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首页> 外文期刊>Neurochemical research >Effect of calreticulin on Ca2+/CaM KinaseIIα and endoplasmic reticulum stress in hippocampal in a rat model of post-traumatic stress disorder
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Effect of calreticulin on Ca2+/CaM KinaseIIα and endoplasmic reticulum stress in hippocampal in a rat model of post-traumatic stress disorder

机译:钙网蛋白对创伤后应激障碍大鼠模型海马Ca2 + / CaMKinaseIIα和内质网应激的影响

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摘要

The purpose of the present study was to examine the changes in the molecular chaperone calreticulin (CRT), calcium signaling pathway Ca 2+-calmodulin (CaM)-CaM kinaseIIα (CaMKIIα), and the endoplasmic reticulum (ER) apoptotic modulator caspase-12 in hippocampal neurons of rats exposed to single-prolonged stress (SPS), a model of post-traumatic stress disorder (PTSD). Molecular markers and proteins were assessed using immunohistochemistry, western blot and reverse transcript-polymerase chain reaction in rats exposed to SPS at 1 day (1d), 4 and 7 days post-stress and time matched controls. We found that at 7 days, SPS rats had the highest CRT expression. The intracellular free Ca2+ and the CaM expression reached peak at 1 day post-SPS whereas the CaMKIIα had the opposite trend. Caspase-12 was most active at 4 days and was found to decrease thereafter. Signs of apoptosis were identified using transmission electron microscopy in the rats exposed to SPS. The results indicate that signs of ER stress in the hippocampus of rats exposed to SPS trigger the molecular changes in the intracellular cytoplasm which in turn activate the apoptotic pathway through caspase-12. Therefore, we propose that the hippocampal apoptosis could be one of the pathological mechanisms related to the memory disorders in PTSD.
机译:本研究的目的是研究分子伴侣钙网蛋白(CRT),钙信号通路Ca 2 +-钙调蛋白(CaM)-CaM激酶IIα(CaMKIIα)和内质网(ER)凋亡调节因子caspase-12的变化暴露于单持续性应激(SPS)(一种创伤后应激障碍(PTSD))模型的大鼠海马神经元中的表达。使用免疫组化,蛋白质印迹和逆转录聚合酶链反应在应激后1天(1d),应激后4天和7天和时间匹配的对照组中对大鼠进行分子标记和蛋白质评估。我们发现在7天时,SPS大鼠的CRT表达最高。 SPS后1天,细胞内游离Ca2 +和CaM表达达到峰值,而CaMKIIα具有相反的趋势。 Caspase-12在4天时最活跃,此后减少。使用透射电子显微镜在暴露于SPS的大鼠中鉴定出凋亡的迹象。结果表明,暴露于SPS的大鼠海马内质网应激的迹象触发了细胞内细胞质的分子变化,进而激活了通过caspase-12的凋亡途径。因此,我们认为海马细胞凋亡可能是与PTSD记忆障碍相关的病理机制之一。

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