equivalente a 1,5% do peso vivo/dia, durante dois meses. Três bezerros de idade e peso semelhantes foram usados como controle e, exceto por terem recebido ração livre de aflatoxinas, foram mantidos nas mesmas condições. No segundo experimento, três bezerros, Holandês, com 4-5 meses de idade, receberam, por via oral, pequenas porções diárias de um concentrado de aflatoxinas, diluídas em 500ml de água, correspondendo a doses de 1.250, 2.500 e 5.000 ppb de aflatoxina B1 (AFB1). Um bezerro, Holandês, 4 meses, macho, foi usado como controle. No primeiro experimento, o ganho de peso dos bezerros recebendo AFB1 foi equivalente ao do grupo controle durante todo período experimental. Nesse experimento não foram observadas alterações na atividade sérica da enzima aspartato transaminase (AST), nos níveis da albumina sérica (AS), da proteína total (PT) e no hematócrito, quando comparados os resultados semanais do grupo tratamento e controle. No entanto, observou-se diferença significativa nas atividades séricas das enzimas fosfatase alcalina (FA) e gama glutamil transferase (GGT) entre o grupo tratamento e o grupo controle, na coleta do 63º dia do experimento. Durante o período experimental, e três semanas após o término desse período, não foram observados sinais clínicos e alterações histopatológicas associadas ao consumo de aflatoxinas, em qualquer dos bezerros do grupo tratamento do primeiro experimento. No segundo experimento, sinais clínicos observados nos três bezerros intoxicados incluíram perda de apetite, diminuição do ganho de peso e emagrecimento. Icterícia, diarreia intermitente, tenesmo e apatia severa, foram observadas apenas no bezerro que recebia 5.000 ppb de AFB1. Esses sinais clínicos foram a razão para eutanásia desse bezerro. Níveis alterados da atividade sérica de FA e GGT foram observados em todos os bezerros do grupo tratamento durante grande parte do período experimental. Queda acentuada do nível da AS sérica foi observada na coleta do 49º dia do experimento no bezerro que recebia a maior dose de aflatoxina. Não foram observadas variações no hematócrito e na atividade sérica da AST, nem nos níveis séricos de proteína total, bilirrubina total e bilirrubina direta em qualquer dos bezerros desse experimento. Alterações histopatológicas nos bezerros intoxicados incluíram proliferação de ductos biliares, degeneração citoplasmática vacuolar consistente com acumulação hepatocelular de lipídios, fibrose periportal, ou em ponte, megalocitose, fibrose subendotelial das veias hepáticas terminais e edema. Achados de necropsia do bezerro recebendo a maior dose de AFB1 incluíram fígado levemente aumentado de tamanho, difusamente amarelo-claro e firme, discreta ascite, edema de mesentério e submucosa do abomaso. Os dados obtidos nesses experimentos permitem afirmar que doses de 500±100 ppb de AFB1 não causam alterações patológicas e produtivas em bezerros em condições experimentais, mas podem estar associadas à mínimas alterações bioquímicas, enquanto doses de 1.250, 2.500 e 5.000 ppb de aflatoxina B1 causam doença hepática crônica em bezerros em condições experimentais.
Resumo:
The objective of this study was to evaluate and compare the transfer of passive immunity and the proteinogram in Criollo Lageano (CL) and Black and White Holstein (BWH) calves. Two groups were utilized with 13 Criollo Lageano and 10 BWH calves. Blood samples were collected for the measurement of total serum protein, electrophoresis of serum proteins, activity of the gamma glutamyl transferase, and concentration of IgG by the method of the zinc sulfate turbidity in periods between 24 and 36 hours of life, 15, 30, 60, 90, 120, 150 and 180 days. Statistical analysis was performed by ANOVA and Tukey test at 5% significance level, and correlations between variables were calculated. Variations of serum proteins followed a pattern of physiological behavior over the first six months of life and production of immunoglobulins was active earlier in BWH calves and slower in the Criollo Lageano, without causing any impact on their health. Gamma globulin in the first days of life (24-36h) was correlated with IgG (r=0.87 for CL and r=0.89 for BWH), PTS (r=0.91 for CL and r=0.92 for BWH), Glob (r=0.99 for CL and r=0.98 for BWH) and GGT (r=0.14 for CL and r=0.83 for BWH). It was concluded that there was no failure in the transfer of passive immunity in Criollo Lageano calves but this failure occurred in the BWH calves. IgG values estimated by the zinc sulfate turbidity and serum proteins were considered good indicators of the transfer of passive immunity in calves between 24 and 36 hours of life.