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钙释放通道缺陷综合征的分子特征。

Molecular characterization of the calcium release channel deficiency syndrome.

机构信息

Windland Smith Rice Sudden Death Genomics Laboratory, Department of Molecular Pharmacology and Experimental Therapeutics; Division of Heart Rhythm Services, Department of Cardiovascular Medicine; and Division of Pediatric Cardiology, Department of Pediatric and Adolescent Medicine, Mayo Clinic, Rochester, Minnesota, USA.

Division of Cardiology, University of Iowa Stead Family Children's Hospital, Iowa City, Iowa, USA.

出版信息

JCI Insight. 2020 Aug 6;5(15):135952. doi: 10.1172/jci.insight.135952.

Abstract

We identified a potentially novel homozygous duplication involving the promoter region and exons 1-4 of the gene encoding type 2 cardiac ryanodine receptor (RYR2) that is responsible for highly penetrant, exertion-related sudden deaths/cardiac arrests in the Amish community without an overt phenotype to suggest RYR2-mediated catecholaminergic polymorphic ventricular tachycardia (CPVT). Homozygous RYR2 duplication (RYR2-DUP) induced pluripotent stem cell cardiomyocytes (iPSC-CMs) were generated from 2 unrelated patients. There was no difference in baseline Ca2+ handling measurements between WT-iPSC-CM and RYR2-DUP-iPSC-CM lines. However, compared with WT-iPSC-CMs, both patient lines demonstrated a dramatic reduction in caffeine-stimulated and isoproterenol-stimulated (ISO-stimulated) Ca2+ transient amplitude, suggesting RyR2 loss of function. There was a greater than 50% reduction in RYR2 transcript/RyR2 protein expression in both patient iPSC-CMs compared with WT. Delayed afterdepolarization was observed in the RYR2-DUP-iPSC-CMs but not in the WT-iPSC-CMs. Compared with WT-iPSC-CMs, there was significantly elevated arrhythmic activity in the RYR2-DUP-iPSC-CMs in response to ISO. Nadolol, propranolol, and flecainide reduced erratic activity by 8.5-fold, 6.8-fold, and 2.4-fold, respectively, from ISO challenge. Unlike the gain-of-function mechanism observed in RYR2-mediated CPVT, the homozygous multiexon duplication precipitated a dramatic reduction in RYR2 transcription and RyR2 protein translation, a loss of function in calcium handling, and a calcium-induced calcium release apparatus that is insensitive to catecholamines and caffeine.

摘要

我们鉴定出一种潜在的新型纯合性重复,涉及编码 2 型心脏兰尼碱受体(RYR2)的基因的启动子区域和外显子 1-4,该基因导致阿米什社区中具有高度外显率、与运动相关的猝死/心搏骤停,而没有明显的表型提示 RYR2 介导的儿茶酚胺多形性室性心动过速(CPVT)。从 2 名无关的患者中产生了纯合性 RYR2 重复(RYR2-DUP)诱导的多能干细胞心肌细胞(iPSC-CM)。WT-iPSC-CM 和 RYR2-DUP-iPSC-CM 系之间的基线 Ca2+处理测量没有差异。然而,与 WT-iPSC-CMs 相比,两个患者系均表现出咖啡因刺激和异丙肾上腺素刺激(ISO 刺激)Ca2+瞬变幅度的显著降低,表明 RyR2 功能丧失。与 WT 相比,两个患者的 iPSC-CM 中 RYR2 转录物/RyR2 蛋白表达均降低超过 50%。在 RYR2-DUP-iPSC-CMs 中观察到延迟后除极,但在 WT-iPSC-CMs 中未观察到。与 WT-iPSC-CMs 相比,RYR2-DUP-iPSC-CMs 对 ISO 的反应中,心律失常活性显著升高。与 WT-iPSC-CMs 相比,Nadolol、普萘洛尔和氟卡尼分别使 ISO 挑战后的不规则活性降低 8.5 倍、6.8 倍和 2.4 倍。与 RYR2 介导的 CPVT 中观察到的获得性功能机制不同,纯合性多外显子重复导致 RYR2 转录和 RyR2 蛋白翻译的显著减少、钙处理功能丧失以及钙诱导钙释放装置对儿茶酚胺和咖啡因不敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7878/7455073/630517bf6ab2/jciinsight-5-135952-g071.jpg

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