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首页> 外文期刊>American Journal of Physiology >Angiotensin II regulates phosphorylation of translation elongation factor-2 in cardiac myocytes.
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Angiotensin II regulates phosphorylation of translation elongation factor-2 in cardiac myocytes.

机译:血管紧张素II调节心肌细胞中翻译延伸因子2的磷酸化。

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Increased protein synthesis is the cardinal feature of cardiac hypertrophy. We have studied angiotensin II (ANG II)-dependent regulation of eukaryotic elongation factor-2 (eEF-2), an essential component of protein translation required for polypeptide elongation, in rat neonatal cardiac myocytes. eEF2 is fully active in its dephosphorylated state and is inhibited following phosphorylation by eEF2 kinase. ANG II treatment (10(-10) - 10(-7) M) for 30 min produced an AT(1) receptor-specific and concentration- and time-dependent reduction in the phosphorylation of eEF-2. Protein phosphatase 2A (PP2A) inhibitors okadaic acid and fostriecin, but not the PP2B inhibitor FK506, attenuated ANG II-dependent dephosphorylation of eEF-2. ANG II activated mitogen-activated protein kinase, (MAPK) within 10 min of treatment, and blockade of MAPK activation with PD-98059 (1--20 nM) inhibited eEF-2 dephosphorylation. The effect of ANG II on eEF-2 dephosphorylation was also blocked by LY-29004 (1-20 nM), suggesting a role for phosphoinositide 3-kinase, but the mammalian target rapamycin inhibitor rapamycin (10--100 nM) had no effect. Together these results suggest that the ANG II-dependent increase in protein synthesis includes activation of eEF-2 via dephosphorylation by PP2A by a process that involves both PI3K and MAPK.
机译:蛋白质合成的增加是心脏肥大的主要特征。我们已经研究了大鼠新生心肌细胞中血管紧张素II(ANG II)依赖的真核生物延伸因子2(eEF-2)的调节,该蛋白是多肽延伸所需的蛋白质翻译的重要组成部分。 eEF2在其去磷酸化状态下具有完全活性,并在eEF2激酶磷酸化后被抑制。 ANG II处理(10(-10)-10(-7)M)30分钟产生了eEF-2磷酸化的AT(1)受体特异性和浓度依赖性及时间依赖性降低。蛋白磷酸酶2A(PP2A)抑制剂冈田酸和ostostriecin,而不是PP2B抑制剂FK506减弱了eEF-2依赖于ANG II的去磷酸化作用。 ANG II在治疗10分钟内激活了促分裂原激活的蛋白激酶(MAPK),并用PD-98059(1--20 nM)阻断了MAPK的激活,抑制了eEF-2的去磷酸化。 LY-29004(1-20 nM)也阻断了ANG II对eEF-2去磷酸化的作用,表明磷酸肌醇3-激酶具有作用,但哺乳动物靶雷帕霉素抑制剂雷帕霉素(10--100 nM)没有作用。 。这些结果共同表明,依赖于ANG II的蛋白质合成增加包括通过PI2K和MAPK参与的过程通过PP2A的去磷酸化激活eEF-2。

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