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HDAC2 phosphorylation-dependent Klf5 deacetylation and RARα acetylation induced by RAR agonist switch the transcription regulatory programs of p21 in VSMCs

机译:RAR激动剂诱导的HDAC2磷酸化依赖性Klf5脱乙酰化和RARα乙酰化切换VSMC中p21的转录调控程序

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Abnormal proliferation of vascular smooth muscle cells (VSMCs) occurs in hypertension, atherosclerosis and restenosis after angioplasty, leading to pathophysiological vascular remodeling. As an important growth arrest gene, p21 plays critical roles in vascular remodeling. Regulation of p21 expression by retinoic acid receptor (RAR) and its ligand has important implications for control of pathological vascular remodeling. Nevertheless, the mechanism of RAR-mediated p21 expression in VSMCs remains poorly understood. Here, we show that, under basal conditions, RARα forms a complex with histone deacetylase 2 (HDAC2) and Krüppel-like factor 5 (Klf5) at the p21 promoter to inhibit its expression. Upon RARα agonist stimulation, HDAC2 is phosphorylated by CK2α. Phosphorylation of HDAC2, on the one hand, promotes its dissociation from RARα, thus allowing the liganded-RARα to interact with co-activators; on the other hand, it increases its interaction with Klf5, thus leading to deacetylation of Klf5. Deacetylation of Klf5 facilitates its dissociation from the p21 promoter, relieving its repressive effect on the p21 promoter. Interference with HDAC2 phosphorylation by either CK2α knockdown or the use of phosphorylation-deficient mutant of HDAC2 prevents the dissociation of Klf5 from the p21 promoter and impairs RAR agonist-induced p21 activation. Our results reveal a novel mechanism involving a phosphorylation-deacetylation cascade that functions to remove the basal repression complex from the p21 promoter upon RAR agonist treatment, allowing for optimum agonist-induced p21 expression.
机译:血管成形术后的高血压,动脉粥样硬化和再狭窄发生在血管平滑肌细胞(VSMCs)异常增殖,导致病理生理性血管重塑。作为重要的生长停滞基因,p21在血管重塑中起关键作用。维甲酸受体(RAR)及其配体对p21表达的调控对病理性血管重塑的控制具有重要意义。然而,在VSMC中RAR介导的p21表达的机制仍然知之甚少。在这里,我们表明,在基础条件下,RARα与组蛋白脱乙酰基酶2(HDAC2)和Krüppel样因子5(Klf5)在p21启动子处形成复合物,以抑制其表达。在RARα激动剂刺激后,HDAC2被CK2α磷酸化。一方面,HDAC2的磷酸化促进其与RARα的解离,从而使配体RARα与共激活因子相互作用。另一方面,它增加了与Klf5的相互作用,从而导致Klf5脱乙酰化。 Klf5的脱乙酰作用有助于其与p21启动子解离,从而减轻了其对p21启动子的抑制作用。通过CK2α敲低或使用HDAC2的磷酸化缺陷型突变体干扰HDAC2磷酸化,可防止Klf5从p21启动子解离,并损害RAR激动剂诱导的p21活化。我们的结果揭示了一种涉及磷酸化-脱乙酰基级联反应的新型机制,该机制可在RAR激动剂处理后从p21启动子上去除基础阻遏复合物,从而实现最佳的激动剂诱导的p21表达。

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