984 resultados para spermatozoa motility
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During the rat submandibular gland (SMG) development, organogenesis and cytodifferentiation depend on the actin cytoskeleton, which is regulated by small Rho GTPases. These proteins link cell surface receptors to pathways that regulate cell motility, polarity, gene expression, vesicular trafficking, proliferation and apoptosis. The aim of this study was to evaluate, by immunohistochemistry, the distribution pattern of RhoA, RhoB, RhoC, Rac1 and Cdc42 during cytodifferentiation of the rat SMG and in male adults. All GTPases were found in epithelial and mesenchymal tissues throughout gland development. Rac1 appeared to be important for parenchyma expansion at the beginning of cytodifferentiation, while RhoC, Cdc42 and the inactive phosphorylated form of Rac1 seemed associated with lumen formation and cell polarization in terminal tubules. RhoA and RhoB labeling was evident throughout development. All GTPases were differentially expressed in the adult gland, suggesting that they play specific roles during differentiation and function of the rat SMG.
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Melanoma is the most aggressive form of skin cancer, and its incidence has increased dramatically over the years. The murine B16F10 melanoma in syngeneic C57Bl/6 mice has been used as a highly aggressive model to investigate tumor development. Presently, we demonstrate in the B16F10-Nex2 subclone that silencing of SOCS-1, a negative regulator of Jak/Stat pathway, leads to reversal of the tumorigenic phenotype and inhibition of melanoma cell metastasis. SOCS-1 silencing with short hairpin RNA affected tumor growth and cell cycle regulation with arrest at the S phase with large-sized nuclei, reduced cell motility, and decreased melanoma cell invasion through Matrigel. A clonogenic assay showed that SOCS-1 acted as a modulator of resistance to anoikis. In addition, down-regulation of SOCS-1 decreased the expression of epidermal growth factor receptor ( mainly the phosphorylated-R), Ins-R alpha, and fibroblast growth factor receptor. In vivo, silencing of SOCS-1 inhibited subcutaneous tumor growth and metastatic development in the lungs. Because SOCS-1 is expressed in most melanoma cell lines and bears a relation with tumor invasion, thickness, and stage of disease, the present results on the effects of SOCS-1 silencing in melanoma suggest that this regulating protein can be a target of cancer therapy.
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Patients with chronic pancreatitis may have abnormal gastrointestinal transit, but the factors underlying these abnormalities are poorly understood. Gastrointestinal transit was assessed, in 40 male outpatients with alcohol-related chronic pancreatitis and 18 controls, by scintigraphy after a liquid meal labeled with (99m)technetium-phytate. Blood and urinary glucose, fecal fat excretion, nutritional status, and cardiovascular autonomic function were determined in all patients. The influence of diabetes mellitus, malabsorption, malnutrition, and autonomic neuropathy on abnormal gastrointestinal transit was assessed by univariate analysis and Bayesian multiple regression analysis. Accelerated gastrointestinal transit was found in 11 patients who showed abnormally rapid arrival of the meal marker to the cecum. Univariate and Bayesian analysis showed that diabetes mellitus and autonomic neuropathy had significant influences on rapid transit, which was not associated with either malabsorption or malnutrition. In conclusion, rapid gastrointestinal transit in patients with alcohol-related chronic pancreatitis is related to diabetes mellitus and autonomic neuropathy.
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Most models designed to study the bidirectional movement of cargos as they are driven by molecular motors rely on the idea that motors of different polarities can be coordinated by external agents if arranged into a motor-cargo complex to perform the necessary work Gross, Hither and yon: a review of bidirectional microtubule-based transport (Gross in Phys. Biol. 1:R1-R11, 2004). Although these models have provided us with important insights into these phenomena, there are still many unanswered questions regarding the mechanisms through which the movement of the complex takes place on crowded microtubules. For example (i) how does cargo-binding affect motor motility? and in connection with that-(ii) how does the presence of other motors (and also other cargos) on the microtubule affect the motility of the motor-cargo complex? We discuss these questions from a different perspective. The movement of a cargo is conceived here as a hopping process resulting from the transference of cargo between neighboring motors. In the light of this, we examine the conditions under which cargo might display bidirectional movement even if directed by motors of a single polarity. The global properties of the model in the long-time regime are obtained by mapping the dynamics of the collection of interacting motors and cargos into an asymmetric simple exclusion process (ASEP) which can be resolved using the matrix ansatz introduced by Derrida (Derrida and Evans in Nonequilibrium Statistical Mechanics in One Dimension, pp. 277-304, 1997; Derrida et al. in J. Phys. A 26: 1493-1517, 1993).
