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首页> 外文期刊>Science China Life Sciences >Cardiac BIN1 (cBIN1) is a regulator of cardiac contractile function and an emerging biomarker of heart muscle health
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Cardiac BIN1 (cBIN1) is a regulator of cardiac contractile function and an emerging biomarker of heart muscle health

机译:心脏BIN1(cBIN1)是心脏收缩功能的调节剂和心肌健康的新兴生物标志物

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In recent decades, a cardiomyocyte membrane scaffolding protein bridging integrator 1 (BIN1) has emerged as a critical multifunctional regulator of transverse-tubule (t-tubule) function and calcium signaling in cardiomyocytes. Encoded by a single gene with 20 exons that are alternatively spliced, more than ten BIN1 protein isoforms are expressed with tissue and disease specificity. The recently discovered cardiac alternatively spliced isoform BIN1 (cBIN1 or BIN1+13+17)plays a crucial role in organizing membrane microfolds within cardiac t-tubules. These cBIN1-induced microfolds form functional dyad microdomains by trafficking L-type calcium channels (LTCC) to t-tubule membrane and recruiting ryanodine receptors (RyR) to junctional sarcoplasmic reticulum membrane. When cBIN1 is transcriptionally reduced as occurs in heart failure, cBIN1-microfolds are disrupted and fail to form LTCC and RyR couplons. As a result, impaired dyad formation limits excitation-contraction coupling thus cardiac contractility, and accumulation of orphaned leaky RyRs outside of dyads increases ventricular arrhythmias. Reduced myocardial BIN1 in heart failure is also detectable at the blood level, and plasma BIN1 level predicts heart failure progression and future arrhythmias in cardiomyopathy patients. Here we will review the recent progress in BIN1-related cardiomyocyte biology studies and discuss the diagnostic and predictive values of cBIN1 in future clinical use.
机译:在最近的几十年中,心肌细胞膜支架蛋白桥整合子1(BIN1)已经成为心肌细胞中横向小管(t-小管)功能和钙信号传导的重要多功能调节器。由具有20个外显子的单个基因编码,这些外显子被交替剪接,以组织和疾病特异性表达了十多个BIN1蛋白同工型。最近发现的心脏选择性剪接的同工型BIN1(cBIN1或BIN1 + 13 + 17)在组织心脏T管内的膜微折叠中起关键作用。这些cBIN1诱导的微褶通过将L型钙通道(LTCC)转运到T管膜,并将ryanodine受体(RyR)转运到结节肌质网膜而形成功能性二元微区。当cBIN1在心力衰竭中发生转录还原时,cBIN1微褶被破坏,无法形成LTCC和RyR偶联物。结果,受损的二元体形成限制了兴奋与收缩的耦合,从而使心脏收缩,而在二元体外部孤立的漏泄RyRs的积累会增加室性心律失常。在血液水平上也可检测到心力衰竭的心肌BIN1降低,血浆BIN1水平可预测心肌病患者的心力衰竭进展和未来的心律不齐。在这里,我们将回顾与BIN1相关的心肌生物学研究的最新进展,并讨论cBIN1在未来临床应用中的诊断和预测价值。

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