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SARS-CoV-2 与线粒体:对细胞命运的影响。

The SARS-CoV2 and mitochondria: the impact on cell fate.

机构信息

School of Pediatrics, University of Cagliari, Italy.

University of Verona.

出版信息

Acta Biomed. 2022 May 11;93(2):e2022199. doi: 10.23750/abm.v93i2.10327.

Abstract

Coronavirus infection causes endoplasmic reticulum stress inside the cells, which inhibits protein folding. Prolonged endoplasmic reticulum stress causes an apoptotic process of unfolded protein response-induced cell death. Endoplasmic reticulum stress rapidly induces the activation of mTORC1, responsible for the induction of the IRE1-JNK pathway. IRE1-JNK stands out for its dual nature: pro-apoptotic in the first stage of infection, anti-apoptotic in persistently infected cells. Once penetrated the cells, the virus can deflect the mitochondrial function by implementing both waterfalls pro-apoptotic and anti-apoptotic response. The virus prevents, through Open Reading Frame 9b (ORF-9b) interacting with mitochondria, the response of the type I interferon of the cells affected by the infection and is fundamental for generating an antiviral cellular state. ORF-9b has effects on mitochondrial dynamics, inducing fusion and autophagy and promoting cell survival. The recognition of ORF-9b has made it possible to identify it as a molecular target of some existing potentially effective drugs (Midostaurin and Ruxolitinib). Other drugs, with the same target, are currently being tested. Given the great importance of mitochondria in virus-host interaction, in-depth knowledge of the actors and pathways involved is essential to continue developing new therapeutic strategies against SARS CoV2.

摘要

冠状病毒感染会导致细胞内内质网应激,从而抑制蛋白质折叠。内质网应激持续时间过长会导致未折叠蛋白反应诱导的细胞死亡的凋亡过程。内质网应激会迅速激活 mTORC1,负责诱导 IRE1-JNK 途径。IRE1-JNK 的特点是双重性:在感染的第一阶段具有促凋亡作用,在持续感染的细胞中具有抗凋亡作用。病毒一旦穿透细胞,就可以通过实施促凋亡和抗凋亡反应的瀑布来改变线粒体功能。病毒通过与线粒体相互作用的开放阅读框 9b(ORF-9b)来阻止受感染细胞的 I 型干扰素的反应,这对于产生抗病毒的细胞状态至关重要。ORF-9b 对线粒体动力学有影响,诱导融合和自噬,并促进细胞存活。对 ORF-9b 的识别使其成为一些现有潜在有效药物(Midostaurin 和 Ruxolitinib)的分子靶标。其他具有相同靶点的药物目前正在测试中。鉴于线粒体在病毒-宿主相互作用中的重要性,深入了解相关的作用因子和途径对于继续开发针对 SARS CoV2 的新治疗策略至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa18/9171887/10eaa7df31ff/ACTA-93-199-g001.jpg

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