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CaMKII in the Cardiovascular System: Sensing Redox States.

机译:心血管系统中的CaMKII:感知氧化还原状态。

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The multifunctional Ca(2+)- and calmodulin-dependent protein kinase II (CaMKII) is now recognized to play a central role in pathological events in the cardiovascular system. CaMKII has diverse downstream targets that promote vascular disease, heart failure, and arrhythmias, so improved understanding of CaMKII signaling has the potential to lead to new therapies for cardiovascular disease. CaMKII is a multimeric serine-threonine kinase that is initially activated by binding calcified calmodulin (Ca(2+)/CaM). Under conditions of sustained exposure to elevated Ca(2+)/CaM, CaMKII transitions into a Ca(2+)/CaM-autonomous enzyme by two distinct but parallel processes. Autophosphorylation of threonine-287 in the CaMKII regulatory domain "traps" CaMKII into an open configuration even after Ca(2+)/CaM unbinding. More recently, our group identified a pair of methionines (281/282) in the CaMKII regulatory domain that undergo a partially reversible oxidation which, like autophosphorylation, prevents CaMKII from inactivating after Ca(2+)/CaM unbinding. Here we review roles of CaMKII in cardiovascular disease with an eye to understanding how CaMKII may act as a transduction signal to connect pro-oxidant conditions into specific downstream pathological effects that are relevant to rare and common forms of cardiovascular disease.
机译:现在公认多功能Ca(2+)和钙调蛋白依赖性蛋白激酶II(CaMKII)在心血管系统的病理事件中起着核心作用。 CaMKII具有多种促进血管疾病,心力衰竭和心律不齐的下游靶标,因此,对CaMKII信号传导的深入了解可能会导致针对心血管疾病的新疗法。 CaMKII是一种多聚丝氨酸-苏氨酸激酶,最初通过结合钙化钙调蛋白(Ca(2 +)/ CaM)来激活。在持续暴露于升高的Ca(2 +)/ CaM的条件下,CaMKII通过两个不同但平行的过程转变为Ca(2 +)/ CaM自主酶。在CaMKII调节域中苏氨酸287的自磷酸化将“ CaMKII”陷阱“甚至” Ca(2 +)/ CaM解除绑定后进入一个开放的配置。最近,我们的研究小组在CaMKII调节域中鉴定出一对甲硫氨酸(281/282),它们进行部分可逆的氧化,就像自磷酸化作用一样,阻止CaMKII在Ca(2 +)/ CaM解除结合后失活。在这里,我们综述了CaMKII在心血管疾病中的作用,以期了解CaMKII如何作为将促氧化剂条件连接到与罕见和常见形式的心血管疾病相关的特定下游病理效应的转导信号。

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