首页> 外文期刊>Behavioural Brain Research: An International Journal >TOM7 silencing exacerbates focal cerebral ischemia injury in rat by targeting PINK1/Beclin1-mediated autophagy
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TOM7 silencing exacerbates focal cerebral ischemia injury in rat by targeting PINK1/Beclin1-mediated autophagy

机译:Tom7沉默通过靶向Pink1 / Beclin1介导的自噬加剧了大鼠局灶性脑缺血损伤

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Activated autophagy has been intensively observed in cerebrovascular diseases, including focal cerebral ischemia injury, but its molecular mechanisms remain unclear. TOM7, which is a component of the protein translocase of the outer mitochondrial membrane (TOM) complex, may modulate assembly of the TOM complex. However, an understanding of how TOM7 affects cerebral ischemia injury is limited. In this study, we demonstrate that the expression of TOM7 is up-regulated after a photothrombotic cerebral ischemic model in rats, peaking at 3 days. In addition, TOM7 knockdown may aggravate cerebral ischemic injury and inhibit autophagy after ischemic stroke. Mechanically, TOM7 may regulate autophagy through the PINK1/Beclin1 pathway after cerebral ischemia injury. These results demonstrate that TOM7 silencing may aggravate cerebral ischemia injury through inhibiting PINK1/Beclin1 pathway-mediated autophagy.
机译:在脑血管疾病中,活化的自噬在脑血管疾病中被密集地观察,包括局灶性脑缺血损伤,但其分子机制仍然不清楚。 Tom7是外部线粒体膜(汤姆)复合物的蛋白质译团的组分,可以调节汤姆复合物的组装。 然而,了解Tom7如何影响脑缺血损伤是有限的。 在这项研究中,我们证明,在大鼠的尖菌脑缺血模型后,Tom7的表达是上调的,在3天内达到峰值。 此外,Tom7敲低可能会加剧脑缺血性损伤并在缺血性卒中后抑制自噬。 机械地,Tom7可以通过脑缺血损伤后通过Pink1 / Beclin1途径调节自噬。 这些结果表明,Tom7沉默可以通过抑制粉红色的1 / BECLIN1途径介导的自噬加管脑缺血损伤。

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