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The motility of T cells depends on the dynamic spatial regulation of integrin-mediated adhesion and de-adhesion. Cathepsin X, a cysteine protease, has been shown to regulate T-cell migration by interaction with lymphocyte function associated antigen-1 (LFA-1). LFA-1 adhesion to the ICAM-1 is controlled by the association of actin-binding proteins with the cytoplasmic tail of the beta(2) chain of LFA-1. Cleavage by cathepsin X of the amino acid residues S(769), E(768) and A(767) from the C-terminal of the beta(2) cytoplasmic tail of LFA-1 is shown to promote binding of the actin-binding protein alpha-actinin-1. Furthermore, cathepsin X overexpression reduced LFA-1 clustering and induced an intermediate affinity LFA-1 conformation that is known to associate with a-actinin-1. increased levels of intermediate affinity LFA-1 resulted in augmented cell spreading due to reduced attachment of T cells to the ICAM-1-coated surface. Gradual cleavage of LFA-1 by cathepsin X enables the transition between intermediate and high affinity LFA-1, an event that is crucial for effective T-cell migration.
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Xylella fastidiosa is the etiologic agent of a wide range of plant diseases, including citrus variegated chlorosis (CVC), a major threat to citrus industry. The genomes of several strains of this phytopathogen were completely sequenced, enabling large-scale functional studies. DNA microarrays representing 2,608 (91.6%) coding sequences (CDS) of X. fastidiosa CVC strain 9a5c were used to investigate transcript levels during growth with different iron availabilities. When treated with the iron chelator 2,2`-dipyridyl, 193 CDS were considered up-regulated and 216 were considered down-regulated. Upon incubation with 100 mu M ferric pyrophosphate, 218 and 256 CDS were considered up- and down-regulated, respectively. Differential expression for a subset of 44 CDS was further evaluated by reverse transcription-quantitative PCR. Several CDS involved with regulatory functions, pathogenicity, and cell structure were modulated under both conditions assayed, suggesting that major changes in cell architecture and metabolism occur when X. fastidiosa cells are exposed to extreme variations in iron concentration. Interestingly, the modulated CDS include those related to colicin V-like bacteriocin synthesis and secretion and to functions of pili/fimbriae. We also investigated the contribution of the ferric uptake regulator Fur to the iron stimulon of X. fastidiosa. The promoter regions of the strain 9a5c genome were screened for putative Fur boxes, and candidates were analyzed by electrophoretic mobility shift assays. Taken together, our data support the hypothesis that Fur is not solely responsible for the modulation of the iron stimulon of X fastidiosa, and they present novel evidence for iron regulation of pathogenicity determinants.
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The phytopathogen Xylella fastidiosa produces long type IV pili and short type I pili involved in motility and adhesion. In this work, we have investigated the role of sigma factor sigma(54) (RpoN) in the regulation of fimbrial biogenesis in X. fastidiosa. An rpoN null mutant was constructed from the non-pathogenic citrus strain J1a12, and microarray analyses of global gene expression comparing the wild type and rpoN mutant strains showed few genes exhibiting differential expression. In particular, gene pilA1 (XF2542), which encodes the structural pilin protein of type IV pili, showed decreased expression in the rpoN mutant, whereas two-fold higher expression of an operon encoding proteins of type I pili was detected, as confirmed by quantitative RT-PCR (qRT-PCR) analysis. The transcriptional start site of pilA1 was determined by primer extension, downstream of a sigma(54)-dependent promoter. Microarray and qRT-PCR data demonstrated that expression of only one of the five pilA paralogues, pilA1, was significantly reduced in the rpoN mutant. The rpoN mutant made more biofilm than the wild type strain and presented a cell-cell aggregative phenotype. These results indicate that sigma(54) differentially regulates genes involved in type IV and type I fimbrial biogenesis, and is involved in biofilm formation in X. fastidiosa.
