The Heart Institute Cincinnati Children's Hospital, Cincinnati, Ohio, U.S.A.
Biomedical Informatics Cincinnati Children's Hospital, Cincinnati, Ohio, U.S.A.
Sci Rep. 2017 Jan 18;7:39276. doi: 10.1038/srep39276.
Pediatric restrictive cardiomyopathy (RCM) is a genetically heterogeneous heart disease with limited therapeutic options. RCM cases are largely idiopathic; however, even within families with a known genetic cause for cardiomyopathy, there is striking variability in disease severity. Although accumulating evidence implicates both gene expression and alternative splicing in development of dilated cardiomyopathy (DCM), there have been no detailed molecular characterizations of underlying pathways dysregulated in RCM. RNA-Seq on a cohort of pediatric RCM patients compared to other forms of adult cardiomyopathy and controls identified transcriptional differences highly common to the cardiomyopathies, as well as those unique to RCM. Transcripts selectively induced in RCM include many known and novel G-protein coupled receptors linked to calcium handling and contractile regulation. In-depth comparisons of alternative splicing revealed splicing events shared among cardiomyopathy subtypes, as well as those linked solely to RCM. Genes identified with altered alternative splicing implicate RBM20, a DCM splicing factor, as a potential mediator of alternative splicing in RCM. We present the first comprehensive report on molecular pathways dysregulated in pediatric RCM including unique/shared pathways identified compared to other cardiomyopathy subtypes and demonstrate that disruption of alternative splicing patterns in pediatric RCM occurs in the inverse direction as DCM.
儿科限制性心肌病(RCM)是一种遗传异质性心脏病,治疗选择有限。RCM 病例大多是特发性的;然而,即使在已知心肌病遗传原因的家族中,疾病的严重程度也存在显著差异。尽管越来越多的证据表明基因表达和选择性剪接在扩张型心肌病(DCM)的发展中起作用,但 RCM 中失调的潜在途径尚未进行详细的分子特征描述。对一组儿科 RCM 患者与其他类型的成人心肌病和对照组进行 RNA-Seq 分析,确定了与心肌病高度相关的转录差异,以及 RCM 特有的差异。在 RCM 中选择性诱导的转录本包括许多与钙处理和收缩调节相关的已知和新的 G 蛋白偶联受体。对选择性剪接的深入比较揭示了心肌病亚型之间共享的剪接事件,以及仅与 RCM 相关的剪接事件。具有改变的选择性剪接的基因表明,RBM20(一种 DCM 剪接因子)可能是 RCM 中选择性剪接的潜在介质。我们首次全面报告了儿科 RCM 中失调的分子途径,包括与其他心肌病亚型相比所确定的独特/共享途径,并证明儿科 RCM 中的选择性剪接模式紊乱与 DCM 相反。