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Ribosomal protein S6 kinase beta-1 gene variants cause hypertrophic cardiomyopathy

肥厚性心肌病 生物 遗传学 P70-S6激酶1 外显子组测序 心肌病 错义突变 候选基因 基因 突变 内科学 医学 PI3K/AKT/mTOR通路 心力衰竭 信号转导 生物化学
作者
P. Jain,Shashank Jayappa,Thiagarajan Sairam,Anupam Mittal,Sayan Paul,Vinay J. Rao,Harshil Chittora,Deepak Kashyap,Dasaradhi Palakodeti,Kumarasamy Thangaraj,Jayaprakash Shenthar,Rakesh Koranchery,Ranjith Rajendran,Alireza Haghighi,Kurukkanparampil Sreedharan Mohanan,Andiappan Rathinavel,Perundurai S. Dhandapany
出处
期刊:Journal of Medical Genetics [BMJ]
卷期号:59 (10): 984-992 被引量:1
标识
DOI:10.1136/jmedgenet-2021-107866
摘要

Hypertrophic cardiomyopathy (HCM) is a genetic heart muscle disease with preserved or increased ejection fraction in the absence of secondary causes. Mutations in the sarcomeric protein-encoding genes predominantly cause HCM. However, relatively little is known about the genetic impact of signalling proteins on HCM.Here, using exome and targeted sequencing methods, we analysed two independent cohorts comprising 401 Indian patients with HCM and 3521 Indian controls. We identified novel variants in ribosomal protein S6 kinase beta-1 (RPS6KB1 or S6K1) gene in two unrelated Indian families as a potential candidate gene for HCM. The two unrelated HCM families had the same heterozygous missense S6K1 variant (p.G47W). In a replication association study, we identified two S6K1 heterozygotes variants (p.Q49K and p.Y62H) in the UK Biobank cardiomyopathy cohort (n=190) compared with matched controls (n=16 479). These variants are neither detected in region-specific controls nor in the human population genome data. Additionally, we observed an S6K1 variant (p.P445S) in an Arab patient with HCM. Functional consequences were evaluated using representative S6K1 mutated proteins compared with wild type in cellular models. The mutated proteins activated the S6K1 and hyperphosphorylated the rpS6 and ERK1/2 signalling cascades, suggesting a gain-of-function effect.Our study demonstrates for the first time that the variants in the S6K1 gene are associated with HCM, and early detection of the S6K1 variant carriers can help to identify family members at risk and subsequent preventive measures. Further screening in patients with HCM with different ethnic populations will establish the specificity and frequency of S6K1 gene variants.
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