Kolonay Dominic W, Grueter Chad E, Baskin Kedryn K
Department of Physiology and Cell Biology, Dorothy M. Davis Heart and Lung Research Institute, The Ohio State University Wexner Medical Center, Columbus, OH, USA.
Division of Cardiovascular Medicine, Department of Internal Medicine, Francois M. Abboud Cardiovascular Research Center, Fraternal Order of Eagles Diabetes Research Center, University of Iowa, Iowa City, IA, USA.
J Mol Cell Cardiol Plus. 2025 May 22;12:100456. doi: 10.1016/j.jmccpl.2025.100456. eCollection 2025 Jun.
Transcription directs the heart's development and adaptation to stress signals, and transcriptional dysregulation contributes to developmental disorders, pathological remodeling and heart failure (HF). Stereotypic changes at the mRNA level in the failing heart can be powerful diagnostics, as dysregulation can precede pathological outcomes such as decreased ejection fraction and increased heart size. The Mediator Complex is a general regulator of transcription in all eukaryotic cells; however, unknown subunit- and tissue-specific functions complicate our understanding of Mediator's influence on the cell. Here, we investigated the subunit-specific responses of Mediator throughout cardiac development, aging, and disease at the single cell- and whole ventricle-resolution using single cell RNA-sequencing, bulk RNA-sequencing, qPCR, and assay for Transposase-Accessible Chromatin using sequencing (ATAC-seq) datasets from humans and mice. In the developing heart, we discovered that key stages of growth such as ventricle formation were marked with elevated Mediator component expression, which declined during postnatal maturation, but increased again in the aging heart. Heart failure, a heterogenous disease, presented with a global increase in Mediator expression in human and mouse cardiomyocytes. This increased expression was mirrored by increased chromatin accessibility at the promoters of Mediator genes. Collectively, this study reveals the dynamic expression of Mediator subunits throughout the stages of the cardiomyocyte lifecycle and uncovers potential mechanisms by which Mediator is modulated in response to various pathological stimuli.
转录指导心脏的发育以及对压力信号的适应,而转录失调会导致发育障碍、病理性重塑和心力衰竭(HF)。在衰竭心脏中,mRNA水平的刻板变化可作为有力的诊断依据,因为失调可能先于诸如射血分数降低和心脏增大等病理结果出现。中介体复合物是所有真核细胞转录的一般调节因子;然而,未知的亚基特异性和组织特异性功能使我们对中介体对细胞影响的理解变得复杂。在此,我们使用来自人类和小鼠的单细胞RNA测序、批量RNA测序、qPCR以及转座酶可及染色质测序分析(ATAC-seq)数据集,在单细胞和全心室分辨率下研究了中介体在整个心脏发育、衰老和疾病过程中的亚基特异性反应。在发育中的心脏中,我们发现心室形成等关键生长阶段的特征是中介体成分表达升高,这种表达在出生后成熟过程中下降,但在衰老心脏中再次升高。心力衰竭是一种异质性疾病,在人类和小鼠心肌细胞中介体表达整体增加。这种增加的表达反映在中介体基因启动子处染色质可及性的增加上。总体而言,这项研究揭示了中介体亚基在心肌细胞生命周期各阶段的动态表达,并揭示了中介体响应各种病理刺激而被调节的潜在机制。