Department of Physiology and Pharmacology, University of Georgia, Athens, Georgia 30602, USA.
J Biol Chem. 2011 Apr 29;286(17):15050-7. doi: 10.1074/jbc.M110.202747. Epub 2011 Mar 14.
Both TGF-β and myocardin (MYOCD) are important for smooth muscle cell (SMC) differentiation, but their precise role in regulating the initiation of SMC development is less clear. In TGF-β-induced SMC differentiation of pluripotent C3H10T1/2 progenitors, we found that TGF-β did not significantly induce Myocd mRNA expression until 18 h of stimulation. On the other hand, early SMC markers such as SM α-actin, SM22α, and SM calponin were detectable beginning 2 or 4 h after TGF-β treatment. These results suggest that Myocd expression is blocked during the initiation of TGF-β-induced SMC differentiation. Consistent with its endogenous expression, Myocd promoter activity was not elevated until 18 h following TGF-β stimulation. Surprisingly, Smad signaling was inhibitory to Myocd expression because blockade of Smad signaling enhanced Myocd promoter activity. Overexpression of Smad3, but not Smad2, inhibited Myocd promoter activity. Conversely, shRNA knockdown of Smad3 allowed TGF-β to activate the Myocd promoter in the initial phase of induction. Myocd was activated by PI3 kinase signaling and its downstream target Nkx2.5. Interestingly, Smad3 did not affect PI3 kinase activity. However, Smad3 physically interacted with Nkx2.5. This interaction blocked Nkx2.5 binding to the Myocd promoter in the early stage of TGF-β induction, leading to inhibition of Myocd mRNA expression. Moreover, Smad3 inhibited Nkx2.5-activated Myocd promoter activity in a dose-dependent manner. Taken together, our results reveal a novel mechanism for Smad3-mediated inhibition of Myocd in the initiation phase of SMC differentiation.
转化生长因子-β(TGF-β)和肌球蛋白重链结合蛋白 D(MYOCD)对于平滑肌细胞(SMC)分化都很重要,但它们在调节 SMC 发育起始中的精确作用尚不清楚。在 TGF-β诱导的多能 C3H10T1/2 前体细胞的 SMC 分化中,我们发现 TGF-β在刺激 18 小时后才显著诱导 Myocd mRNA 表达。另一方面,早期 SMC 标志物如 SM α-肌动蛋白、SM22α 和 SM 钙调蛋白在 TGF-β 处理后 2 或 4 小时即可检测到。这些结果表明,Myocd 表达在 TGF-β 诱导的 SMC 分化起始时被阻断。与其内源性表达一致,Myocd 启动子活性直到 TGF-β 刺激后 18 小时才升高。令人惊讶的是,Smad 信号通路对 Myocd 表达具有抑制作用,因为阻断 Smad 信号通路增强了 Myocd 启动子活性。Smad3 的过表达,但不是 Smad2 的过表达,抑制了 Myocd 启动子活性。相反,Smad3 的 shRNA 敲低使 TGF-β能够在诱导的初始阶段激活 Myocd 启动子。Myocd 被 PI3 激酶信号及其下游靶标 Nkx2.5 激活。有趣的是,Smad3 不影响 PI3 激酶活性。然而,Smad3 与 Nkx2.5 发生物理相互作用。这种相互作用在 TGF-β 诱导的早期阶段阻断了 Nkx2.5 与 Myocd 启动子的结合,导致 Myocd mRNA 表达受到抑制。此外,Smad3 以剂量依赖的方式抑制 Nkx2.5 激活的 Myocd 启动子活性。总之,我们的结果揭示了 Smad3 介导的在 SMC 分化起始阶段抑制 Myocd 的新机制。