Literature DB >> 20852297

A ZASP missense mutation, S196L, leads to cytoskeletal and electrical abnormalities in a mouse model of cardiomyopathy.

Zhaohui Li1, Tomohiko Ai, Kaveh Samani, Yutao Xi, Huei-Ping Tzeng, Mingxing Xie, Shan Wu, Shuping Ge, Michael D Taylor, Jian-Wen Dong, Jie Cheng, Michael J Ackerman, Akinori Kimura, Gianfranco Sinagra, Luca Brunelli, Georgine Faulkner, Matteo Vatta.   

Abstract

BACKGROUND: Dilated cardiomyopathy (DCM) is a primary disease of the heart muscle associated with sudden cardiac death secondary to ventricular tachyarrhythmias and asystole. However, the molecular pathways linking DCM to arrhythmias and sudden cardiac death are unknown. We previously identified a S196L mutation in exon 4 of LBD3-encoded ZASP in a family with DCM and sudden cardiac death. These findings led us to hypothesize that this mutation may precipitate both cytoskeletal and conduction abnormalities in vivo. Therefore, we investigated the role of the ZASP4 mutation S196L in cardiac cytoarchitecture and ion channel biology. METHODS AND
RESULTS: We generated and analyzed transgenic mice with cardiac-restricted expression of the S196L mutation. We also performed cellular electrophysiological analysis on isolated S196L cardiomyocytes and protein-protein interaction studies. Ten month-old S196L mice developed hemodynamic dysfunction consistent with DCM, whereas 3-month-old S196L mice presented with cardiac conduction defects and atrioventricular block. Electrophysiological analysis on isolated S196L cardiomyocytes demonstrated that the L-type Ca(2+) currents and Na(+) currents were altered. The pull-down assay demonstrated that ZASP4 complexes with both calcium (Ca(v)1.2) and sodium (Na(v)1.5) channels.
CONCLUSIONS: Our findings provide new insight into the mechanisms by which mutations of a structural/cytoskeletal protein, such as ZASP, lead to cardiac functional and electric abnormalities. This work represents a novel framework to understand the development of conduction defects and arrhythmias in subjects with cardiomyopathies, including DCM.

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Year:  2010        PMID: 20852297     DOI: 10.1161/CIRCEP.109.929240

Source DB:  PubMed          Journal:  Circ Arrhythm Electrophysiol        ISSN: 1941-3084


  13 in total

1.  Loss of function of hNav1.5 by a ZASP1 mutation associated with intraventricular conduction disturbances in left ventricular noncompaction.

Authors:  Yutao Xi; Tomohiko Ai; Enno De Lange; Zhaohui Li; Geru Wu; Luca Brunelli; W Buck Kyle; Isik Turker; Jie Cheng; Michael J Ackerman; Akinori Kimura; James N Weiss; Zhilin Qu; Jeffrey J Kim; Georgine Faulkner; Matteo Vatta
Journal:  Circ Arrhythm Electrophysiol       Date:  2012-08-28

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10.  Aberrant Protein Turn-Over Associated With Myofibrillar Disorganization in FHL1 Knockout Mice.

Authors:  Jingjing Ding; Yan Fei Cong; Bo Liu; Jianing Miao; Lili Wang
Journal:  Front Genet       Date:  2018-07-23       Impact factor: 4.599

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