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Deregulated Ca2+ cycling underlies the development of arrhythmia and heart disease due to mutant obscurin

机译:失调的Ca 2 + 循环是突变的obscurin导致心律不齐和心脏病发展的基础

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Obscurins are cytoskeletal proteins with structural and regulatory roles encoded by OBSCN. Mutations in OBSCN are associated with the development of hypertrophic cardiomyopathy (HCM) and dilated cardiomyopathy (DCM). Specifically, the R4344Q mutation present in immunoglobulin domain 58 (Ig58) was the first to be linked with the development of HCM. To assess the effects of R4344Q in vivo, we generated the respective knock-in mouse model. Mutant obscurins are expressed and incorporated normally into sarcomeres. The expression patterns of sarcomeric and Ca2+-cycling proteins are unaltered in sedentary 1-year-old knock-in myocardia, with the exception of sarco/endoplasmic reticulum Ca2+ adenosine triphosphatase 2 (SERCA2) and pentameric phospholamban whose levels are significantly increased and decreased, respectively. Isolated cardiomyocytes from 1-year-old knock-in hearts exhibit increased Ca2+-transients and Ca2+-load in the sarcoplasmic reticulum and faster contractility kinetics. Moreover, sedentary 1-year-old knock-in animals develop tachycardia accompanied by premature ventricular contractions, whereas 2-month-old knock-in animals subjected to pressure overload develop a DCM-like phenotype. Structural analysis revealed that the R4344Q mutation alters the distribution of electrostatic charges over the Ig58 surface, thus interfering with its binding capabilities. Consistent with this, wild-type Ig58 interacts with phospholamban modestly, and this interaction is markedly enhanced in the presence of R4344Q. Together, our studies demonstrate that under sedentary conditions, the R4344Q mutation results in Ca2+ deregulation and spontaneous arrhythmia, whereas in the presence of chronic, pathological stress, it leads to cardiac remodeling and dilation. We postulate that enhanced binding between mutant obscurins and phospholamban leads to SERCA2 disinhibition, which may underlie the observed pathological alterations.
机译:Obscurins是由OBSCN编码的具有结构和调节作用的细胞骨架蛋白。 OBSCN中的突变与肥厚型心肌病(HCM)和扩张型心肌病(DCM)的发展有关。具体而言,存在于免疫球蛋白结构域58(Ig58)中的R4344Q突变是第一个与HCM发生有关的突变。为了评估R4344Q在体内的作用,我们生成了各自的敲入小鼠模型。突变的obscurins被表达并通常掺入肉瘤中。久坐的1岁敲入型心肌中,肌节和Ca 2 + 循环蛋白的表达模式没有改变,但肌节/内质网Ca 2 + 分别显着升高和降低其水平的腺苷三磷酸酶2(SERCA2)和五聚体磷酰胺。 1岁敲入心脏的分离的心肌细胞在肌质网中显示出增加的Ca 2 + 瞬变和Ca 2 + 负荷,并具有更快的收缩动力学。此外,久坐的1岁敲入动物会出现心动过速并伴有过早的心室收缩,而2个月大的遭受压力超负荷的敲入动物会出现DCM样表型。结构分析表明,R4344Q突变会改变Ig58表面的静电荷分布,从而干扰其结合能力。与此相一致,野生型Ig58与磷酸lamban适度地相互作用,并且在存在R4344Q的情况下这种相互作用显着增强。总之,我们的研究表明,在久坐的情况下,R4344Q突变会导致Ca 2 + 失调和自发性心律失常,而在慢性病理应激的情况下,它会导致心脏重塑和扩张。我们假定突变的obscurins和phosphorlamban之间增强的绑定导致SERCA2抑制,这可能是观察到的病理改变的基础。

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