Liu Lijun, Mohammadi Kamiar, Aynafshar Behrouz, Wang Haojie, Li Daxiang, Liu Jiang, Ivanov Alexander V, Xie Zijian, Askari Amir
Department of Pharmacology, Medical College of Ohio, Toledo, Ohio 43614, USA.
Am J Physiol Cell Physiol. 2003 Jun;284(6):C1550-60. doi: 10.1152/ajpcell.00555.2002. Epub 2003 Feb 26.
Ouabain binding to Na(+)/K(+)-ATPase activates Src/epidermal growth factor receptor (EGFR) to initiate multiple signal pathways that regulate growth. In cardiac myocytes and the intact heart, the early ouabain-induced pathways that cause rapid activations of ERK1/2 also regulate intracellular Ca(2+) concentration (Ca(2+)) and contractility. The goal of this study was to explore the role of caveolae in these early signaling events. Subunits of Na(+)/K(+)-ATPase were detected by immunoblot analysis in caveolae isolated from cardiac myocytes, cardiac ventricles, kidney cell lines, and kidney outer medulla by established detergent-free procedures. Isolated rat cardiac caveolae contained Src, EGFR, ERK1/2, and 20-30% of cellular contents of alpha(1)- and alpha(2)-isoforms of Na(+)/K(+)-ATPase, along with nearly all of cellular caveolin-3. Immunofluorescence microscopy of adult cardiac myocytes showed the presence of caveolin-3 and alpha-isoforms in peripheral sarcolemma and T tubules and suggested their partial colocalization. Exposure of contracting isolated rat hearts to a positive inotropic dose of ouabain and analysis of isolated cardiac caveolae showed that ouabain caused 1) no change in total caveolar ERK1/2, but a two- to threefold increase in caveolar phosphorylated/activated ERK1/2; 2) no change in caveolar alpha(1)-isoform and caveolin-3; and 3) 50-60% increases in caveolar Src and alpha(2)-isoform. These findings, in conjunction with previous observations, show that components of the pathways that link Na(+)/K(+)-ATPase to ERK1/2 and Ca(2+) are organized within cardiac caveolae microdomains. They also suggest that ouabain-induced recruitments of Src and alpha(2)-isoform to caveolae are involved in the manifestation of the positive inotropic effect of ouabain.
哇巴因与钠钾ATP酶结合会激活Src/表皮生长因子受体(EGFR),从而启动多条调节生长的信号通路。在心肌细胞和完整心脏中,哇巴因早期诱导的导致细胞外调节蛋白激酶1/2(ERK1/2)快速激活的信号通路,也会调节细胞内钙离子浓度([Ca2+]i)和收缩性。本研究的目的是探讨小窝在这些早期信号事件中的作用。通过既定的无去污剂程序,在从心肌细胞、心室、肾细胞系和肾外髓质分离出的小窝中,利用免疫印迹分析检测钠钾ATP酶的亚基。分离出的大鼠心脏小窝含有Src、EGFR、ERK1/2,以及钠钾ATP酶α1和α2亚型细胞含量的20%至30%,还有几乎所有的细胞小窝蛋白-3。成年心肌细胞的免疫荧光显微镜检查显示,小窝蛋白-3和α亚型存在于外周肌膜和T小管中,并提示它们部分共定位。将收缩的离体大鼠心脏暴露于正性肌力剂量的哇巴因,并对分离出的心脏小窝进行分析,结果显示,哇巴因导致:1)小窝中总的ERK1/2无变化,但小窝中磷酸化/激活的ERK1/2增加了两到三倍;2)小窝中α1亚型和小窝蛋白-3无变化;3)小窝中Src和α2亚型增加了50%至60%。这些发现与之前的观察结果相结合,表明将钠钾ATP酶与ERK1/2和[Ca2+]i联系起来的信号通路成分,在心脏小窝微区中是有组织的。它们还表明,哇巴因诱导的Src和α2亚型向小窝的募集,参与了哇巴因正性肌力作用的表现。