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obscurin-Ig58/59结构域的组成性缺失会诱导心房重塑和基于Ca2+的心律失常发生。

Constitutive deletion of the obscurin-Ig58/59 domains induces atrial remodeling and Ca2+-based arrhythmogenesis.

作者信息

Grogan Alyssa, Brong Annie, Joca Humberto C, Boyman Liron, Kaplan Aaron D, Ward Christopher W, Greiser Maura, Kontrogianni-Konstantopoulos Aikaterini

机构信息

Department of Biochemistry and Molecular Biology.

Department of Orthopedics.

出版信息

JCI Insight. 2025 Jan 7;10(4):e184202. doi: 10.1172/jci.insight.184202.

Abstract

Obscurin is a giant protein that coordinates diverse aspects of striated muscle physiology. Obscurin immunoglobulin domains 58/59 (Ig58/59) associate with essential sarcomeric and Ca2+ cycling proteins. To explore the pathophysiological significance of Ig58/59, we generated the Obscn-ΔIg58/59 mouse model, expressing obscurin constitutively lacking Ig58/59. Males in this line develop atrial fibrillation by 6 months, with atrial and ventricular dilation by 12 months. As Obscn-ΔIg58/59 left ventricles at 6 months exhibit no deficits in sarcomeric ultrastructure or Ca2+ signaling, we hypothesized that susceptibility to arrhythmia may emanate from the atria. Ultrastructural evaluation of male Obscn-ΔIg58/59 atria uncovered prominent Z-disk streaming by 6 months and further misalignment by 12 months. Relatedly, isolated Obscn-ΔIg58/59 atrial cardiomyocytes exhibited increased Ca2+ spark frequency and age-specific alterations in Ca2+ cycling dynamics, coinciding with arrhythmia onset and progression. Quantitative analysis of the transverse-axial tubule (TAT) network using super-resolution microscopy demonstrated significant TAT depletion in Obscn-ΔIg58/59 atria. These structural and Ca2+ signaling deficits were accompanied by age-specific alterations in the expression or phosphorylation of T-cap protein, which links transverse tubules to Z-disks, and junctophilin 2, which connects transverse tubules to the sarcoplasmic reticulum. Collectively, our work establishes the Obscn-ΔIg58/59 model as a reputable genetic model for atrial cardiomyopathy and provides mechanistic insights into atrial fibrillation and remodeling.

摘要

obscurin是一种巨大的蛋白质,它协调横纹肌生理学的多个方面。obscurin免疫球蛋白结构域58/59(Ig58/59)与肌节和Ca2+循环的关键蛋白相关联。为了探究Ig58/59的病理生理意义,我们构建了Obscn-ΔIg58/59小鼠模型,该模型持续表达缺失Ig58/59的obscurin。该品系的雄性小鼠在6个月时会发生心房颤动,12个月时会出现心房和心室扩张。由于6个月大的Obscn-ΔIg58/59左心室在肌节超微结构或Ca2+信号传导方面没有缺陷,我们推测心律失常的易感性可能源于心房。对雄性Obscn-ΔIg58/59心房的超微结构评估发现,6个月时出现明显的Z盘流,12个月时进一步出现排列紊乱。相关地,分离的Obscn-ΔIg58/59心房心肌细胞表现出Ca2+火花频率增加以及Ca2+循环动力学的年龄特异性改变,这与心律失常的发生和进展相一致。使用超分辨率显微镜对横向轴突小管(TAT)网络进行定量分析表明,Obscn-ΔIg58/59心房中的TAT明显减少。这些结构和Ca2+信号传导缺陷伴随着T帽蛋白(将横向小管与Z盘连接)和连接蛋白2(将横向小管与肌浆网连接)的表达或磷酸化的年龄特异性改变。总的来说,我们的工作将Obscn-ΔIg58/59模型确立为一种可靠的心房心肌病遗传模型,并为心房颤动和重塑提供了机制性见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14fe/11949006/ed01f09f8b6f/jciinsight-10-184202-g024.jpg

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