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Myocardin: a component of a molecular switch for smooth muscle differentiation.

机译:心肌素:平滑肌分化的分子开关的一个组成部分。

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J. C HEN, C. M. K ITCHEN, J. W. S TREBAND J. M. M IANO. Myocardin: A Component of a Molecular Switch for Smooth Muscle Differentiation. Journal of Molecular and Cellular Cardiology (2002) 34, 1345-1356. A hallmark of smooth muscle cells (SMCs) in culture and the injured vessel wall is their phenotypic modulation from a differentiated state to one of heightened growth, migration, and matrix synthesis. The transcriptional mechanisms underlying this altered genetic program have yet to be elucidated. Serum response factor (SRF) has emerged as a critical regulator of SMC-restricted gene expression via its interaction with proximal CArG elements; however, levels of SRF protein do not change during SMC phenotypic modulation, suggesting a role for other factors or events in this process. One such factor could be myocardin, a novel SRF coactivator recently cloned from cardiac tissue. Levels of myocardin are abundantly expressed in rat aortic media along with key SMC-restricted genes. In several SMC lines, myocardin mRNA levels decrease in parallel with the loss or attenuation of SMC marker expression. Transient transfection experiments with CMV-driven myocardin in both SMC and non-SMC reveal CArG-dependent transactivation of the SM-Calp promoter-enhancer. Several additional CArG-dependent SMC promoters show variable activation in a cell-and promoter-context dependent manner. To determine whether myocardin could activate an endogenous program of SMC differentiation, we stably transfected L6 myoblasts and assessed SMC marker expression and growth. Results reveal the expression of several SMC markers concomitant with a lower growth potential. Collectively, these studies suggest that myocardin is an important component of a molecular switch for the SMC differentiation program.
机译:J. CHEN,C。M. K ITCHEN,J。W. S TREBAND J. M. M IANO。心肌素:平滑肌分化的分子开关的一个组成部分。 Journal of Molecular and Cellular Cardiology(2002)34,1345-1356。培养中的平滑肌细胞(SMC)和受损的血管壁的标志是它们的表型调节,从分化状态到增强的生长,迁移和基质合成之一。尚未阐明这种改变的遗传程序的转录机制。血清反应因子(SRF)已经通过与近端CArG元件相互作用而成为SMC限制性基因表达的关键调节剂。但是,SRF蛋白的水平在SMC表型调节过程中不会改变,这表明该过程中其他因素或事件的作用。一个这样的因素可能是心肌素,一种最近从心脏组织中克隆的新型SRF共激活因子。大鼠主动脉培养基中的心肌素水平以及关键的SMC限制性基因大量表达。在一些SMC细胞系中,心肌蛋白mRNA水平的降低与SMC标志物表达的丧失或减弱平行。在SMC和非SMC中使用CMV驱动的心肌素进行的瞬时转染实验均显示了SM-Calp启动子增强子的CArG依赖性反式激活。其他几个依赖CArG的SMC启动子以细胞和启动子相关的方式显示出可变的激活。为了确定心肌素是否可以激活内源性SMC分化程序,我们稳定转染了L6成肌细胞并评估了SMC标记物的表达和生长。结果揭示了几种具有较低生长潜力的SMC标记物的表达。总体而言,这些研究表明,心肌素是SMC分化程序中分子开关的重要组成部分。

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