Progressive cardiomyopathy with intercalated disc disorganization in a rat model of Becker dystrophy.

IF 6.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY EMBO Reports Pub Date : 2024-11-01 Epub Date: 2024-10-02 DOI:10.1038/s44319-024-00249-9
Valentina Taglietti, Kaouthar Kefi, Busra Mirciloglu, Sultan Bastu, Jean-Daniel Masson, Iwona Bronisz-Budzyńska, Vassiliki Gouni, Carlotta Ferri, Alan Jorge, Christel Gentil, France Pietri-Rouxel, Edoardo Malfatti, Peggy Lafuste, Laurent Tiret, Frederic Relaix
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Abstract

Becker muscular dystrophy (BMD) is an X-linked disorder due to in-frame mutations in the DMD gene, leading to a less abundant and truncated dystrophin. BMD is less common and severe than Duchenne muscular dystrophy (DMD) as well as less investigated. To accelerate the search for innovative treatments, we developed a rat model of BMD by deleting the exons 45-47 of the Dmd gene. Here, we report a functional and histopathological evaluation of these rats during their first year of life, compared to DMD and control littermates. BMD rats exhibit moderate damage to locomotor and diaphragmatic muscles but suffer from a progressive cardiomyopathy. Single nuclei RNA-seq analysis of cardiac samples revealed shared transcriptomic abnormalities in BMD and DMD rats and highlighted an altered end-addressing of TMEM65 and Connexin-43 at the intercalated disc, along with electrocardiographic abnormalities. Our study documents the natural history of a translational preclinical model of BMD and reports a cellular mechanism for the cardiac dysfunction in BMD and DMD offering opportunities to further investigate the organization role of dystrophin in intercellular communication.

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在大鼠贝克尔营养不良症模型中出现的进行性心肌病伴有椎间盘紊乱。
贝克型肌营养不良症(BMD)是一种 X 连锁疾病,是由于 DMD 基因发生框内突变,导致肌营养不良蛋白含量减少并被截断。与杜氏肌营养不良症(DMD)相比,贝氏肌营养不良症并不常见,病情也不严重,研究也较少。为了加快寻找创新治疗方法,我们通过删除 Dmd 基因的 45-47 号外显子,建立了一个 BMD 大鼠模型。在此,我们报告了对这些大鼠在出生后第一年的功能和组织病理学评估,并与 DMD 和对照组同窝大鼠进行了比较。BMD 大鼠的运动肌和膈肌表现出中度损伤,但患有进行性心肌病。对心脏样本进行的单核 RNA-seq 分析显示,BMD 大鼠和 DMD 大鼠存在共同的转录组异常,并突出显示了 TMEM65 和 Connexin-43 在闰盘的末端地址改变以及心电图异常。我们的研究记录了 BMD 转化临床前模型的自然史,并报告了 BMD 和 DMD 心脏功能障碍的细胞机制,为进一步研究肌营养不良蛋白在细胞间通信中的组织作用提供了机会。
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来源期刊
EMBO Reports
EMBO Reports 生物-生化与分子生物学
CiteScore
11.20
自引率
1.30%
发文量
267
审稿时长
1 months
期刊介绍: EMBO Reports is a scientific journal that specializes in publishing research articles in the fields of molecular biology, cell biology, and developmental biology. The journal is known for its commitment to publishing high-quality, impactful research that provides novel physiological and functional insights. These insights are expected to be supported by robust evidence, with independent lines of inquiry validating the findings. The journal's scope includes both long and short-format papers, catering to different types of research contributions. It values studies that: Communicate major findings: Articles that report significant discoveries or advancements in the understanding of biological processes at the molecular, cellular, and developmental levels. Confirm important findings: Research that validates or supports existing knowledge in the field, reinforcing the reliability of previous studies. Refute prominent claims: Studies that challenge or disprove widely accepted ideas or hypotheses in the biosciences, contributing to the correction and evolution of scientific understanding. Present null data: Papers that report negative results or findings that do not support a particular hypothesis, which are crucial for the scientific process as they help to refine or redirect research efforts. EMBO Reports is dedicated to maintaining high standards of scientific rigor and integrity, ensuring that the research it publishes contributes meaningfully to the advancement of knowledge in the life sciences. By covering a broad spectrum of topics and encouraging the publication of both positive and negative results, the journal plays a vital role in promoting a comprehensive and balanced view of scientific inquiry. 
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