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模拟微重力大鼠通过 PERK-eIF2α-ATF4-CHOP 通路介导的线粒体氧化损伤和内质网应激对脑血管平滑肌细胞表型的调控。

Regulation of the cerebrovascular smooth muscle cell phenotype by mitochondrial oxidative injury and endoplasmic reticulum stress in simulated microgravity rats via the PERK-eIF2α-ATF4-CHOP pathway.

机构信息

Department of Cardiology & National Clinical Research Center for Geriatric Diseases, Chinese PLA General Hospital, Beijing 100853, China.

Department of Cardiology & National Clinical Research Center for Geriatric Diseases, Chinese PLA General Hospital, Beijing 100853, China.

出版信息

Biochim Biophys Acta Mol Basis Dis. 2020 Aug 1;1866(8):165799. doi: 10.1016/j.bbadis.2020.165799. Epub 2020 Apr 15.

Abstract

Microgravity exposure results in vascular remodeling and cardiovascular dysfunction. Here, the effects of mitochondrial oxidative stress on vascular smooth muscle cells (VSMCs) in rat cerebral arteries under microgravity simulated by hindlimb unweighting (HU) was studied. Endoplasmic reticulum (ER)-resident transmembrane sensor proteins and phenotypic markers of rat cerebral VSMCs were examined. In HU rats, CHOP expression was increased gradually, and the upregulation of the PERK-eIF2α-ATF4 pathway was the most pronounced in cerebral arteries. Furthermore, PERK/p-PERK signaling, CHOP, GRP78 and reactive oxygen species were augmented by PERK overexpression but attenuated by the mitochondria-targeting antioxidant MitoTEMPO. Meanwhile, p-PI3K, p-Akt and p-mTOR protein levels in VSMCs were increased in HU rat cerebral arteries. Compared with the control, HU rats exhibited lower α-SMA, calponin, SM-MHC and caldesmon protein levels but higher OPN and elastin levels in cerebral VSMCs. The cerebral VSMC phenotype transition from a contractile to synthetic phenotype in HU rats was augmented by PERK overexpression and 740Y-P but reversed by MitoTEMPO and the ER stress inhibitors tauroursodeoxycholic acid (TUDCA) and 4-phenylbutyric acid (4-PBA). In summary, mitochondrial oxidative stress and ER stress induced by simulated microgravity contribute to phenotype transition of cerebral VSMCs through the PERK-eIF2a-ATF4-CHOP pathway in a rat model.

摘要

微重力暴露导致血管重塑和心血管功能障碍。在这里,研究了模拟微重力的后肢去重(HU)对大鼠脑动脉血管平滑肌细胞(VSMCs)中线粒体氧化应激的影响。检查内质网(ER)驻留跨膜传感器蛋白和大鼠脑 VSMC 的表型标志物。在 HU 大鼠中,CHOP 表达逐渐增加,PERK-eIF2α-ATF4 通路的上调在脑血管中最为明显。此外,PERK/p-PERK 信号、CHOP、GRP78 和活性氧增加了 PERK 的过表达,但减轻了线粒体靶向抗氧化剂 MitoTEMPO。同时,HU 大鼠脑动脉 VSMC 中 p-PI3K、p-Akt 和 p-mTOR 蛋白水平升高。与对照组相比,HU 大鼠脑 VSMC 中 α-SMA、钙调蛋白、SM-MHC 和钙调蛋白水平较低,但 OPN 和弹性蛋白水平较高。HU 大鼠脑 VSMC 从收缩型向合成型的表型转变通过 PERK 过表达和 740Y-P 增强,但通过 MitoTEMPO 和 ER 应激抑制剂牛磺熊脱氧胆酸(TUDCA)和 4-苯丁酸(4-PBA)逆转。总之,模拟微重力引起的线粒体氧化应激和 ER 应激通过大鼠模型中的 PERK-eIF2a-ATF4-CHOP 通路促进脑 VSMC 的表型转变。

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