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连接蛋白 2 突变小鼠在出现心肌病性改变之前出现连接盘异常、钠电流密度降低和传导减慢。

Intercalated disc abnormalities, reduced Na(+) current density, and conduction slowing in desmoglein-2 mutant mice prior to cardiomyopathic changes.

机构信息

Department of Cardiac, Thoracic and Vascular Sciences, University of Padua, Padua 35121, Italy.

出版信息

Cardiovasc Res. 2012 Sep 1;95(4):409-18. doi: 10.1093/cvr/cvs219. Epub 2012 Jul 3.

Abstract

AIMS

Mutations in genes encoding desmosomal proteins have been implicated in the pathogenesis of arrhythmogenic right ventricular cardiomyopathy (ARVC). However, the consequences of these mutations in early disease stages are unknown. We investigated whether mutation-induced intercalated disc remodelling impacts on electrophysiological properties before the onset of cell death and replacement fibrosis.

METHODS AND RESULTS

Transgenic mice with cardiac overexpression of mutant Desmoglein2 (Dsg2) Dsg2-N271S (Tg-NS/L) were studied before and after the onset of cell death and replacement fibrosis. Mice with cardiac overexpression of wild-type Dsg2 and wild-type mice served as controls. Assessment by electron microscopy established that intercellular space widening at the desmosomes/adherens junctions occurred in Tg-NS/L mice before the onset of necrosis and fibrosis. At this stage, epicardial mapping in Langendorff-perfused hearts demonstrated prolonged ventricular activation time, reduced longitudinal and transversal conduction velocities, and increased arrhythmia inducibility. A reduced action potential (AP) upstroke velocity due to a lower Na(+) current density was also observed at this stage of the disease. Furthermore, co-immunoprecipitation demonstrated an in vivo interaction between Dsg2 and the Na(+) channel protein Na(V)1.5.

CONCLUSION

Intercellular space widening at the level of the intercalated disc (desmosomes/adherens junctions) and a concomitant reduction in AP upstroke velocity as a consequence of lower Na(+) current density lead to slowed conduction and increased arrhythmia susceptibility at disease stages preceding the onset of necrosis and replacement fibrosis. The demonstration of an in vivo interaction between Dsg2 and Na(V)1.5 provides a molecular pathway for the observed electrical disturbances during the early ARVC stages.

摘要

目的

桥粒蛋白编码基因突变与致心律失常性右室心肌病(ARVC)的发病机制有关。然而,这些突变在疾病早期阶段的后果尚不清楚。我们研究了突变诱导的闰盘重塑是否会在细胞死亡和替代纤维化之前影响电生理特性。

方法和结果

研究了过表达突变型桥粒蛋白 2(Dsg2)Dsg2-N271S(Tg-NS/L)的转基因小鼠在细胞死亡和替代纤维化之前和之后的情况。过表达野生型 Dsg2 和野生型小鼠的小鼠作为对照。电子显微镜评估发现,在 Tg-NS/L 小鼠中,在坏死和纤维化发生之前,桥粒/黏附连接处的细胞间隙增宽。在这个阶段,Langendorff 灌流心脏的心外膜标测显示心室激活时间延长,纵向和横向传导速度降低,心律失常易感性增加。在疾病的这个阶段还观察到由于钠电流密度降低而导致动作电位(AP)上升速度降低。此外,共免疫沉淀表明 Dsg2 与钠通道蛋白 Na(V)1.5 之间存在体内相互作用。

结论

闰盘(桥粒/黏附连接)水平的细胞间隙增宽以及由于钠电流密度降低导致的 AP 上升速度降低导致在坏死和替代纤维化发生之前的疾病阶段传导速度减慢和心律失常易感性增加。Dsg2 与 Na(V)1.5 之间的体内相互作用为观察到的 ARVC 早期阶段的电生理紊乱提供了一个分子途径。

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