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首页> 外文期刊>International journal of molecular medicine >Overexpression of mitochondrial Hsp75 protects neural stem cells against microglia-derived soluble factor-induced neurotoxicity by regulating mitochondrial permeability transition pore opening in vitro.
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Overexpression of mitochondrial Hsp75 protects neural stem cells against microglia-derived soluble factor-induced neurotoxicity by regulating mitochondrial permeability transition pore opening in vitro.

机译:线粒体HSP75的过度表达通过调节体外线粒体渗透过渡孔口来保护神经干细胞免受微胶质细胞衍生的可溶因子诱导的神经毒性。

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摘要

Microglia (MG)-induced neurotoxicity, a major determinant of Alzheimer's disease, is closely related to the survival of neural stem cells?(NSCs). Heat shock protein?75 (Hsp75) has been reported to exert protective effects against environmental stresses; however, whether or not it protects NSCs against MG-derived soluble factor-induced neurotoxicity remains unclear. In the present study, we constructed NSCs that overexpressed human Hsp75 protein and established a co-culture system in order to elucidate the role of Hsp75 in NSC-MG interactions. The results obtained indicated that Hsp75 expression increased after 12?h of soluble factor induction and continued to increase for up to 36?h of treatment. The overexpression of Hsp75 decreased NSC apoptosis and preserved mitochondrial membrane potential. Further experiments revealed that the overexpression of Hsp75 inhibited the formation of cyclophilin?D?(CypD)-dependent mitochondrial permeability transition pore?(mPTP) involvement in neurotoxicity-mediated mitochondrial dysfunction and suppressed the activation of the mitochondrial apoptotic cascade, as demonstrated by the inhibition of the release of cytochrome?c?(Cytc) and the activation of caspase-3. The findings of this study demonstrate that Hsp75 overexpression prevents the impairment of NSCs induced by MG-derived soluble factors by regulating the opening of mPTP. Thus, Hsp75 warrants further investigation as a potential candidate for protection against neurotoxicity.
机译:微胶质细胞(Mg)诱导神经毒性,阿尔茨海默病的主要决定因素与神经干细胞的存活密切相关?(NSCs)。据报道,热休克蛋白?75(HSP75)施加对环境压力的保护作用;但是,它是否保护NSCs对抗MG衍生的可溶性因子诱导的神经毒性仍不清楚。在本研究中,我们构建了过表达人HSP75蛋白的NSC,并建立了共同培养系统,以阐明HSP75在NSC-Mg相互作用中的作用。得到的结果表明,在可溶性因子诱导的可溶性因子12℃后,HSP75表达增加,并继续增加36μm的治疗。 HSP75的过表达降低了NSC凋亡和保存的线粒体膜电位。进一步的实验表明,HSP75的过度表达抑制了细胞素Δdα的形成,依赖性线粒体渗透性过渡孔?(MPTP)参与神经毒性介导的线粒体功能障碍,并抑制了线粒体凋亡级联的活化,如下所示抑制细胞色素释放的细胞色素?(CytC)和Caspase-3的活化。本研究的结果表明,HSP75过表达通过调节MPTP的开口来阻止MG衍生的可溶性因子诱导的NSCs的损伤。因此,HSP75认证进一步调查作为保护神经毒性的潜在候选者。

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