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Dilated cardiomyopathy caused by tissue-specific ablation of SC35 in the heart.

Jian-Hua Ding | Xiangdong Xu | Dongmei Yang | Pao-Hsien Chu | Nancy D Dalton | Zhen Ye | Joanne M Yeakley | Heping Cheng | Rui-Ping Xiao | John Ross | Ju Chen | Xiang-Dong Fu
The EMBO journal | 2004

Many genetic diseases are caused by mutations in cis-acting splicing signals, but few are triggered by defective trans-acting splicing factors. Here we report that tissue-specific ablation of the splicing factor SC35 in the heart causes dilated cardiomyopathy (DCM). Although SC35 was deleted early in cardiogenesis by using the MLC-2v-Cre transgenic mouse, heart development appeared largely unaffected, with the DCM phenotype developing 3-5 weeks after birth and the mutant animals having a normal life span. This nonlethal phenotype allowed the identification of downregulated genes by microarray, one of which was the cardiac-specific ryanodine receptor 2. We showed that downregulation of this critical Ca2+ release channel preceded disease symptoms and that the mutant cardiomyocytes exhibited frequency-dependent excitation-contraction coupling defects. The implication of SC35 in heart disease agrees with a recently documented link of SC35 expression to heart failure and interference of splicing regulation during infection by myocarditis-causing viruses. These studies raise a new paradigm for the etiology of certain human heart diseases of genetic or environmental origin that may be triggered by dysfunction in RNA processing.

Pubmed ID: 14963485

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Associated grants

  • Agency: NHLBI NIH HHS, United States
    Id: R01 HL066100

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GERMLINE (tool)

RRID:SCR_001720

Software application for discovering long shared segments of Identity by Descent (IBD) between pairs of individuals in a large population. It takes as input genotype or haplotype marker data for individuals (as well as an optional known pedigree) and generates a list of all pairwise segmental sharing.

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