Unit of Vascular Biology and Regenerative Medicine, Centro Cardiologico Monzino IRCCS, 20138 Milan, Italy.
Department of Medicine and Surgery, Università degli Studi di Milano Bicocca, 20126 Milan, Italy.
Biomolecules. 2022 Jul 28;12(8):1043. doi: 10.3390/biom12081043.
Arrhythmogenic cardiomyopathy (ACM) is a rare inherited disorder, whose genetic cause is elusive in about 50-70% of cases. ACM presents a variable disease course which could be influenced by genetics. We performed next-generation sequencing on a panel of 174 genes associated with inherited cardiovascular diseases on 82 ACM probands (i) to describe and classify the pathogenicity of rare variants according to the American College of Medical Genetics and Genomics both for ACM-associated genes and for genes linked to other cardiovascular genetic conditions; (ii) to assess, for the first time, the impact of common variants on the ACM clinical disease severity by genotype-phenotype correlation and survival analysis. We identified 15 (likely) pathogenic variants and 66 variants of uncertain significance in ACM-genes and 4 high-impact variants in genes never associated with ACM (, , , ), which deserve future consideration. In addition, we found 69 significant genotype-phenotype associations between common variants and clinical parameters. Arrhythmia-associated polymorphisms resulted in an increased risk of arrhythmic events during patients' follow-up. The description of the genetic framework of our population and the observed genotype-phenotype correlation constitutes the starting point to address the current lack of knowledge in the genetics of ACM.
致心律失常性右室心肌病(ACM)是一种罕见的遗传性疾病,约 50-70%的病例其遗传原因仍难以捉摸。ACM 呈现出多变的疾病进程,这可能受到遗传因素的影响。我们对 82 名 ACM 先证者进行了 174 个与遗传性心血管疾病相关基因的下一代测序(i)根据美国医学遗传学与基因组学学院的标准,对 ACM 相关基因和与其他心血管遗传疾病相关基因中的罕见变异进行描述和分类;(ii)首次通过基因型-表型相关性和生存分析评估常见变异对 ACM 临床疾病严重程度的影响。我们在 ACM 基因中发现了 15 个(可能)致病性变异和 66 个意义不明的变异,在从未与 ACM 相关的基因中发现了 4 个高影响变异(、、、),值得进一步研究。此外,我们发现 69 个常见变异与临床参数之间存在显著的基因型-表型关联。与心律失常相关的多态性使患者在随访期间发生心律失常事件的风险增加。本研究描述了我们人群的遗传框架以及观察到的基因型-表型相关性,为解决 ACM 遗传领域目前缺乏的知识奠定了基础。