Mice lacking MBNL1 and MBNL2 exhibit sudden cardiac death and molecular signatures recapitulating myotonic dystrophy

Author:

Lee Kuang-Yung12ORCID,Seah Carol1,Li Ching1,Chen Yu-Fu1,Chen Chwen-Yu1,Wu Ching-I1,Liao Po-Cheng3,Shyu Yu-Chiau34ORCID,Olafson Hailey R5,McKee Kendra K5,Wang Eric T5,Yeh Chi-Hsiao26,Wang Chao-Hung27

Affiliation:

1. Department of Neurology, Chang Gung Memorial Hospital, Keelung Branch , Keelung , Taiwan

2. Chang Gung University, College of Medicine , Taoyuan , Taiwan

3. Community Medicine Research Center, Chang Gung Memorial Hospital, Keelung Branch , Keelung , Taiwan

4. Department of Nursing, Chang Gung University of Science and Technology , Taoyuan City , Taiwan

5. Department of Molecular Genetics and Microbiology, Center for NeuroGenetics, College of Medicine, University of Florida , Gainesville, FL 32610 , USA

6. Department of Thoracic and Cardiovascular Surgery, Chang Gung Memorial Hospital, Linko Branch , Taoyuan , Taiwan

7. Division of Cardiology, Department of Internal Medicine, Heart Failure Research Center, Chang Gung Memorial Hospital, Keelung Branch , Keelung , Taiwan

Abstract

Abstract Myotonic dystrophy (DM) is caused by expansions of C(C)TG repeats in the non-coding regions of the DMPK and CNBP genes, and DM patients often suffer from sudden cardiac death due to lethal conduction block or arrhythmia. Specific molecular changes that underlie DM cardiac pathology have been linked to repeat-associated depletion of Muscleblind-like (MBNL) 1 and 2 proteins and upregulation of CUGBP, Elav-like family member 1 (CELF1). Hypothesis solely targeting MBNL1 or CELF1 pathways that could address all the consequences of repeat expansion in heart remained inconclusive, particularly when the direct cause of mortality and results of transcriptome analyses remained undetermined in Mbnl compound knockout (KO) mice with cardiac phenotypes. Here, we develop Myh6-Cre double KO (DKO) (Mbnl1−/−; Mbnl2cond/cond; Myh6-Cre+/−) mice to eliminate Mbnl1/2 in cardiomyocytes and observe spontaneous lethal cardiac events under no anesthesia. RNA sequencing recapitulates DM heart spliceopathy and shows gene expression changes that were previously undescribed in DM heart studies. Notably, immunoblotting reveals a nearly 6-fold increase of Calsequestrin 1 and 50% reduction of epidermal growth factor proteins. Our findings demonstrate that complete ablation of MBNL1/2 in cardiomyocytes is essential for generating sudden death due to lethal cardiac rhythms and reveal potential mechanisms for DM heart pathogenesis.

Funder

Ministry of Science and Technology, Taiwan

Chang Gung Medical Research Grants

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

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1. RNA-binding proteins in cardiovascular biology and disease: the beat goes on;Nature Reviews Cardiology;2024-01-02

2. Cardiac involvement in patient-specific induced pluripotent stem cells of myotonic dystrophy type 1: unveiling the impact of voltage-gated sodium channels;Frontiers in Physiology;2023-09-18

3. Splicing factors in the heart: Uncovering shared and unique targets;Journal of Molecular and Cellular Cardiology;2023-06

4. Selection Signature Analysis for Important Economic Traits in Sheep (Ovis aries);Indian Journal of Animal Research;2023-01-04

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