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RpfG is a paradigm for a class of widespread bacterial two-component regulators with a CheY-like receiver domain attached to a histidine-aspartic acid-glycine-tyrosine-proline (HD-GYP) cyclic di-GMP phosphodiesterase domain. In the plant pathogen Xanthomonas campestris pv. campestris (Xcc), a two-component system comprising RpfG and the complex sensor kinase RpfC is implicated in sensing and responding to the diffusible signaling factor (DSF), which is essential for cell-cell signaling. RpfF is involved in synthesizing DSF, and mutations of rpfF, rpfG, or rpfC lead to a coordinate reduction in the synthesis of virulence factors such as extracellular enzymes, biofilm structure, and motility. Using yeast two-hybrid analysis and fluorescence resonance energy transfer experiments in Xcc, we show that the physical interaction of RpfG with two proteins with diguanylate cyclase (GGDEF) domains controls a subset of RpfG-regulated virulence functions. RpfG interactions were abolished by alanine substitutions of the three residues of the conserved GYP motif in the HD-GYP domain. Changing the GYP motif or deletion of the two GGDEF-domain proteins reduced Xcc motility but not the synthesis of extracellular enzymes or biofilm formation. RpfG-GGDEF interactions are dynamic and depend on DSF signaling, being reduced in the rpfF mutant but restored by DSF addition. The results are consistent with a model in which DSF signal transduction controlling motility depends on a highly regulated, dynamic interaction of proteins that influence the localized expression of cyclic di-GMP.
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The Blastocladiella emersonii life cycle presents a number of drastic biochemical and morphological changes, mainly during two cell differentiation stages: germination and sporulation. To investigate the transcriptional changes taking place during the sporulation phase, which culminates with the production of the zoospores, motile cells responsible for the dispersal of the fungus, microarray experiments were performed. Among the 3,773 distinct genes investigated, a total of 1,207 were classified as differentially expressed, relative to time zero of sporulation, at at least one of the time points analyzed. These results indicate that accurate transcriptional control takes place during sporulation, as well as indicating the necessity for distinct molecular functions throughout this differentiation process. The main functional categories overrepresented among upregulated genes were those involving the microtubule, the cytoskeleton, signal transduction involving Ca(2+), and chromosome organization. On the other hand, protein biosynthesis, central carbon metabolism, and protein degradation were the most represented functional categories among downregulated genes. Gene expression changes were also analyzed in cells sporulating in the presence of subinhibitory concentrations of glucose or tryptophan. Data obtained revealed overexpression of microtubule and cytoskeleton transcripts in the presence of glucose, probably causing the shape and motility problems observed in the zoospores produced under this condition. In contrast, the presence of tryptophan during sporulation led to upregulation of genes involved in oxidative stress, proteolysis, and protein folding. These results indicate that distinct physiological pathways are involved in the inhibition of sporulation due to these two classes of nutrient sources.
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The PilZ protein was originally identified as necessary for type IV pilus (T4P) biogenesis. Since then, a large and diverse family of bacterial PilZ homology domains have been identified, some of which have been implicated in signaling pathways that control important processes, including motility, virulence and biofilm formation. Furthermore, many PilZ homology domains, though not PilZ itself, have been shown to bind the important bacterial second messenger bis(3`-> 5`)cyclic diGMP (c-diGMP). The crystal structures of the PilZ orthologs from Xanthomonas axonopodis pv Citri (PilZ(XAC1133), this work) and from Xanthomonas campestris pv campestris (XC1028) present significant structural differences to other PilZ homologs that explain its failure to bind c-diGMP. NMR analysis of PilZ(XAC1133) shows that these structural differences are maintained in solution. In spite of their emerging importance in bacterial signaling, the means by which NZ proteins regulate specific processes is not clear. In this study, we show that PilZ(XAC1133) binds to PilB, an ATPase required for TV polymerization, and to the EAL domain of FiMX(XAC2398), which regulates TV biogenesis and localization in other bacterial species. These interactions were confirmed in NMR, two-hybrid and far-Western blot assays and are the first interactions observed between any PilZ domain and a target protein. While we were unable to detect phosphodiesterase activity for FimXX(AC2398) in vitro, we show that it binds c-diGMP both in the presence and in the absence of PilZ(XAC1133). Site-directed mutagenesis studies for conserved and exposed residues suggest that PilZ(XAC1133) interactions with FimX(XAC2398) and PilB(XAC3239) are mediated through a hydrophobic surface and an unstructured C-terminal extension conserved only in PilZ orthologs. The FimX-PilZ-PilB interactions involve a full set of ""degenerate"" GGDEF, EAL and PilZ domains and provide the first evidence of the means by which PilZ orthologs and FimX interact directly with the TP4 machinery. (C) 2009 Elsevier Ltd. All rights reserved.
