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首页> 外文期刊>American Journal of Physiology >Hypotonic swelling-induced activation of PKN1 mediates cell survival in cardiac myocytes.
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Hypotonic swelling-induced activation of PKN1 mediates cell survival in cardiac myocytes.

机译:低渗性肿胀诱导的PKN1活化介导心肌细胞的细胞存活。

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Hypotonic cell swelling in the myocardium is induced by pathological conditions, including ischemia-reperfusion, and affects the activities of ion transporters/channels and gene expression. However, the signaling mechanism activated by hypotonic stress (HS) is not fully understood in cardiac myocytes. A specialized protein kinase cascade, consisting of Pkc1 and MAPKs, is activated by HS in yeast. Here, we demonstrate that protein kinase N1 (PKN1), a serine/threonine protein kinase and a homolog of Pkc1, is activated by HS (67% osmolarity) within 5 min and reaches peak activity at 60 min in cardiac myocytes. Activation of PKN1 by HS was accompanied by Thr(774) phosphorylation and concomitant activation of PDK1, a potential upstream regulator of PKN1. HS also activated RhoA, thereby increasing interactions between PKN1 and RhoA. PP1 (10(-5) M), a selective Src family tyrosine kinase inhibitor, significantly suppressed HS-induced activation of RhoA and PKN1. Constitutively active PKN1 significantly increased the transcriptional activity of Elk1-GAL4, an effect that was inhibited by dominant negative MEK. Overexpression of PKN1 significantly increased ERK phosphorylation, whereas downregulation of PKN1 inhibited HS-induced ERK phosphorylation. Downregulation of PKN1 and inhibition of ERK by U-0126 both significantly inhibited the survival of cardiac myocytes in the presence of HS. These results suggest that a signaling cascade, consisting of Src, RhoA, PKN1, and ERK, is activated by HS, thereby promoting cardiac myocyte survival.
机译:心肌中的低渗性细胞肿胀是由包括缺血再灌注在内的病理条件引起的,并影响离子转运蛋白/通道的活性和基因表达。但是,在心肌细胞中,对低渗应激(HS)激活的信号传导机制尚未完全了解。由酵母中的HS激活由Pkc1和MAPK组成的专门的蛋白激酶级联反应。在这里,我们证明蛋白激酶N1(PKN1),一种丝氨酸/苏氨酸蛋白激酶和Pkc1的同系物在5分钟内被HS(67%渗透压)激活,并在60分钟时在心肌细胞中达到峰值活性。 HS对PKN1的激活伴随着Thr(774)磷酸化和PDK1(PKN1的潜在上游调节剂)的伴随激活。 HS还激活了RhoA,从而增加了PKN1和RhoA之间的相互作用。 PP1(10(-5)M),一种选择性的Src家族酪氨酸激酶抑制剂,显着抑制HS诱导的RhoA和PKN1激活。组成型活性PKN1显着增加了Elk1-GAL4的转录活性,这一作用被显性负MEK抑制。 PKN1的过表达显着增加了ERK的磷酸化,而PKN1的下调则抑制了HS诱导的ERK的磷酸化。 U-0126对PKN1的下调和对ERK的抑制均显着抑制了HS存在下心肌细胞的存活。这些结果表明,由Src,RhoA,PKN1和ERK组成的信号级联被HS激活,从而促进了心肌细胞的存活。

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