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在高糖和血脂异常条件下,Sestrin2通过AMPK-mTOR轴调节单核细胞活化。

Sestrin2 regulates monocyte activation through AMPK-mTOR nexus under high-glucose and dyslipidemic conditions.

作者信息

Sundararajan Saravanakumar, Jayachandran Isaivani, Balasubramanyam Muthuswamy, Mohan Viswanathan, Venkatesan Balachandar, Manickam Nagaraj

机构信息

Madras Diabetes Research Foundation & Dr. Mohan's Diabetes Specialities Centre, WHO Collaborating Centre for Noncommunicable Diseases Prevention and Control & ICMR Centre for Advanced Research on Diabetes, Gopalapuram, Chennai, India.

出版信息

J Cell Biochem. 2019 May;120(5):8201-8213. doi: 10.1002/jcb.28102. Epub 2018 Nov 18.

Abstract

The vicious cycle between hyperinsulinemia and insulin resistance results in the progression of atherosclerosis in the vessel wall. The complex interaction between hyperglycemia and lipoprotein abnormalities promotes the development of atherogenesis. In the early phase of atherosclerosis, macrophage-derived foam cells play an important role in vascular remodeling. Mechanistic target of rapamycin (mTOR) signaling pathway has been identified to play an essential role in the initiation, progression, and complication of atherosclerosis. Recently sestrin2, an antioxidant, was shown to modulate TOR activity and thereby regulating glucose and lipid metabolism. But the role of sestrin2 in monocyte activation is still not clearly understood. Hence, this study is focussed on investigating the role of sestrin2 in monocyte activation under hyperglycemic and dyslipidemic conditions. High-glucose and oxidized low-density lipoprotein (LDL) treatments mediated proinflammatory cytokine production (M1) with a concomitant decrease in the anti-inflammatory cytokine (M2) levels in human monocytic THP1 cells. Both glucose and oxidized LDL (OxLDL) in a dose and time-dependent manner increased the mTOR activation with a marked reduction in the levels of pAMPK and sestrin2 expression. Both high-glucose and OxLDL treatment increased foam cell formation and adhesion of THP1 cells to endothelial cells. Experiments employing activator or inhibitor of adenosine monophosphate kinase (AMPK) as well as overexpression or silencing of sestrin2 indicated that high-glucose mediated monocyte polarization and adhesion of monocytes to the endothelial cells were appeared to be programmed via sestrin2-AMPK-mTOR nexus. Our results evidently suggest that sestrin2 plays a major role in regulating monocyte activation via the AMPK-mTOR-pathway under diabetic and dyslipidemic conditions and also AMPK regulates sestrin2 in a feedback mechanism.

摘要

高胰岛素血症与胰岛素抵抗之间的恶性循环会导致血管壁动脉粥样硬化的进展。高血糖与脂蛋白异常之间的复杂相互作用会促进动脉粥样硬化的发展。在动脉粥样硬化的早期阶段,巨噬细胞衍生的泡沫细胞在血管重塑中起重要作用。已确定雷帕霉素的机制性靶标(mTOR)信号通路在动脉粥样硬化的发生、发展和并发症中起关键作用。最近,一种抗氧化剂 sestrin2 被证明可调节 TOR 活性,从而调节葡萄糖和脂质代谢。但 sestrin2 在单核细胞活化中的作用仍不清楚。因此,本研究聚焦于探讨 sestrin2 在高血糖和血脂异常条件下单核细胞活化中的作用。高糖和氧化低密度脂蛋白(LDL)处理可介导人单核细胞 THP1 细胞中促炎细胞因子的产生(M1),同时抗炎细胞因子(M2)水平降低。葡萄糖和氧化 LDL(OxLDL)均以剂量和时间依赖性方式增加 mTOR 的活化,同时 pAMPK 水平和 sestrin2 表达显著降低。高糖和 OxLDL 处理均增加了 THP1 细胞的泡沫细胞形成以及 THP1 细胞与内皮细胞的黏附。使用单磷酸腺苷激酶(AMPK)激活剂或抑制剂以及 sestrin2 过表达或沉默的实验表明,高糖介导的单核细胞极化以及单核细胞与内皮细胞的黏附似乎是通过 sestrin2-AMPK-mTOR 联系进行调控的。我们的结果明显表明,在糖尿病和血脂异常条件下,sestrin2 通过 AMPK-mTOR 途径在调节单核细胞活化中起主要作用,并且 AMPK 以反馈机制调节 sestrin2。

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