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首页> 外文期刊>Cell death & disease. >NMMHC IIA triggers neuronal autophagic cell death by promoting F-actin-dependent ATG9A trafficking in cerebral ischemia/reperfusion
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NMMHC IIA triggers neuronal autophagic cell death by promoting F-actin-dependent ATG9A trafficking in cerebral ischemia/reperfusion

机译:NMMHC IIA通过促进脑缺血/再灌注的F-Actin依赖性ATG9A贩运来触发神经元自噬细胞死亡

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Previous findings have shown that non-muscle myosin heavy-chain IIA (NMMHC IIA) is involved in autophagy induction triggered by starvation in D. melanogaster; however, its functional contribution to neuronal autophagy remains unclear. The aim of this study is to explore the function of NMMHC IIA in cerebral ischemia-induced neuronal autophagy and the underlying mechanism related to autophagy-related gene 9A (ATG9A) trafficking. Functional assays and molecular mechanism studies were used to investigate the role of NMMHC IIA in cerebral ischemia-induced neuronal autophagy in vivo and in vitro. A middle cerebral artery occlusion (MCAO) model in mice was used to evaluate the therapeutic effect of blebbistatin, a myosin II ATPase inhibitor. Herein, either depletion or knockdown of NMMHC IIA led to increased cell viability in both primary cultured cortical neurons and pheochromocytoma (PC12) cells exposed to oxygen-glucose deprivation/reoxygenation (OGD/R). In addition, NMMHC IIA and autophagic marker LC3B were upregulated by OGD/R, and inhibition of NMMHC IIA significantly reduced OGD-induced neuronal autophagy. Furthermore, NMMHC IIA-induced autophagy is through its interactions with F-actin and ATG9A in response to OGD/R. The NMMHC IIA-actin interaction contributes to ATG9A trafficking and autophagosome formation. Inhibition of the NMMHC IIA-actin interaction using blebbistatin and the F-actin polymerization inhibitor cytochalasin D significantly suppressed ATG9A trafficking and autophagy induction. Furthermore, blebbistatin significantly improved neurological deficits and infarct volume after ischemic attack in mice, accompanied by ATG9A trafficking and autophagy inhibition. These findings demonstrate neuroprotective effects of NMMHC IIA inhibition on regulating ATG9A trafficking-dependent autophagy activation in the context of cerebral ischemia/reperfusion.
机译:以前的研究发现表明,非肌肉肌肌菌素重链IIA(NMMHC IIA)参与通过D. Melanogaster的饥饿引发的自噬感应;然而,其对神经元自噬的功能贡献仍然不清楚。本研究的目的是探讨NMMHC IIA在脑缺血诱导的神经元自噬和与自噬相关基因9A(ATG9A)贩运有关的潜在机制的作用。使用功能测定和分子机制研究来研究NMMHC IIA在体内和体外脑缺血诱导的神经元自噬中的作用。小鼠中的中脑动脉闭塞(MCAO)模型用于评估BLEBBISTATIN,肌苷II ATP酶抑制剂的治疗效果。在此,NMMHC IIa的耗尽或敲低导致初级培养的皮质神经元和嗜铬细胞瘤(PC12)细胞中的细胞活力增加,暴露于氧葡萄糖剥夺/ Reoxygen(OGD / R)。此外,NMMHC IIA和自噬标记LC3B通过OGD / R上调,抑制NMMHC IIA显着降低了OGD诱导的神经元自噬。此外,NMMHC IIA诱导的自噬是通过其与F-Actin和ATG9A的相互作用,响应于OGD / R。 NMMHC IIA-Actin的相互作用有助于ATG9A贩运和自噬体形成。使用Blebbistatin和F-actin聚合抑制剂细胞蛋白D抑制NMMHC IIA-Actin相互作用显着抑制了ATG9A贩运和自噬诱导的显着抑制。此外,Blebbistatin在小鼠缺血性发作后显着改善了神经学缺陷和梗塞体积,伴随着ATG9A贩运和自噬抑制。这些研究结果表明了NMMHC IIA抑制对调节ATG9A贩运依赖性自噬激活的神经保护作用,在脑缺血/再灌注的背景下。

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