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钙调蛋白在心脏疾病中的作用:基因型与表型的相关见解。

Role of Calmodulin in Cardiac Disease: Insights on Genotype and Phenotype.

机构信息

Istituto Auxologico Italiano, IRCCS, Center for Cardiac Arrhythmias of Genetic Origin and Laboratory of Cardiovascular Genetics, Milan, Italy (P.J.S., L.C.).

Department of Medicine and Surgery, University of Milano-Bicocca, Milan, Italy (L.C.).

出版信息

Circ Genom Precis Med. 2024 Oct;17(5):e004542. doi: 10.1161/CIRCGEN.124.004542. Epub 2024 Sep 9.

Abstract

Calmodulin, a protein critically important for the regulation of all major cardiac ion channels, is the quintessential cellular calcium sensor and plays a key role in preserving cardiac electrical stability. Its unique importance is highlighted by the presence of 3 genes in 3 different chromosomes encoding for the same protein and by their extreme conservation. Indeed, all 3 calmodulin () genes are among the most constrained genes in the human genome, that is, the observed variants are much less than expected by chance. Not surprisingly, variants are poorly tolerated and accompany significant clinical phenotypes, of which the most important are those associated with increased risk for life-threatening arrhythmias. Here, we review the current knowledge about calmodulin, its specific physiological, structural, and functional characteristics, and its importance for cardiovascular disease. Given our role in the development of this knowledge, we also share some of our views about currently unanswered questions, including the rational approaches to the clinical management of the affected patients. Specifically, we present some of the most critical information emerging from the International Calmodulinopathy Registry, which we established 10 years ago. Further progress clearly requires deep phenotypic information on as many carriers as possible through international contributions to the registry, in order to expand our knowledge about Calmodulinopathies and guide clinical management.

摘要

钙调蛋白是一种对调节所有主要心脏离子通道至关重要的蛋白质,是典型的细胞钙传感器,在维持心脏电稳定性方面发挥着关键作用。其独特的重要性体现在 3 个不同染色体上的 3 个基因编码相同的蛋白质,以及它们的极度保守性。事实上,所有 3 个钙调蛋白()基因都是人类基因组中受约束最强的基因之一,也就是说,观察到的变异比预期的随机变异要少得多。毫不奇怪,钙调蛋白变异的耐受性差,伴随着显著的临床表型,其中最重要的是那些与致命性心律失常风险增加相关的表型。在这里,我们回顾了钙调蛋白的现有知识,包括其特定的生理、结构和功能特征,以及它对心血管疾病的重要性。鉴于我们在这方面知识的发展中所扮演的角色,我们还分享了一些关于目前尚未解答的问题的看法,包括对受影响患者进行临床管理的合理方法。具体来说,我们介绍了 10 年前我们建立的国际钙调蛋白病登记处中出现的一些最关键信息。要进一步取得进展,显然需要通过国际登记处的贡献,获得尽可能多的携带者的深度表型信息,以扩展我们对钙调蛋白病的认识,并指导临床管理。

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