【2h】

MYBPC3

机译:Mepbeck.

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摘要

In humans, abnormal thickening of the left ventricle of the heart clinically defines hypertrophic cardiomyopathy (HCM), a common inherited cardiovascular disorder that can precede a sudden cardiac death event. The wide range of clinical presentations in HCM obscures genetic variants that may influence an individual's susceptibility to sudden cardiac death. Although exon sequencing of major sarcomere genes can be used to detect high-impact causal mutations, this strategy is successful in only half of patient cases. The incidence of left ventricular hypertrophy (LVH) in a managed research colony of rhesus macaques provides an excellent comparative model in which to explore the genomic etiology of severe HCM and sudden cardiac death. Because no rhesus HCM-associated mutations have been reported, we used a next-generation genotyping assay that targets 7 sarcomeric rhesus genes within 63 genomic sites that are orthologous to human genomic regions known to harbor HCM disease variants. Amplicon sequencing was performed on 52 macaques with confirmed LVH and 42 unrelated, unaffected animals representing both the Indian and Chinese rhesus macaque subspecies. Bias-reduced logistic regression uncovered a risk haplotype in the rhesus MYBPC3 gene, which is frequently disrupted in both human and feline HCM; this haplotype implicates an intronic variant strongly associated with disease in either homozygous or carrier form. Our results highlight that leveraging evolutionary genomic data provides a unique, practical strategy for minimizing population bias in complex disease studies.
机译:在人类中,心脏左心室的异常增厚临床上定义了肥厚性心肌病(HCM),一种常见的遗传性心血管疾病,可以在突然的心脏死亡事件之前。 HCM中的各种临床介绍模糊了可能影响个人对突然心脏死亡的易感性的遗传变异。虽然主要SARCAME基因的外显子测序可用于检测高冲击因果突变,但该策略仅为一半的患者病例成功。毛茛属猕猴的托管研究殖民地中左心室肥大(LVH)的发病率提供了一种优异的比较模型,用于探讨严重HCM和突然心死的基因组病因。由于没有报告恒河猴相关突变,我们使用了下一代基因分型测定法,其在63种基因组位点内靶向7个SARCOMER恒毛树基因,其与已知的HCM疾病变体已知的人类基因组区域进行直木病。在52只猕猴上进行扩增子测序,具有确认的LVH和42个不相关的未受影响的动物,代表印度和中国恒星猕猴亚种。偏差降低的逻辑回归未发现恒河猴MYBPC3基因的风险单倍型,其经常在人类和猫培养的HCM中被破坏;这种单倍型含有与纯合或载体形式强烈相关的内肾内变异。我们的结果强调,利用进化基因组数据提供了一种独特的实际策略,可实现复杂疾病研究中的群体偏倚。

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