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不同强度的周期性拉伸对体外培养的骨骼肌细胞中钠钾ATP酶的影响。

Effects of different magnitudes of cyclic stretch on Na+-K+-ATPase in skeletal muscle cells in vitro.

作者信息

Yuan Xiao, Lin Zhu, Luo Songjiao, Ji Guoping, Yuan Changqing, Wu Yong

机构信息

Department of Orthodontics, 4th Military Medical University, Xi'an, Shanxi Province, People's Republic of China.

出版信息

J Cell Physiol. 2007 Aug;212(2):509-18. doi: 10.1002/jcp.21047.

Abstract

The Na(+)-K(+)-ATPase, which plays a major role in modulation of skeletal muscle excitability and contractility, is one of the marker enzymes that senses the mechanical strain and adapts to the stimuli. Although many papers had been published on the effects of mechanical stress on Na(+)-K(+)-ATPase in aortic smooth muscle cells, little was known about the effects of different magnitudes of mechanical stretch on Na(+)-K(+)-ATPase in skeletal muscle cells. In the present study, we determined the effect of different magnitudes(6%, 12%, or 25% elongation) of cyclic stretch on the activity of the Na(+)-K(+)-ATPase and investigated possible mechanisms that might be involved in the action of stretch. The results showed the application of different magnitudes of cyclic stretch induced a magnitude-dependent increase of Na(+)-K(+)-ATPase activity in cultured skeletal muscle cells. Furthermore, inhibition of ionic fluxes through SACs prevented the action of stretch on Na(+)-K(+)-ATPase activity. The stretch-induced increase in Na(+)-K(+)-ATPase activity was not blocked by Actinomycin D. No significant changes in mRNA and total cell protein levels of Na(+)-K(+)-ATPase were detected after stretched continuous for 24 h. However, cyclic stretch increased cell surface expression of Na(+)-K(+)-ATPase alpha(1)- and alpha(2)-subunit proteins by 1.3- and 1.75-fold, respectively, and the increases in Na(+)-K(+)-ATPase activity and cell surface expression were abolished by LY-294002. These data indicated that cyclic stretch induced a "magnitude-dependent" increase of Na(+)-K(+)-ATPase activity in cultured skeletal muscle cells in vitro. The upregulation involved translocation of Na(+)-K(+)-ATPase alpha(1)- and alpha(2)-subunits to plasma membrane, not increased gene transcription. These results suggested a novel nontranscriptional mechanism for regulation of Na(+)-K(+)-ATPase in skeletal muscle cells by cyclic stretch.

摘要

钠钾ATP酶在调节骨骼肌兴奋性和收缩性方面发挥着重要作用,是感知机械应变并适应刺激的标志性酶之一。尽管已有许多关于机械应力对主动脉平滑肌细胞中钠钾ATP酶影响的论文发表,但对于不同程度的机械拉伸对骨骼肌细胞中钠钾ATP酶的影响却知之甚少。在本研究中,我们测定了不同程度(6%、12%或25%伸长)的周期性拉伸对钠钾ATP酶活性的影响,并研究了拉伸作用可能涉及的潜在机制。结果表明,施加不同程度的周期性拉伸可诱导培养的骨骼肌细胞中钠钾ATP酶活性呈程度依赖性增加。此外,通过小窝蛋白抑制离子通量可阻止拉伸对钠钾ATP酶活性的作用。放线菌素D并未阻断拉伸诱导的钠钾ATP酶活性增加。在连续拉伸24小时后,未检测到钠钾ATP酶的mRNA和总细胞蛋白水平有显著变化。然而,周期性拉伸分别使钠钾ATP酶α1和α2亚基蛋白的细胞表面表达增加了1.3倍和1.75倍,而LY-294002消除了钠钾ATP酶活性和细胞表面表达的增加。这些数据表明,体外培养的骨骼肌细胞中,周期性拉伸可诱导钠钾ATP酶活性呈“程度依赖性”增加。这种上调涉及钠钾ATP酶α1和α2亚基向质膜的转运,而非基因转录增加。这些结果提示了一种通过周期性拉伸调节骨骼肌细胞中钠钾ATP酶的新型非转录机制。

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