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肌肉活动对MEF2的激活是通过一条钙调神经磷酸酶依赖的途径介导的。

Activation of MEF2 by muscle activity is mediated through a calcineurin-dependent pathway.

作者信息

Wu H, Rothermel B, Kanatous S, Rosenberg P, Naya F J, Shelton J M, Hutcheson K A, DiMaio J M, Olson E N, Bassel-Duby R, Williams R S

机构信息

Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.

出版信息

EMBO J. 2001 Nov 15;20(22):6414-23. doi: 10.1093/emboj/20.22.6414.

Abstract

Gene expression in skeletal muscles of adult vertebrates is altered profoundly by changing patterns of contractile work. Here we observed that the functional activity of MEF2 transcription factors is stimulated by sustained periods of endurance exercise or motor nerve pacing, as assessed by expression in trans genic mice of a MEF2-dependent reporter gene (desMEF2-lacZ). This response is accompanied by transformation of specialized myofiber subtypes, and is blocked either by cyclosporin A, a specific chemical inhibitor of calcineurin, or by forced expression of the endogenous calcineurin inhibitory protein, myocyte-enriched calcineurin interacting protein 1. Calcineurin removes phosphate groups from MEF2, and augments the potency of the transcriptional activation domain of MEF2 fused to a heterologous DNA binding domain. Across a broad range, the enzymatic activity of calcineurin correlates directly with expression of endogenous genes that are transcriptionally activated by muscle contractions. These results delineate a molecular pathway in which calcineurin and MEF2 participate in the adaptive mechanisms by which skeletal myofibers acquire specialized contractile and metabolic properties as a function of changing patterns of muscle contraction.

摘要

成年脊椎动物骨骼肌中的基因表达会因收缩工作模式的改变而发生深刻变化。在此我们观察到,通过在转基因小鼠中表达一种依赖MEF2的报告基因(desMEF2-lacZ)评估发现,耐力运动的持续阶段或运动神经起搏会刺激MEF2转录因子的功能活性。这种反应伴随着特殊肌纤维亚型的转变,并且会被环孢菌素A(一种钙调神经磷酸酶的特异性化学抑制剂)或内源性钙调神经磷酸酶抑制蛋白(富含肌细胞的钙调神经磷酸酶相互作用蛋白1)的强制表达所阻断。钙调神经磷酸酶会去除MEF2上的磷酸基团,并增强与异源DNA结合结构域融合的MEF2转录激活结构域的效力。在很广的范围内,钙调神经磷酸酶的酶活性与由肌肉收缩转录激活的内源性基因的表达直接相关。这些结果描绘了一条分子途径,其中钙调神经磷酸酶和MEF2参与了适应性机制,通过该机制骨骼肌纤维根据肌肉收缩模式的变化获得特殊的收缩和代谢特性。

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