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Conditional Deletion of Krüppel-Like Factor 4 Delays Downregulation of Smooth Muscle Cell Differentiation Markers but Accelerates Neointimal Formation Following Vascular Injury

机译:有条件地删除Krüppel因子4延迟了平滑肌细胞分化标记的下调但加速了血管损伤后新内膜的形成

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摘要

Phenotypic switching of smooth muscle cells (SMCs) plays a key role in vascular proliferative diseases. We previously showed that Krüppel-like factor 4 (Klf4) suppressed SMC differentiation markers in cultured SMCs. Here, we derive mice deficient for Klf4 by conditional gene ablation and analyze their vascular phenotype following carotid injury. Klf4 expression was rapidly induced in SMCs of control mice after vascular injury but not in Klf4-deficient mice. Injury-induced repression of SMC differentiation markers was transiently delayed in Klf4-deficient mice. Klf4 mutant mice exhibited enhanced neointimal formation in response to vascular injury caused by increased cellular proliferation in the media but not an altered apoptotic rate. Consistent with these findings, cultured SMCs overexpressing Klf4 showed reduced cellular proliferation, in part, through the induction of the cell cycle inhibitor, p21WAF1/Cip1 via increased binding of Klf4 and p53 to the p21WAF1/Cip1 promoter/enhancer. In vivo chromatin immunoprecipitation assays also showed increased Klf4 binding to the promoter/enhancer regions of the p21WAF1/Cip1 gene and SMC differentiation marker genes following vascular injury. Taken together, we have demonstrated that Klf4 plays a critical role in regulating expression of SMC differentiation markers and proliferation of SMCs in vivo in response to vascular injury.
机译:平滑肌细胞(SMC)的表型转换在血管增生性疾病中起关键作用。我们先前显示,Krüppel样因子4(Klf4)抑制了培养的SMC中的SMC分化标记。在这里,我们通过条件基因消融法衍生出缺乏Klf4的小鼠,并分析其在颈动脉损伤后的血管表型。 Klf4表达在血管损伤后在对照小鼠的SMC中快速诱导,但在Klf4缺陷型小鼠中没有诱导。在Klf4缺陷小鼠中,损伤诱导的SMC分化标记阻遏作用被暂时延迟。 Klf4突变小鼠表现出增强的新内膜形成,以响应由培养基中细胞增殖增加引起的血管损伤,但凋亡率没有改变。与这些发现一致的是,培养的过表达Klf4的SMC显示出细胞增殖减少,部分原因是通过增加Klf4和p53与p21 的结合,诱导了细胞周期抑制剂p21 WAF1 / Cip1 WAF1 / Cip1 启动子/增强子。体内染色质免疫沉淀试验还显示,血管损伤后,Klf4与p21 WAF1 / Cip1 基因和SMC分化标记基因的启动子/增强子区域的结合增加。两者合计,我们已经证明Klf4在调节SMC分化标志物的表达和响应血管损伤的体内SMC增殖中起关键作用。

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