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Extracellular signal-regulated kinases 1/2 as regulators of cardiac hypertrophy

机译:细胞外信号调节激酶1/2作为心脏肥大的调节剂

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Cardiac hypertrophy results from increased mechanical load on the heart and through the actions of local and systemic neuro-humoral factors, cytokines and growth factors. These mechanical and neuroendocrine effectors act through stretch, G protein–coupled receptors and tyrosine kinases to induce the activation of a myriad of intracellular signaling pathways including the extracellular signal-regulated kinases 1/2 (ERK1/2). Since most stimuli that provoke myocardial hypertrophy also elicit an acute phosphorylation of the threonine-glutamate-tyrosine (TEY) motif within the activation loops of ERK1 and ERK2 kinases, resulting in their activation, ERKs have long been considered promotors of cardiac hypertrophy. Several mouse models were generated in order to directly understand the causal role of ERK1/2 activation in the heart. These models include direct manipulation of ERK1/2 such as overexpression, mutagenesis or knockout models, manipulations of upstream kinases such as MEK1 and manipulations of the phosphatases that dephosphorylate ERK1/2 such as DUSP6. The emerging understanding from these studies, as will be discussed here, is more complex than originally considered. While there is little doubt that ERK1/2 activation or the lack of it modulates the hypertrophic process or the type of hypertrophy that develops, it appears that not all ERK1/2 activation events are the same. While much has been learned, some questions remain regarding the exact role of ERK1/2 in the heart, the upstream events that result in ERK1/2 activation and the downstream effector in hypertrophy.
机译:心脏肥大是由于心脏机械负荷增加以及局部和全身性神经体液因子,细胞因子和生长因子的作用所致。这些机械和神经内分泌效应因子通过伸展,G蛋白偶联受体和酪氨酸激酶起作用,以诱导无数种细胞内信号通路的激活,包括细胞外信号调节激酶1/2(ERK1 / 2)。由于大多数引起心肌肥大的刺激也会在ERK1和ERK2激酶的激活环内引起苏氨酸-谷氨酸-酪氨酸(TEY)基序的急性磷酸化,从而导致它们的激活,因此ERKs一直被认为是心肌肥大的促进剂。为了直接了解心脏中ERK1 / 2激活的因果作用,生成了几种小鼠模型。这些模型包括对ERK1 / 2的直接操作(例如过表达,诱变或敲除模型),对上游激酶(例如MEK1)的操作以及对ERK1 / 2脱磷酸的磷酸酶(如DUSP6)的操作。从这些研究中获得的新认识(将在此处讨论)比最初考虑的要复杂。虽然毫无疑问,ERK1 / 2激活或缺乏它会调节肥大过程或所形成的肥大类型,但似乎并非所有ERK1 / 2激活事件都是相同的。尽管已经学到了很多东西,但是关于ERK1 / 2在心脏中的确切作用,导致ERK1 / 2激活的上游事件以及肥大中的下游效应器仍然存在一些疑问。

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