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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Hippocampal signaling protein levels are different in early and late metestrus in the rat.
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Hippocampal signaling protein levels are different in early and late metestrus in the rat.

机译:海马信号传导蛋白质水平在大鼠早期和晚期雌激蛋白水平不同。

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摘要

Early and late metestrus in the rat differ by progesterone levels. As it is known that progesterone shows a potential negative effect on cognitive performances and can counteract the estradiol-induced neural effects, we intended to study signaling proteins in the hippocampus, a structure representing a main brain area of cognitive function. Female OFA Sprague-Dawley rats were used in the studies and estrous phases were determined using vaginal smears. Hippocampal tissue was taken, proteins extracted, run on two-dimensional gel electrophoresis and proteins were identified by mass spectrometry methods (MALDI-TOF-TOF and nano-LC-ESI-MS/MS). Individual signaling protein levels quantified by specific software were shown to vary between the two phases, including NG,NG-dimethylarginine dimethylaminohydrolase 1 for nitric oxide signaling, guanine nucleotide-binding proteins, septin 6, septin 11, G-septin alpha, and 14-3-3 protein gamma. Results from this study indicate that early and late metestrus show differences in signaling pathways, that may help to design further investigations at the protein level and may assist to interpret literature on protein expression and brain protein levels in female rats. Moreover, signaling differences in hippocampus are challenging cognitive studies during these two metestrus phases probably revealing cognitive differences between early and late metestrus.
机译:大鼠的早期和晚期的雌激素的孕级水平不同。众所周知,孕酮显示对认知性能的潜在负面影响,并且可以抵消雌二醇诱导的神经效应,我们打算研究海马中的信号蛋白,这是一种结构,该结构代表认知功能的主要脑面积。 Sprague-Dawley大鼠的雌性用于研究,使用阴道涂片测定原始阶段。采用海马组织,提取蛋白质,通过质谱法鉴定在二维凝胶电泳和蛋白质上的蛋白质(MALDI-TOF-TOF和NANO-LC-ESI-MS / MS)。显示通过特定软件量化的个体信号蛋白水平在两相之间,包括Ng,Ng-Dimethyl族二甲基氨基酰氯酶1,用于一氧化氮信号,鸟嘌呤核苷酸结合蛋白,静止体6,癸蛋白11,G-SEPTINα和14- 3-3蛋白γ。本研究的结果表明,早期和晚期的十月表现出信号传导途径的差异,这可能有助于在蛋白质水平上设计进一步的研究,并可以帮助解释蛋白表达和雌性大鼠脑蛋白水平的文献。此外,海马的信号差异是在这两个十八阶段期间的认知研究可能会揭示早期和晚期的认知差异。

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