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XIXA doença do refluxo gastroesofágico (DRGE) comumente afeta o esôfago e provavelmente é a condição mais prevalente no segmento alto do trato gastrointestinal, acometendo entre 5 e 45% da população ocidental. A terapêutica atual para essa doença além de medidas gerais e dietéticas, inclui tratamento farmacológico e/ou cirurgia. Ambos podem ser eficazes, mas apresentam elevado custo financeiro. O tratamento com fármacos pode apresentar baixa aderência medicamentosa e a cirurgia tem baixa, mas não desprezível, morbidade e mortalidade. Idealmente o tratamento da DRGE deveria ser eficaz, com baixo risco e com baixo custo. Objetivos: 1. Desenvolver um modelo experimental em suínos para o estudo do Refluxo Gastroesofágico através da Pressão e do Volume de Vazão Gástricos; 2. Avaliar a eficácia do implante endoscópico de PMMA ao nível do Esfíncter Esofágico Inferior (EEI) para aumentar a Pressão de Vazão Gástrica, o Volume de Vazão Gástrico e a Pressão Basal do EEI; 3. Descrever as reações histológicas associadas ao implante de PMMA. Material e Métodos: Suínos da raça Large White, do sexo feminino com 8 semanas de vida foram estudados no experimento. Foi realizada manometria do esfíncter esofágico inferior com registro da pressão basal com cateter de perfusão com água e técnica de retirada lenta. Calculou-se, também, a extensão do EEI. Após, gastrostomia era realizada com colocação intragástrica da extremidade distal de uma sonda de Foley com três vias e um cateter de pHmetria esofágica introduzido via oral com o sensor distal posicionado 5 cm acima do bordo superior de esfíncter esofágico inferior. Iniciava-se, XXentão, a infusão contínua no estômago de uma solução de HCl a 0,02N com medida e registro simultâneos da Pressão e do Volume de Vazão Gástricos e do pH esofágico. Definiu-se a Pressão de Vazão Gástrica (PVG) e o Volume de Vazão Gástrico quando houve brusca e sustentada acidificação do esôfago distal (pH<3). Após, introduzia-se um tubo metálico (Tubo Introdutor ou TI) via oral e, em seguida, o endoscópio, seguindo ambos até o esôfago distal. Cateter de nylon com agulha calibre 16 era introduzido pelo tubo introdutor e o PMMA implantado na área correspondente ao EEI com uma pistola dosadora volumétrica que permitia a injeção de volumes prédeterminados em 3 ou 4 pontos da submucosa (total por ponto = 0,73 ml de PMMA). As medidas de PVG, VVG e pressão basal do EEI foram repetidas após 28 dias, sacrificando-se os animais e removendo-se esôfago médio e distal, junção esofagogástrica, fundo e corpo gástricos para estudo histológico. Previamente ao experimento, três projetos pilotos foram desenvolvidos. O primeiro designado como “Projeto Piloto: Refluxo Gastroesofágico por pHmetria de 24H” (RGE 24H) buscou a via de acesso transnasal para registro de pHmetria por 24 horas. No segundo, designado “Projeto Piloto: Esofagostomia”, para confirmação de refluxo gastroesofágico espontâneo em suínos da raça Large White, utilizou-se anestesia com associação de tiletamina 125 mg e zolazepam 125 mg em combinação com um sedativo, a xilazina a 2% . A pHmetria foi mantida por 24 horas. Os dados descritos por Kadirkamanathan et al. não foram reproduzidos no nosso laboratório. Optou-se então pela realização de um terceiro projeto, “Projeto Piloto: Gastrostomia” para induzir refluxo gastroesofágico através de um modelo experimental e testar a reprodutibilidade da Pressão de Vazão Gástrica. Obteve-se sucesso. Resultados: Trinta e sete animais foram estudados em 60 intervenções no Laboratório de motilidade experimental. O projeto piloto “RGE:24h” foi abandonado após perda de 5 animais pela anestesia com halotano e, solucionada esta questão, a sistemática infecção do tecido celular subcutâneo nasal, dificultando a manutenção do cateter de phmetria em outros 5 animais. No “Projeto Piloto: Esofagostomia”, em cinco animais estudados (cada animal em duas ocasiões diferentes) não se reproduziram os achados de refluxo