Department of Cell Biology, Center for Cardiovascular and Muscle Research, State University of New York Downstate Medical Center, Brooklyn, New York, NY 11203, USA.
J Cell Sci. 2010 Nov 1;123(Pt 21):3789-95. doi: 10.1242/jcs.073387. Epub 2010 Oct 12.
Emerging evidence suggests that eukaryotic gene transcription is regulated primarily at the elongation stage by association and dissociation of the inhibitory protein cardiac lineage protein 1 (CLP-1/HEXIM1) from the positive transcription elongation factor b (P-TEFb) complex. It was reported recently that P-TEFb interacts with skeletal muscle-specific regulatory factor, MyoD, suggesting a linkage between CLP-1-mediated control of transcription and skeletal myogenesis. To examine this, we produced CLP-1 knockdown skeletal muscle C2C12 cells by homologous recombination, and demonstrated that the C2C12 CLP-1 +/- cells failed to differentiate when challenged by low serum in the medium. We also showed that CLP-1 interacts with both MyoD and histone deacetylases (HDACs) maximally at the early stage of differentiation of C2C12 cells. This led us to hypothesize that the association might be crucial to inhibition of MyoD-target proliferative genes. Chromatin immunoprecipitation analysis revealed that the CLP-1/MyoD/HDAC complex binds to the promoter of the cyclin D1 gene, which is downregulated in differentiated muscle cells. These findings suggest a novel transcriptional paradigm whereby CLP-1, in conjunction with MyoD and HDAC, acts to inhibit growth-related gene expression, a requirement for myoblasts to exit the cell cycle and transit to myotubes.
新出现的证据表明,真核生物基因转录主要在延伸阶段受到抑制蛋白心脏谱系蛋白 1 (CLP-1/HEXIM1) 与正转录延伸因子 b (P-TEFb) 复合物的结合和解离的调节。最近有报道称,P-TEFb 与骨骼肌特异性调节因子 MyoD 相互作用,表明 CLP-1 介导的转录控制与骨骼肌生成之间存在联系。为了检验这一点,我们通过同源重组产生了 CLP-1 敲低的骨骼肌 C2C12 细胞,并证明当培养基中的血清浓度降低时,C2C12 CLP-1 +/-细胞无法分化。我们还表明,CLP-1 与 MyoD 和组蛋白去乙酰化酶 (HDACs) 的相互作用在 C2C12 细胞分化的早期达到最大值。这使我们假设这种关联对于抑制 MyoD 靶标增殖基因可能至关重要。染色质免疫沉淀分析显示,CLP-1/MyoD/HDAC 复合物结合到细胞周期蛋白 D1 基因的启动子上,该基因在分化的肌肉细胞中下调。这些发现表明了一种新的转录范例,其中 CLP-1 与 MyoD 和 HDAC 一起作用,抑制与生长相关的基因表达,这是成肌细胞退出细胞周期并向肌管转化的要求。