首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Thymine DNA Glycosylase Represses Myocardin-induced Smooth Muscle Cell Differentiation by Competing with Serum Response Factor for Myocardin Binding
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Thymine DNA Glycosylase Represses Myocardin-induced Smooth Muscle Cell Differentiation by Competing with Serum Response Factor for Myocardin Binding

机译:胸腺嘧啶脱氧核糖核酸糖基化酶抑制心肌诱导的平滑肌细胞 通过与血清反应因子竞争心肌细胞分化 捆绑

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摘要

Myocardin is a serum response factor (SRF) co-activator that regulates transcription of many smooth muscle-specific genes and is essential for development of vascular smooth muscle. We used a yeast two-hybrid screen, with myocardin as bait in a search for factors that regulate myocardin transcriptional activity. From this screen, thymine DNA glycosylase (TDG) was identified as a myocardin-associated protein. TDG was originally identified as an enzyme involved in base excision repair of T:G mismatches caused by spontaneous deamination of methylated cytosines. However, TDG has also been shown to act as a transcriptional co-activator or co-repressor. The interaction between TDG and myocardin was confirmed in vitro by glutathione S-transferase pull down and in vivo by co-immunoprecipitation assays. We found that TDG abrogates myocardin induced expression of smooth muscle-specific genes and represses the trans-activation of the promoters of myocardin of these genes. Overexpression of TDG in SMCs down-regulated smooth muscle marker expression. Conversely, depletion of endogenous TDG in SMCs increased smooth muscle-specific myosin heavy chain (SM MHC) and Telokin gene expression. Glutathione S-transferase pull-down assays demonstrated that TDG binds to a region of myocardin that includes the SRF binding domain. Furthermore, TDG was found to compete with SRF for binding to myocardin in vitro and in vivo, suggesting that TDG can inhibit expression of smooth muscle-specific genes, at least in part, through disrupting SRF/myocardin interactions. Finally, we demonstrated that the glycosylase activity of TDG is not required for its inhibitory effects on myocardin function. This study reveals a previously unsuspected role for the repair enzyme TDG as a repressor of smooth muscle differentiation via competing with SRF for binding to myocardin.
机译:心肌素是一种血清反应因子(SRF)辅助激活剂,可调节许多平滑肌特异性基因的转录,对于血管平滑肌的发育至关重要。我们使用酵母双杂交筛查法,以心肌素为诱饵,寻找调节心肌素转录活性的因子。从该筛选中,胸腺嘧啶DNA糖基化酶(TDG)被鉴定为心肌相关蛋白。 TDG最初被鉴定为参与甲基化胞嘧啶自发脱氨作用引起的T:G错配碱基切除修复的酶。但是,TDG也已显示出可作为转录共激活因子或共抑制因子。在体外通过谷胱甘肽S-转移酶下拉证实了TDG与心肌蛋白之间的相互作用,在体内通过免疫共沉淀测定证实了该相互作用。我们发现,TDG取消了心肌素诱导的平滑肌特异性基因的表达,并抑制了这些基因的心肌素启动子的反式激活。 TDG在SMC中的过表达下调了平滑肌标志物的表达。相反,SMC中内源性TDG的消耗增加了平滑肌特异性肌球蛋白重链(SM MHC)和Telokin基因表达。谷胱甘肽 S-转移酶下拉试验表明TDG与 包括SRF结合域的心肌素区域。此外,TDG是 发现在体外与SRF竞争结合心肌蛋白,并且 在体内,提示TDG可以抑制平滑肌的表达 肌肉特异性基因,至少部分是通过破坏SRF /心肌素 互动。最后,我们证明了TDG的糖基化酶活性是 由于其对心肌功能的抑制作用而不需要。这项研究 揭示了以前认为的修复酶TDG作为阻遏物的作用 通过与SRF竞争结合到平滑肌分化 心肌素。

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