967 resultados para C-FOS EXPRESSION


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Utilizando as técnicas de imunoistoquímica e densitometria óptica, foi investigada a localização e a expressão da proteína c-Fos no SNC do caracol Megalobulimus abbreviatus. Neurônios imunorreativos foram encontrados nos gânglios cerebrais, pedais, parietal direito e visceral de caracóis submetidos ao estímulo térmico aversivo (50oC), e sacrificados em diferentes tempos (3, 6, 12, 18 e 24 h) após a estimulação. A análise da imunorreatividade à c-Fos através do método de medida da densidade óptica (DO) revelou uma diferença significativa no sentido de apresentar uma maior expressão (p<0,05) na área do lobo pedal do pós-cérebro do gânglio cerebral em relação às outras regiões analisadas no mesmo gânglio (mesocérebro, pró-cérebro e lobo pleural do pós-cérebro). Além disso, também houve expressão significativamente maior (p<0,05) quando comparada a densitometria da região do mesocérebro em relação ao lobo pleural do pós-cérebro nos grupos controle, 3h e 18h. O lobo pleural do pós-cérebro apresentou uma expressão significativamente menor (p<0,05) na imunorreatividade da proteína c-Fos quando comparado ao pró-cérebro em animais sacrificados 12h e 24h após e estímulo aversivo. Em relação ao grupo controle, a DO da proteína c-Fos não variou nos diferentes tempos de sacrifício quando comparada a mesma região do gânglio (cerebral, pedal, parietal direito ou visceral) ao longo do tempo na maioria das regiões. A única diferença estatisticamente significativa (p<0,05) foi encontrada no mesocérebro do gânglio de animais sacrificados 12 h após o estímulo térmico aversivo, mostrando uma diminuição da imunorreatividade. Nos animais tratados com salina (1ml) ou morfina (20mg/kg) 15 min antes do estímulo térmico aversivo, os mesmos grupos neuronais nos gânglios do SNC de M. abbreviatus mostraram imunomarcação à proteína c-Fos. Em relação ao grupo controle, observou-se uma expressão significativamente menor (p<0,01) na DO da imunorreatividade da proteína c-Fos nos neurônios anteriores do gânglio pedal nos animais sacrificados 3 h e 6 h após o estímulo térmico aversivo. No momento em que a comparação foi feita entre os grupos salina e morfina de animais sacrificados ao mesmo tempo, na grande maioria dos grupos observou-se uma diminuição na imunorreatividade da proteína c-Fos. Esta diferença, porém, mostrou-se significativa (p<0,01) no mesocérebro de animais do grupo 3h, no lobo pedal do pós cérebro de animais dos grupos 3 h, 6 h e 18 h, nos neurônios anteriores do gânglio pedal nos grupos 6 h e 12 h, nos neurônios mediais do gânglio pedal do grupo 3 h, nos neurônios posteriores do gânglio pedal do grupo 6 h, nos neurônios da região anterior do gânglio parietal direito no grupo 12 h e nos neurônios do gânglio visceral no grupo experimental 12 h. A diferença na DO da proteína c-Fos apresentou uma diminuição extremamente significativa (p<0,001) nos neurônios mediais do gânglio pedal de animais sacrificados 12 h após o estímulo térmico aversivo, nos neurônios posteriores do gânglio pedal dos animais sacrificados 12 h após o estímulo e nos neurônios do gânglio visceral dos animais do grupo experimental 6 h. A partir destes dados e da correlação com estudos realizados em M. abbreviatus para detecção de mediadores químicos envolvidos na nocicepção, podemos concluir que as áreas imunorreativas que apresentaram estas variações na densidade óptica da imunorreatividade à proteína c-Fos em diferentes tempos de sacrifício e tratamento com morfina estão envolvidas no processo nociceptivo neste caracol.

