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首页> 外文期刊>American Journal of Physiology >Static stretch promotes MEF2A nuclear translocation and expression of neonatal myosin heavy chain in C2C12 myocytes in a calcineurin- and p38-dependent manner.
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Static stretch promotes MEF2A nuclear translocation and expression of neonatal myosin heavy chain in C2C12 myocytes in a calcineurin- and p38-dependent manner.

机译:静态拉伸以依赖钙调神经磷酸酶和p38的方式促进MEF2A核移位和新生肌球蛋白重链在C2C12心肌细胞中的表达。

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摘要

Although the effects of mechanical stimuli have been studied extensively in fully differentiated skeletal muscle and have been shown to promote changes in phenotype, including altered myosin heavy chain isoform expression, the effects of a change in mechanical environment have been poorly studied at earlier stages of skeletal muscle differentiation. In particular, the early events elicited by mechanical stimuli upon differentiating myocytes have not been investigated. In the present study, the effect of static stretch on the activation of transcriptional factors MEF2A and NFATc1, which have been shown to be involved in the differentiation and phenotype regulation of skeletal muscle, have been examined. Furthermore, putative second messenger signaling pathways that could be involved in the dephosphorylation and hence activation of these factors were also examined. We have demonstrated that static stretch application produces a robust increase in p38 phosphorylation preceding MEF2A, but not NFATc1, nuclear translocation as well as deactivation of GSK-3beta via its phosphorylation. Using SB-203580 and cyclosporine A drugs to inhibit both p38- or/and calcineurin-dependent signals, respectively, we have shown that MEF2A phosphorylation and subsequent nuclear translocation are regulated by p38 and calcineurin in a biphasic, time-dependent manner. Moreover, we also present evidence for another kinase that is involved in the stretch-related signal triggering MEF2A hyperphosphorylation, impairing its nuclear translocation, and that is related to p38. Finally, we have shown that static stretch application overnight promotes neonatal myosin heavy chain expression, which is inhibited by an inactivation of both p38 and calcineurin.
机译:尽管在完全分化的骨骼肌中广泛研究了机械刺激的作用,并已显示出其能促进表型的变化,包括改变的肌球蛋白重链同工型表达,但在骨骼早期,对机械环境变化的影响却研究不足。肌肉分化。特别地,尚未研究在分化心肌细胞时由机械刺激引起的早期事件。在本研究中,已经检查了静态拉伸对转录因子MEF2A和NFATc1激活的影响,这些因子已被证明参与骨骼肌的分化和表型调节。此外,还检查了可能参与去磷酸化并因此激活这些因子的第二信使信号通路。我们已经证明,静态拉伸应用会在MEF2A之前使p38磷酸化产生强劲增加,但不会使NFATc1,核转运以及通过其磷酸化使GSK-3beta失活。分别使用SB-203580和环孢菌素A药物抑制p38或/和钙调磷酸酶依赖性信号,我们已经显示p38和钙调磷酸酶以双相,时间依赖性方式调节MEF2A磷酸化和随后的核易位。此外,我们还提供了另一种激酶的证据,该另一种激酶牵涉触发MEF2A过度磷酸化,损害其核易位的牵张相关信号,并且与p38有关。最后,我们已经表明,过夜静态拉伸应用可促进新生儿肌球蛋白重链表达,而p38和钙调磷酸酶的失活可抑制这种表达。

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