首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Mechanical stress activates protein kinase cascade of phosphorylation in neonatal rat cardiac myocytes.
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Mechanical stress activates protein kinase cascade of phosphorylation in neonatal rat cardiac myocytes.

机译:机械应力激活新生大鼠心肌细胞中磷酸化的蛋白激酶级联反应。

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摘要

We have previously shown that stretching cardiac myocytes evokes activation of protein kinase C (PKC), mitogen-activated protein kinases (MAPKs), and 90-kD ribosomal S6 kinase (p90rsk). To clarify the signal transduction pathways from external mechanical stress to nuclear gene expression in stretch-induced cardiac hypertrophy, we have elucidated protein kinase cascade of phosphorylation by examining the time course of activation of MAP kinase kinase kinases (MAPKKKs), MAP kinase kinase (MAPKK), MAPKs, and p90rsk in neonatal rat cardiac myocytes. Mechanical stretch transiently increased the activity of MAPKKKs. An increase in MAPKKKs activity was first detected at 1 min and maximal activation was observed at 2 min after stretch. The activity of MAPKK was increased by stretch from 1-2 min, with a peak at 5 min after stretch. In addition, MAPKs and p90rsk were maximally activated at 8 min and at 10 approximately 30 min after stretch, respectively. Raf-1 kinase (Raf-1) and (MAPK/extracellular signal-regulated kinase) kinase kinase (MEKK), both of which have MAPKKK activity, were also activated by stretching cardiac myocytes for 2 min. The angiotensin II receptor antagonist partially suppressed activation of Raf-1 and MAPKs by stretch. The stretch-induced hypertrophic responses such as activation of Raf-1 and MAPKs and an increase in amino acid uptake was partially dependent on PKC, while a PKC inhibitor completely abolished MAPK activation by angiotensin II. These results suggest that mechanical stress activates the protein kinase cascade of phosphorylation in cardiac myocytes in the order of Raf-1 and MEKK, MAPKK, MAPKs and p90rsk, and that angiotensin II, which may be secreted from stretched myocytes, may be partly involved in stretch-induced hypertrophic responses by activating PKC.
机译:以前我们已经表明,拉伸心肌细胞会引起蛋白激酶C(PKC),有丝分裂原激活的蛋白激酶(MAPK)和90-kD核糖体S6激酶(p90rsk)的激活。为了阐明从外部机械应力到牵张性心肌肥大中核基因表达的信号转导途径,我们通过检查MAP激酶激酶(MAPKKKs),MAP激酶激酶(MAPKK)激活的时间过程,阐明了磷酸化的蛋白激酶级联反应),MAPK和p90rsk在新生大鼠心脏心肌细胞中的表达。机械拉伸瞬时增加了MAPKKKs的活性。 MAPKKKs活性的增加首先在1分钟时检测到,并在拉伸后2分钟时观察到最大激活。从1-2分钟开始,MAPKK的活性增加,在拉伸后5分钟达到峰值。此外,MAPK和p90rsk分别在拉伸后的8分钟和10大约30分钟时被最大程度地激活。 Raf-1激酶(Raf-1)和(MAPK /细胞外信号调节激酶)激酶激酶(MEKK)都具有MAPKKK活性,它们也可以通过拉伸心肌细胞2分钟而被激活。血管紧张素II受体拮抗剂通过拉伸部分抑制Raf-1和MAPKs的激活。拉伸诱导的肥大反应,例如Raf-1和MAPKs的激活以及氨基酸摄取的增加,部分取决于PKC,而PKC抑制剂则完全消除了血管紧张素II对MAPK的激活。这些结果表明,机械应力以Raf-1和MEKK,MAPKK,MAPK和p90rsk的顺序激活了心肌细胞中磷酸化的蛋白激酶级联反应,并且可能由拉伸的心肌细胞分泌的血管紧张素II可能部分参与其中。通过激活PKC来拉伸诱导的肥大反应。

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