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A dor constitui uma experiência complexa, mediada por distintos sistemas de transmissão sendo integrados por diversos mecanismos neurais. Um dos modelos mais empregados para o estudo da dor neuropática é a secção nervosa periférica, a qual resulta em alterações neuroquímicas e neuroanatômicas em neurônios sensoriais primários e em seus territórios de projeção. Após a secção do nervo ciático, os mamíferos apresentam um aumento na expressão de genes precocemente expressos, como o c-Fos e o c-Jun, no corno dorsal da medula espinal. Animais não mamíferos, como os anfíbios, também vem sendo utilizados como modelos para os estudos dos mecanismos acerca da nocicepção. No presente estudo foi analisado o padrão de imunorreatividade à proteína c-Fos na medula espinal lombossacral e no gânglio da raiz dorsal (GRD) de rãs Rana catesbeiana em condições basais, bem como de rãs submetidas à manipulação e à secção do nervo ciático. Para isso foram utilizados animais adultos, de ambos os sexos, sendo que os mesmos foram sacrificados 3 dias após o procedimento cirúrgico. A técnica imunoistoquímica utilizada foi a do anticorpo não marcado de Sternberger (1979), sendo utilizado anticorpo primário do tipo policlonal, na concentração de 1:700. As alterações no padrão de imunorreatividade a esta proteína no GRD dos três grupos experimentais foram quantificadas através das técnicas de densitometria óptica e contagem neuronal. Para a quantificação da proteína c-Fos na medula espinal lombossacral dos 3 grupos experimentais, utilizou-se a técnica de western blot. Em GRD, a imunorreatividade foi mais pronunciada no citoplasma de neurônios de pequeno (10-20μm), médio (25-35μm), e grande 40-50μm) diâmetro dos 3 grupos experimentais. A manipulação e a secção do nervo ciático provocou aumento no número de núcleos imunorreativos de células de pequeno diâmetro. A densitometria óptica foi significativamente maior no citoplasma das células dos GRDs localizados ipsilateralmente quando comparada com aquela das células pertencentes aos GRDs localizados contralateralmente à lesão. Todavia, não houve diferenças estatisticamente significativa entre a imunorreatividade nuclear nos GRDs entre os 3 grupos experimentais. O número de células imunorreativas nestes gânglios não mostrou mudanças significativas nos 3 grupos experimentais. Na medula espinal, a imunorreatividade à proteína c-Fos ocorreu predominantemente em núcleos localizados nos campos terminais dorsal e ventral, na banda mediolateral, na região ventral medial do corno ventral e nos funículos lateral e ventral medial. Os neurônios motores sempre foram imunorreativos. A manipulação e a secção do nervo ciático resultaram em um acréscimo no número de núcleos imunorreativos localizados nos campos terminais dorsal e ventral, e banda mediolateral, sendo este aumento maior na região do campo terminal dorsal. As demais regiões não mostraram modificações significantes no padrão de imunorreatividade da proteína c-Fos. A expressão desta proteína não modificou significativamente nos 3 grupos experimentais. Estes resultados mostram que, em rãs, similar ao que ocorre em mamíferos, a ativação de fibras aferentes primárias ativam a proteína c-Fos. No entanto, diferente de mamíferos, esta proteína ocorre no citoplasma de células sensoriais. Assim, apesar das rãs constituírem excelentes modelos para o estudo do papel do c-Fos nos mecanismos da transmissão nociceptiva, os estudos futuros abordando esta questão deverão considerar esta particularidade das rãs.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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During exercise, intense brain activity orchestrates an increase in muscle tension. Additionally, there is an increase in cardiac output and ventilation to compensate the increased metabolic demand of muscle activity and to facilitate the removal of CO2 from and the delivery of O-2 to tissues. Here we tested the hypothesis that a subset of pontomedullary and hypothalamic neurons could be activated during dynamic acute exercise. Male Wistar rats (250-350 g) were divided into an exercise group (n = 12) that ran on a treadmill and a no-exercise group (n = 7). Immunohistochemistry of pontomedullary and hypothalamic sections to identify activation (c-Fos expression) of cardiorespiratory areas showed that the no-exercise rats exhibited minimal Fos expression. In contrast, there was intense activation of the nucleus of the solitary tract, the ventrolateral medulla (including the presumed central chemoreceptor neurons in the retrotrapezoid/parafacial region), the lateral parabrachial nucleus, the Kolliker-Fuse region, the perifornical region, which includes the perifornical area and the lateral hypothalamus, the dorsal medial hypothalamus, and the paraventricular nucleus of the hypothalamus after running exercise. Additionally, we observed Fos immunoreactivity in catecholaminergic neurons within the ventrolateral medulla (C1 region) without Fos expression in the A2, A5 and A7 neurons. In summary, we show for the first time that after acute exercise there is an intense activation of brain areas crucial for cardiorespiratory control. Possible involvement of the central command mechanism should be considered. Our results suggest whole brain-specific mobilization to correct and compensate the homeostatic changes produced by acute exercise. (c) 2012 IBRO. Published by Elsevier Ltd. All rights reserved.