espontâneo. No terceiro projeto “Projeto Piloto: Gastrostomia” quatro animais foram estudados em dois momentos diferentes obtendo-se sucesso e reprodutibilidade XXIdos dados. Criado o modelo experimental, quatorze suínos foram submetidos ao experimento com implante endoscópico de PMMA com os seguintes resultados: A média dos pesos com 8 semanas de idade foi 14,98 ± 2,43 e 28 dias após o implante, 20,26 ± 3,68. O ganho ponderal foi considerado normal para a espécie. A Pressão de Vazão Gástrica média no dia 1 foi 8,08 mmHg e no dia 28, 10,69mmHg (Teste t de Student: t = 2,72 gl = 13 p = 0,017). Os Volumes de Vazão Gástricos médios foram: 392,86 ml para o dia 1 e 996,71 ml no dia 28 (teste t de Student: t = 11,66 gl = 13 p< 0,001). A Pressão Basal do EEI e o comprimento do esfíncter, não apresentaram diferenças estatisticamente significativas. PMMA foi identificado como depósitos de grandes vacúolos no tecido intersticial ao exame histológico da junção esofagogástrica associado a histiócitos, plasmócitos e presença de células gigantes tipo Langhans indicando reação tecidual de corpo estranho em todos os animais. Fibrose e macrófagos com vacúolos intracelulares estiveram presentes em menor freqüência. Conclusões: 1. O modelo experimental, em suínos, desenvolvido viabilizou o estudo do Refluxo Gastroesofágico através da Pressão de Vazão Gástrica e Volume de Vazão Gástrico; 2. O implante de PMMA, no presente estudo, aumentou a Pressão de Vazão e o Volume de Vazão Gástricos, mas não a Pressão Basal do EEI, nem tampouco aumentou o seu comprimento; 3. Depósito de PMMA implantado e evidência de processo inflamatório crônico e reação tecidual de corpo estranho foi encontrada no local do implante de PMMA. Macrófagos com vacúolos intracelulares e fibrose foram encontrados com menos freqüência.
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A cutia (Dasyprocta aguti) é um roedor silvestre encontrado amplamente na região Nordeste do Brasil. É uma espécie muito utilizada pela população humana de baixa renda como fonte alternativa de proteína na alimentação. Foram utilizadas 31 cutias, machos, provenientes da Universidade Federal do Piauí (FUFPI), Estado do Piauí e da Escola Superior de Agricultura de Mossoró Estado do Rio Grande do Norte. Os animais foram divididos em grupos etários desde o nascimento até os 14 meses de idade. O diâmetro nuclear médio foi obtido pela medida de 10 núcleos do tipo celular estudado em cada testículo, no estágio 1 do ciclo do epitélio seminífero. Nos animais que não apresentaram o epitélio organizado em estágios bem definidos em virtude da idade, foram feitas medidas em secções transversais escolhidas somente pelo contorno circular. O início da assincronia do processo espermatogênico foi observado a partir dos seis meses de idade. A puberdade, na cutia Dasyprocta aguti, foi definitivamente estabelecida a partir dos nove meses de idade, pois estavam presentes todos os tipos celulares e espermatozóides liberados no lume tubular em grande parte do parênquima testicular.
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Estudou-se a influência das quatro estações do ano nas características do sêmen e nas concentrações de testosterona e cortisol em touros. Cinco touros Nelore e cinco Simental entre 48 e 72 meses de idade, criados extensivamente, foram avaliados andrologicamente por meio de exames físicos das características morfológicas do sêmen e das concentrações séricas de testosterona e cortisol. Houve redução na motilidade e no vigor do sêmen no inverno (P<0,05) na raça Simental. Observou-se correlação (P<0,01) entre testosterona x motilidade (0,69) e testosterona x vigor (0,57) na raça Simental, e cortisol x motilidade (0,68) e cortisol x vigor (0,65) na raça Nelore. O efeito das estações do ano modificou a qualidade do sêmen com aumento da motilidade e vigor espermáticos na primavera e verão nos touros Simental. A concentração de cortisol diminuiu no outono nos touros Nelore.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)