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视黄醇结合蛋白 4 通过调节 RhoA/ROCK1 通路促进高糖条件下血管平滑肌细胞的表型转化。

Retinol binding protein 4 promotes the phenotypic transformation of vascular smooth muscle cells under high glucose condition via modulating RhoA/ROCK1 pathway.

机构信息

Department of Endocrinology, The First Affiliated Hospital of USTC, Division of Life Science and Medicine, University of Science and Technology of China, Hefei, Anhui, 230001, China.

Department of Endocrinology, The First Affiliated Hospital of USTC, Division of Life Science and Medicine, University of Science and Technology of China, Hefei, Anhui, 230001, China.

出版信息

Transl Res. 2023 Sep;259:13-27. doi: 10.1016/j.trsl.2023.03.004. Epub 2023 Mar 30.

Abstract

Phenotypic switch of vascular smooth muscle cells (VSMCs) contributes to the pathogenesis of atherosclerosis (AS). High level of retinol binding protein 4 (RBP4) is regarded as a risk factor in cardiac-cerebral vascular disease. This study is performed to clarify the biological function of RBP4 in modulating the phenotypic switch of VSMCs induced via RhoA/ROCK1 signaling pathway. In vivo experiment, all the rats were divided into control group (NC), diabetic group (DM) and diabetic atherosclerosis group (DAS). The expressions of biochemical indicators, RhoA and Rho associated coiled-coil containing protein kinase 1 (ROCK1) were detected. In vitro experiment, VSMCs were cultured under high glucose condition, and ectogenic RBP4, HA-1100, rapamycin, or 3-methyladenine (3-MA) were supplemented to treat the VSMCs, respectively. The proliferation and migration of VSMCs were evaluated. The regulatory relationship between RBP4 and ROCK1 was predicted by bioinformatics analysis, and validated by qRT-PCR and Western blot. The regulatory effects of RBP4 on contractile phenotypic markers such as calponin, MYH11, α-SMA and autophagy markers including LC3II, LC3I, and Beclin-1 as well as mTOR were also detected. Moreover, VSMCs were cultured exposed to ROCK1 overexpressed plasmid or short hairpin RNA (shRNA), the proliferation and migration of VSMCs were evaluated and the regulatory effects of RhoA/ROCK1 signaling pathway on contractile phenotypic markers and autophagy markers were also detected. In vivo, RhoA, ROCK1, and mTOR were highly expressed in the rats intraperitoneally injected with RBP4. In vitro, the expressions of calponin, MYH11, α-SMA, LC3II, LC3I, and Beclin-1 were decreased in VSMCs treated with ROCK1-OA under high glucose condition, conversely, the expressions were increased in VSMCs exposed to ROCK1-shRNA. After incubated with rapamycin additionally, the expressions of calponin, MYH11, α-SMA, LC3II/I and Beclin-1 were up-regulated and the expression of p-mTOR was decreaed in VSMCs of HG+ROCK1-OA. Conversely, after incubated with 3-MA additionally, the expressions of calponin, MYH11, α-SMA, LC3II/I and Beclin-1 were down-regulated and the expression of p-mTOR was elevated in VSMCs of HG+ROCK1-shRNA. Ectogenic RBP4 facilitated high glucose-induced proliferation and migration of VSMCs, and it repressed the expression of calponin, MYH11, α-SMA, LC3II/I, and Beclin-1 in VSMCs. As expected, ROCK1 inhibit or counteracted the biological effects of RBP4 on VSMCs. In addition, the expressions of contractile phenotypic markers, LC3II/I, and Beclin-1 were promoted and mTOR were decreased after the VSMCs treated with autophagy agonist, whereas no significant difference was observed in the expressions of ROCK1, RhoA. RBP4 is an injurious factor in the pathogenesis of diabetic AS, and it promotes the phenotypic switch of VSMCs via activating RhoA/ROCK1 pathway and inhibiting autophagy.

摘要

血管平滑肌细胞(VSMCs)的表型转换有助于动脉粥样硬化(AS)的发病机制。视黄醇结合蛋白 4(RBP4)水平升高被认为是心脏血管疾病的危险因素。本研究旨在阐明 RBP4 通过 RhoA/ROCK1 信号通路调节 VSMCs 表型转换的生物学功能。在体内实验中,所有大鼠被分为对照组(NC)、糖尿病组(DM)和糖尿病动脉粥样硬化组(DAS)。检测生化指标、RhoA 和 Rho 相关卷曲螺旋蛋白激酶 1(ROCK1)的表达。在体外实验中,将 VSMCs 在高糖条件下培养,并分别补充外源性 RBP4、HA-1100、雷帕霉素或 3-甲基腺嘌呤(3-MA)处理 VSMCs。评估 VSMCs 的增殖和迁移。通过生物信息学分析预测 RBP4 与 ROCK1 之间的调控关系,并通过 qRT-PCR 和 Western blot 进行验证。还检测了 RBP4 对收缩表型标志物(如钙调蛋白、MYH11、α-SMA)和自噬标志物(如 LC3II、LC3I 和 Beclin-1)以及 mTOR 的调控作用。此外,将 ROCK1 过表达质粒或短发夹 RNA(shRNA)转染 VSMCs,评估 VSMCs 的增殖和迁移,并检测 RhoA/ROCK1 信号通路对收缩表型标志物和自噬标志物的调控作用。在体内,RBP4 腹腔注射大鼠 RhoA、ROCK1 和 mTOR 高表达。在体外,在高糖条件下,用 ROCK1-OA 处理的 VSMCs 中 calponin、MYH11、α-SMA、LC3II、LC3I 和 Beclin-1 的表达减少,而在用 ROCK1-shRNA 处理的 VSMCs 中则增加。此外,用雷帕霉素孵育后,高糖+ROCK1-OA 组 VSMCs 中的 calponin、MYH11、α-SMA、LC3II/I 和 Beclin-1 的表达上调,p-mTOR 的表达下调。相反,用 3-MA 孵育后,高糖+ROCK1-shRNA 组 VSMCs 中的 calponin、MYH11、α-SMA、LC3II/I 和 Beclin-1 的表达下调,p-mTOR 的表达上调。外源性 RBP4 促进高糖诱导的 VSMCs 增殖和迁移,并抑制 VSMCs 中 calponin、MYH11、α-SMA、LC3II/I 和 Beclin-1 的表达。如预期的那样,ROCK1 抑制或拮抗了 RBP4 对 VSMCs 的生物学作用。此外,在自噬激动剂处理的 VSMCs 中,收缩表型标志物、LC3II/I 和 Beclin-1 的表达增加,mTOR 减少,而 ROCK1、RhoA 的表达无明显差异。RBP4 是糖尿病 AS 发病机制中的有害因素,它通过激活 RhoA/ROCK1 通路和抑制自噬来促进 VSMCs 的表型转换。

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