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Transcription factors control eukaryotic polymerase II function by influencing the recruitment of multiprotein complexes to promoters and their subsequent integrated function. The complexity of the functional ‘transcriptosome’ has necessitated biochemical fractionation and subsequent protein sequencing on a grand scale to identify individual components. As a consequence, much is now known of the basal transcription complex. In contrast, less is known about the complexes formed at distal promoter elements. The c-fos SRE, for example, is known to bind Serum Response Factor (SRF) and ternary complex factors such as Elk-1. Their interaction with other factors at the SRE is implied but, to date, none have been identified. Here we describe the use of mass-spectrometric sequencing to identify six proteins, SRF, Elk-1 and four novel proteins, captured on SRE duplexes linked to magnetic beads. This approach is generally applicable to the characterisation of nucleic acid-bound protein complexes and the post-translational modification of their components.

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In a search for regulatory proteins that interact with the leucine zipper motif of c-Fos in the yeast two-hybrid screen, we have identified a protein (FZA-B) that has extensive sequence similarity to SUG1 of Saccharomyces cerevisiae. Here we show that FZA-B can functionally substitute for SUG1 in yeast and that FZA-B interacts with Fos proteins in vitro through their leucine zippers. In rat liver and in HeLa cells, FZA-B is present in the 26S proteasome complex, as is c-Fos. Immobilized antibody raised against an FZA-B-specific peptide depleted peptidase activity, proteasomal proteins, FZA-B, and c-Fos from a 26S proteasome preparation. FZA-B is found predominantly in the nuclear fraction of COS cells expressing an FZA-B transgene and in the nuclear 26S proteasome of HeLa cells. We conclude that FZA-B is the mammalian homolog of SUG1 (mSug1) and that it is present in the nuclear 26S proteasome of cells. Our results suggest that mSug1 may be involved in the degradation of c-Fos and other transcription factors.

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The interleukin 2 receptor (IL-2R) consists of three subunits, the IL-2R alpha, IL-2R beta c, and IL-2R gamma c chains. Two Janus family protein tyrosine kinases (PTKs), Jak1 and Jak3, were shown to associate with IL-2R beta c and IL-2R gamma c, respectively, and their PTK activities are increased after IL-2 stimulation. A Jak3 mutant with truncation of the C-terminal PTK domain lacks its intrinsic kinase activity but can still associate with IL-2R gamma c. In a hematopoietic cell line, F7, that responds to either IL-2 or IL-3, overexpression of this Jak3 mutant results in selective inhibition of the IL-2-induced activation of Jak1/Jak3 PTKs and of cell proliferation. Of the three target nuclear protooncogenes of the IL-2 signaling, c-fos and c-myc genes, but not the bcl-2 gene, were found to be impaired. On the other hand, overexpression of the dominant negative form of the IL-2R gamma c chain, which lacks most of its cytoplasmic domain, in F7 cells resulted in the inhibition of all three protooncogenes. These results provide a further molecular basis for the critical role of Jak3 in IL-2 signaling and also suggest a Jak PTK-independent signaling pathway(s) for the bcl-2 gene induction by IL-2R.

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The receptor tyrosine kinases (RTKs) c-kit and platelet-derived growth factor receptor alpha chain (PDG-FRa) are encoded at the white spotting (W) and patch (Ph) loci on mouse chromosome 5. While W mutations affect melanogenesis, gametogenesis, and hematopoiesis, the Ph mutation affects melanogenesis and causes early lethality in homozygotes. W-sash (Wsh) is an expression mutation and blocks c-kit expression in certain cell types and enhances c-kit expression in others, including at sites important for early melanogenesis. We have determined the effect of Ph on c-kit expression during embryogenesis in Ph heterozygotes. Immunohistochemical analysis revealed enhanced c-kit expression in several cell types, including sites important for early melanogenesis. We propose that in both Wsh and Ph mutant mice c-kit misexpression affects early melanogenesis and is responsible for the pigment deficiency. Moreover, we have defined the organization of the RTKs in the W/Ph region on chromosome 5 and characterized the Wsh mutation by using pulsed-field gel electrophoresis. Whereas the order of the RTK genes was determined as Pdgfra-c-kit-flk1, analysis of the Wsh mutation revealed that the c-kit and Pdgfra genes are unlinked in Wsh, presumably because of an inversion of a small segment of chromosome 5. The Ph mutation consists of a deletion including Pdgfra and the 3' deletion endpoint of Ph lies between Pdgfra and c-kit. Therefore, positive 5' upstream elements controlling c-kit expression in mast cells and some other cell types are affected by the Wsh mutation and negative elements are affected by both the Wsh and the Ph mutation.

