首页> 美国卫生研究院文献>Journal of Cellular and Molecular Medicine >Aberrant MFN2 transcription facilitates homocysteine‐induced VSMCs proliferation via the increased binding of c‐Myc to DNMT1 in atherosclerosis
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Aberrant MFN2 transcription facilitates homocysteine‐induced VSMCs proliferation via the increased binding of c‐Myc to DNMT1 in atherosclerosis

机译:MFN2异常的转录通过增加c-Myc与DNMT1在动脉粥样硬化中的结合而促进同型半胱氨酸诱导的VSMC增殖

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摘要

It is well‐established that homocysteine (Hcy) is an independent risk factor for atherosclerosis. Hcy can promote vascular smooth muscle cell (VSMC) proliferation, it plays a key role in neointimal formation and thus contribute to arteriosclerosis. However, the molecular mechanism on VSMCs proliferation underlying atherosclerosis is not well elucidated. Mitofusin‐2 (MFN2) is an important transmembrane GTPase in the mitochondrial outer membrane and it can block cells in the G0/G1 stage of the cell cycle. To investigate the contribution of aberrant MFN2 transcription in Hcy‐induced VSMCs proliferation and the underlying mechanisms. Cell cycle analysis revealed a decreased proportion of VSMCs in G0/G1 and an increased proportion in S phase in atherosclerotic plaque of APOE−/− mice with hyperhomocystinaemia (HHcy) as well as in VSMCs exposed to Hcy in vitro. The DNA methylation level of MFN2 promoter was obviously increased in VSMCs treated with Hcy, leading to suppressed promoter activity and low expression of MFN2. In addition, we found that the expression of c‐Myc was increased in atherosclerotic plaque and VSMCs treated with Hcy. Further study showed that c‐Myc indirectly regulates MFN2 expression is duo to the binding of c‐Myc to DNMT1 promoter up‐regulates DNMT1 expression leading to DNA hypermethylation of MFN2 promoter, thereby inhibits MFN2 expression in VSMCs treated with Hcy. In conclusion, our study demonstrated that Hcy‐induced hypermethylation of MFN2 promoter inhibits the transcription of MFN2, leading to VSMCs proliferation in plaque formation, and the increased binding of c‐Myc to DNMT1 promoter is a new and relevant molecular mechanism.
机译:众所周知,高半胱氨酸(Hcy)是动脉粥样硬化的独立危险因素。 Hcy可以促进血管平滑肌细胞(VSMC)增殖,它在新内膜形成中起关键作用,因此有助于动脉硬化。然而,关于动脉粥样硬化的VSMCs增殖的分子机制尚不清楚。线粒体融合蛋白2(MFN2)是线粒体外膜中的重要跨膜GTP酶,它可以在细胞周期的G0 / G1阶段阻断细胞。研究异常MFN2转录在Hcy诱导的VSMC增殖中的作用及其潜在机制。细胞周期分析显示,高同型半胱氨酸血症(HHcy)的APOE -/-小鼠的动脉粥样硬化斑块以及暴露于Hcy的VSMC中,G0 / G1中VSMC的比例降低,S期比例升高。体外。 Hcy处理的VSMC中,MFN2启动子的DNA甲基化水平明显升高,导致启动子活性降低,MFN2表达降低。此外,我们发现用Hcy处理的动脉粥样硬化斑块和VSMC中c-Myc的表达增加。进一步的研究表明,c-Myc间接调节MFN2的表达与c-Myc与DNMT1启动子的结合有关,从而上调DNMT1的表达导致MFN2启动子的DNA超甲基化,从而抑制Hcy处理的VSMC中MFN2的表达。总之,我们的研究表明,Hcy诱导的MFN2启动子超甲基化抑制了MFN2的转录,导致斑块形成中VSMC增殖,而c-Myc与DNMT1启动子的结合增加是一种新的相关分子机制。

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