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Cardiac myosin binding protein C phosphorylation is cardioprotective

机译:心肌肌球蛋白结合蛋白C磷酸化具有心脏保护作用

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Cardiac myosin binding protein C (cMyBP-C) has three phosphorylatable serines at its N terminus (Ser-273, Ser-282, and Ser-302), and the residues' phosphorylation states may alter thick filament structure and function. To examine the effects of cMyBP-C phosphorylation, we generated transgenic mice with cardiac-specific expression of a cMyBP-C in which the three phosphorylation sites were mutated to aspartic acid, mimicking constitutive phosphorylation (cMyBP-CAIIP+). The allele was bred into a cMyBP-C null background (cMyBP-C((t/t))) to ensure the absence of endogenous dephosphorylated cMyBP-C. cMyBP-CAIIP(+) was incorporated normally into the cardiac sarcomere and restored normal cardiac function in the null background. However, subtle changes in sarcomere ultrastructure, characterized by increased distances between the thick filaments, indicated that phosphomimetic cMyBP-C affects thick-thin filament relationships, and yeast two-hybrid data and pull-down studies both showed that charged residues in these positions effectively prevented interaction with the myosin heavy chain. Confirming the physiological relevance of these data, the cMyBP-CAIIP+:(t/t) hearts were resistant to ischemia-reperfusion injury. These data demonstrate that cMyBP-C phosphorylation functions in maintaining thick filament spacing and structure and can help protect the myocardium from ischemic injury.
机译:心肌肌球蛋白结合蛋白C(cMyBP-C)在其N端具有三个可磷酸化的丝氨酸(Ser-273,Ser-282和Ser-302),并且残基的磷酸化状态可能会改变粗丝的结构和功能。为了检查cMyBP-C磷酸化的影响,我们产生了具有cMyBP-C心脏特异性表达的转基因小鼠,其中三个磷酸化位点突变为天冬氨酸,模仿了组成型磷酸化(cMyBP-CAIIP +)。将等位基因繁殖到cMyBP-C无效背景(cMyBP-C((t / t)))中,以确保不存在内源性去磷酸化的cMyBP-C。将cMyBP-CAIIP(+)正常并入心脏肌小肌中,并在零背景下恢复正常的心脏功能。然而,肌节超微结构的细微变化(以粗细丝之间的距离增加为特征)表明,拟磷酸酶cMyBP-C影响细细丝的关系,酵母双杂交数据和下拉研究均表明这些位置的带电残基有效阻止了与肌球蛋白重链的相互作用。证实这些数据的生理相关性,cMyBP-CAIIP + :( t / t)心脏对缺血-再灌注损伤具有抵抗力。这些数据表明,cMyBP-C磷酸化在维持粗丝间隔和结构中起作用,并且可以帮助保护心肌免受缺血性损伤。

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