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Fetal epithelium retains the ability to re-epithelialize a wound in organotypic culture in a manner not dependent on the presence of underlying dermal substrata. This capacity is lost late in the third trimester of gestation or after embryonic day 17 (E-17) in the rat such that embryonic day 19 (E-19) wounds do not re-epithelialize. Moreover, wounds created in E-17 fetuses in utero heal in a regenerative, scar-free fashion. To investigate the molecular events regulating re-epithelialization in fetal skin, the wound-induced expression profile and tissue localization of activator protein 1 (AP-1) transcription factors c-Fos and c-Jun was characterised in E-17 and E-19 skin using organotypic fetal cultures. The involvement of mitogen-activated protein kinase (MAPK) signaling in mediating wound-induced transcription factor expression and wound re-epithelialization was assessed, with the effect of wounding on the expression of keratinocyte differentiation markers determined. Our results show that expression of AP-1 transcription factors was induced immediately by wounding and localized predominantly to the epidermis in E-17 and E-19 skin. c-fos and c-jun induction was transient in E-17 skin with MAPK-dependent c-fos expression necessary for the re-epithelialization of an excisional wound in organotypic culture. In E-19 skin, AP-11 expression persisted beyond 12 h post-wounding, and marked upregulation of the keratinocyte differentiation markers keratin 10 and loricrin was observed. No such changes in the expression of keratin 10 or loricrin occurred in E-17 skin. These findings indicate that re-epithelialization in fetal skin is regulated by wound-induced AP-1 transcription factor expression via MAPK and the differentiation status of keratinocytes.

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Objective: To determine if the magnitude of the force used to induce incisor tooth movement promotes distinct activation in cells in the central amygdala (CEA) and lateral hypothalamus (LH) of rats. Also, the effect of morphine on Fos immunoreactivity (Fos-IR) was investigated in these nuclei. Materials and Methods: Adult male rats were anesthetized and divided into six groups: only anesthetized (control), without orthodontic appliance (OA), OA but without force, OA activated with 30g or 70g, OA with 70g in animals pretreated with morphine (2 mg/kg, intraperitoneal). Three hours after the onset of the experiment the rats were reanesthetized and perfused with 4% paraformaldehyde. The brains were removed and fixed, and sections containing CEA and LH were processed for Fos protein immunohistochemistry. Results: The results show that in the control group, the intramuscular injection of a ketamine/xylazine mixture did not induce Fos-IR cells in the CEA or in the LH. Again, the without force group showed a little Fos-IR. However, in the 70g group the Fos-IR was the biggest observed (P < .05, Tukey) in the CEA and LH compared with the other groups. In the 30g group, the Fos-IR did not differ from the control group, the without OA group, and the without force group. Furthermore, pretreatment with morphine in the 70g group reduced Fos-IR in these regions. Conclusions: Tooth movement promotes Fos-IR in the CEA and LH according to the magnitude of the force applied. (Angle Orthod. 2010;80:111-115.)

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Glutamatergic transmission through metabotropic and ionotropic receptors, including kainate receptors, plays an important role in the nucleus of the solitary tract (NTS) functions. Glutamate system may interact with several other neurotransmitter systems which might also be influenced by steroid hormones. In the present study we analyzed the ability of systemic kainate to stimulate rat NTS neurons, which was evaluated by c-Fos as a marker of neuronal activation, and also to change the levels of NTS neurotransmitters such as GABA, NPY, CGRP, GAL, NT and NO by means of quantitative immunohistichemistry combined with image analysis. The analysis was also performed in adrenalectomized and kainate stimulated rats in order to evaluate a possible role of adrenal hormones on NTS neurotransmission. Male Wistar rats (3 month-old) were used in the present study. A group of 15 rats was submitted either to bilateral adrenalectomy or sham operation. Forty-eight hours after the surgeries, adrenalectomized rats received a single intraperitoneal injection of kainate (12 mg/kg) and the sham-operated rats were injected either with saline or kainate and sacrificed 8 hours later. The same experimental design was applied in a group of rats in order to register the arterial blood pressure. Systemic kainate decreased the basal values of mean arterial blood pressure (35%) and heart rate (22%) of sham-operated rats, reduction that were maintained in adrenalectomized rats. Kainate triggered a marked elevation of c-Fos positive neurons in the NTS which was 54% counteracted by adrenalectomy. The kainate activated NTS showed changes in the immunoreactive levels of GABA (143% of elevation) and NPY (36% of decrease), which were not modified by previous ablation of adrenal glands. Modulation in the levels of CGRP, GAL and NT immunoreactivities were only observed after kainate in the adrenalectomized rats. Treatments did not alter NOS labeling. It is possible that modulatory function among neurotransmitter systems in the NTS might be influenced by steroid hormones and the implications for central regulation of blood pressure or other visceral regulatory mechanisms control should be further investigated.