4例DSG2 p.a g119ter杂合型心肌病患者。

IF 1 Q4 GENETICS & HEREDITY Human Genome Variation Pub Date : 2024-12-20 DOI:10.1038/s41439-024-00304-w
Takuya Sumida, Shou Ogawa, Shuichiro Higo, Yuki Kuramoto, Ryo Eto, Yoshihiko Ikeda, Congcong Sun, Junjun Li, Li Liu, Tomoka Tabata, Yoshihiro Asano, Mikio Shiba, Yasuhiro Akazawa, Daisuke Nakamura, Takafumi Oka, Tomohito Ohtani, Yasushi Sakata
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引用次数: 0

摘要

DSG2是致心律失常性心肌病的致病基因之一。我们之前在一名患有青少年心肌病和晚期双心室心力衰竭的患者中发现了一种纯合子DSG2 p.a g119ter停增益变异体。然而,杂合DSG2 p.a g119ter变异的病理意义和流行率仍不确定。本研究中,我们在808例非缺血性心肌病患者中发现了4例不相关的DSG2 p.a r119ter杂合型心肌病患者;等位基因频率为0.0037,是日本普通人群的50倍以上。这些患者临床诊断为心律失常性右室心肌病(Pt-1)、室间隔缺损闭合手术后扩张型心肌病(DCM) (Pt-2)、DCM (Pt-3)和终末期肥厚型心肌病(Pt-4)。患者还表现出左心室收缩功能减弱和不同的临床病程。遗传分析还发现了其他可能的致病变异,在Pt-1中发现DSG2 p.g arg292cys,在Pt-3中发现BAG3 p.s his166serfster6。免疫组化分析结果显示,心肌内膜活检样品中desmoglin -2和desmoplakin的表达均明显降低。透射电镜显示心肌间盘间隙变宽,桥粒变淡,碎裂。利用诱导多能干细胞(iPSC-CMs)分化的人心肌细胞进行的微力测试表明,携带DSG2杂合截断变体的iPSC-CMs收缩性降低。这些数据表明,DSG2 p.a g119ter变异在心肌病合并心力衰竭患者中是隐藏的,桥粒损伤可能是收缩功能障碍和疾病进展的潜在加剧因素。
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Four cardiomyopathy patients with a heterozygous DSG2 p.Arg119Ter variant.

DSG2, encoding desmoglein-2, is one of the causative genes of arrhythmogenic cardiomyopathy. We previously identified a homozygous DSG2 p.Arg119Ter stop-gain variant in a patient with juvenile-onset cardiomyopathy and advanced biventricular heart failure. However, the pathological significance and prevalence of the heterozygous DSG2 p.Arg119Ter variant remains uncertain. Here, we identified four unrelated patients with cardiomyopathy with heterozygous DSG2 p.Arg119Ter variants among 808 patients with nonischemic cardiomyopathy; the allele frequency was 0.0037, which is more than 50-fold greater than that reported in the general Japanese population. These patients were clinically diagnosed with arrhythmogenic right ventricular cardiomyopathy (Pt-1), dilated cardiomyopathy (DCM) after ventricular septum defect closure surgery (Pt-2), DCM (Pt-3), and end-stage hypertrophic cardiomyopathy (Pt-4). The patients also exhibited reduced left ventricular contractile function and varying clinical courses. Genetic analysis identified additional possible causative variants, DSG2 p.Arg292Cys in Pt-1 and BAG3 p.His166SerfsTer6 in Pt-3. Immunohistochemical analysis of endomyocardial biopsy samples revealed that the expression of not only desmoglein-2 but also desmoplakin was markedly reduced. Transmission electron microscopy revealed pale and fragmented desmosomes and widened gaps between intercalated discs in the myocardium. A microforce test using human cardiomyocytes differentiated from induced pluripotent stem cells (iPSC-CMs) demonstrated reduced contractility in iPSC-CMs carrying a heterozygous truncating variant in DSG2. These data suggest that the DSG2 p.Arg119Ter variant is concealed in patients with cardiomyopathy with heart failure, and desmosome impairment may be a latent exacerbating factor of contractile dysfunction and disease progression.

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来源期刊
Human Genome Variation
Human Genome Variation Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
2.30
自引率
0.00%
发文量
39
审稿时长
13 weeks
期刊最新文献
High-coverage whole-genome sequencing of a Jakun individual from the "Orang Asli" Proto-Malay subtribe from Peninsular Malaysia. A novel UBA1 gene mutation in a patient with infantile respiratory distress syndrome. Association of novel ERLIN2 gene variants with hereditary spastic paraplegia. Clinical characteristics of the Ala21Val variant in the myelin proteolipid protein 1 (PLP1) gene associated with Pelizaeus-Merzbacher disease in a Brazilian male patient. Four cardiomyopathy patients with a heterozygous DSG2 p.Arg119Ter variant.
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