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SPARC 通过 AMPK/mTOR 介导的自噬诱导人脑血管平滑肌细胞表型调节。

SPARC induces phenotypic modulation of human brain vascular smooth muscle cells via AMPK/mTOR-mediated autophagy.

机构信息

Department of Neurosurgery, Qilu Hospital of Shandong University and Institute of Brain and Brain-Inspired Science, Shandong University, Jinan, China; Department of Neurosurgery, The No. 4 People's Hospital of Jinan, Jinan City, Shandong Province, China; Shandong Key Laboratory of Brain Function Remodeling, China.

Department of Neurosurgery, Qilu Hospital of Shandong University and Institute of Brain and Brain-Inspired Science, Shandong University, Jinan, China; Shandong Key Laboratory of Brain Function Remodeling, China; Department of Neurosurgery, People's Hospital of Chiping City, Liaocheng City, Shandong Province, China.

出版信息

Neurosci Lett. 2019 Nov 1;712:134485. doi: 10.1016/j.neulet.2019.134485. Epub 2019 Sep 6.

Abstract

Secreted protein acidic and rich in cysteine (SPARC) was widely expressed in VSMCs of human IAs and could reduce the capability of self-repair. This indicates that SPARC may play a role in the promotion of IAs formation and progression, but the mechanism remains unclear. In this study, we further investigated whether SPARC could induce phenotypic modulation of Human Brain Vascular Smooth Muscle Cells (HBVSMCs) and sought to elucidate the role of SPARC-mediated autophagy involved in it. The results demonstrated that SPARC inhibited the expression of contractile genes in HBVSMCs and induced a synthetic phenotype. More importantly, SPARC significantly up-regulated multiple proteins including autophagy marker microtubule-associated protein light chain 3-II (LC3-II), Beclin-1, and autophagy-related gene 5(ATG5). Furthermore, SPARC could promote p62 degradation. The autophagy inhibitor 3- methyladenine (3-MA) significantly blocked SPARC-induced phenotypic modulation of HBVSMCs. We further sought to elucidate the molecular mechanism involved in SPARC-induced autophagy, and found that SPARC could activate the AMPK/mTOR signaling pathway in HBVSMCs. AMPK could be pharmacologically inhibited by Compound C (CC), which significantly decreased the phosphorylation of AMPK into p-AMPK, increased the phosphorylation of mTOR into p-mTOR, and decreased LC3-II, Beclin-1 and ATG5 levels. This suggested that activated AMPK/ mTOR signaling is related to SPARC-mediated autophagy. These results indicated that SPARC plays a role in the phenotypic modulation of HBVSMCs through autophagy activation by AMPK/mTOR signaling pathway.

摘要

富含半胱氨酸的酸性分泌蛋白(SPARC)广泛表达于人类颅内动脉的血管平滑肌细胞中,并能降低其自我修复能力。这表明 SPARC 可能在促进颅内动脉形成和进展中发挥作用,但具体机制尚不清楚。在本研究中,我们进一步研究了 SPARC 是否可以诱导人脑血管平滑肌细胞(HBVSMC)的表型转化,并探讨了其涉及的 SPARC 介导的自噬作用。结果表明,SPARC 抑制了 HBVSMC 中收缩基因的表达,并诱导了合成表型。更重要的是,SPARC 显著上调了多种蛋白,包括自噬标志物微管相关蛋白轻链 3-II(LC3-II)、Beclin-1 和自噬相关基因 5(ATG5)。此外,SPARC 可促进 p62 降解。自噬抑制剂 3-甲基腺嘌呤(3-MA)显著阻断了 SPARC 诱导的 HBVSMC 表型转化。我们进一步探讨了 SPARC 诱导自噬所涉及的分子机制,发现 SPARC 可激活 HBVSMC 中的 AMPK/mTOR 信号通路。可通过 AMPK 抑制剂 Compound C(CC)抑制 AMPK 的活性,这显著降低了 AMPK 向 p-AMPK 的磷酸化,增加了 mTOR 向 p-mTOR 的磷酸化,并降低了 LC3-II、Beclin-1 和 ATG5 的水平。这表明激活的 AMPK/mTOR 信号通路与 SPARC 介导的自噬有关。这些结果表明,SPARC 通过 AMPK/mTOR 信号通路激活自噬在 HBVSMC 的表型转化中发挥作用。

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