Gi Weng-Tein, Haas Jan, Sedaghat-Hamedani Farbod, Kayvanpour Elham, Tappu Rewati, Lehmann David Hermann, Shirvani Samani Omid, Wisdom Michael, Keller Andreas, Katus Hugo A, Meder Benjamin
Institute for Cardiomyopathies Heidelberg (ICH), Heart Center Heidelberg, University of Heidelberg, 69121 Heidelberg, Germany.
DZHK (German Center for Cardiovascular Research), 69121 Heidelberg, Germany.
J Clin Med. 2020 May 16;9(5):1499. doi: 10.3390/jcm9051499.
In recent years, the genetic architecture of dilated cardiomyopathy (DCM) has been more thoroughly elucidated. However, there is still insufficient knowledge on the modifiers and regulatory principles that lead to the failure of myocardial function. The current study investigates the association of epigenome-wide DNA methylation and alternative splicing, both of which are important regulatory principles in DCM. We analyzed screening and replication cohorts of cases and controls and identified distinct transcriptomic patterns in the myocardium that differ significantly, and we identified a strong association of intronic DNA methylation and flanking exons usage ( < 2 × 10). By combining differential exon usage (DEU) and differential methylation regions (DMR), we found a significant change of regulation in important sarcomeric and other DCM-associated pathways. Interestingly, inverse regulation of Titin antisense non-coding RNA transcript splicing and DNA methylation of a locus reciprocal to substantiate these findings and indicate an additional role for non-protein-coding transcripts. In summary, this study highlights for the first time the close interrelationship between genetic imprinting by DNA methylation and the transport of this epigenetic information towards the dynamic mRNA splicing landscape. This expands our knowledge of the genome-environment interaction in DCM besides simple gene expression regulation.
近年来,扩张型心肌病(DCM)的遗传结构已得到更深入的阐明。然而,对于导致心肌功能衰竭的修饰因子和调控原则,我们仍了解不足。当前研究调查了全基因组DNA甲基化与可变剪接之间的关联,这两者都是DCM中的重要调控原则。我们分析了病例组和对照组的筛查及重复队列,确定了心肌中显著不同的独特转录组模式,并发现内含子DNA甲基化与侧翼外显子使用之间存在强关联(<2×10)。通过结合差异外显子使用(DEU)和差异甲基化区域(DMR),我们发现重要的肌节和其他DCM相关通路中的调控发生了显著变化。有趣的是,肌联蛋白反义非编码RNA转录本剪接与一个位点的DNA甲基化的反向调控证实了这些发现,并表明非蛋白质编码转录本具有额外作用。总之,本研究首次突出了DNA甲基化的遗传印记与这种表观遗传信息向动态mRNA剪接格局的传递之间的密切相互关系。除了简单的基因表达调控外,这扩展了我们对DCM中基因组 - 环境相互作用的认识。