Department of Anesthesiology & Perioperative Medicine, David Geffen School of Medicine, University of California, Los Angeles, CA, USA.
Department of Medicine/Cardiology, David Geffen School of Medicine, University of California, Los Angeles, CA, USA.
Cardiovasc Res. 2023 Mar 17;119(1):64-78. doi: 10.1093/cvr/cvac040.
The response of an organ to stimuli emerges from the actions of individual cells. Recent cardiac single-cell RNA-sequencing studies of development, injury, and reprogramming have uncovered heterogeneous populations even among previously well-defined cell types, raising questions about what level of experimental resolution corresponds to disease-relevant, tissue-level phenotypes. In this review, we explore the biological meaning behind this cellular heterogeneity by undertaking an exhaustive analysis of single-cell transcriptomics in the heart (including a comprehensive, annotated compendium of studies published to date) and evaluating new models for the cardiac function that have emerged from these studies (including discussion and schematics that depict new hypotheses in the field). We evaluate the evidence to support the biological actions of newly identified cell populations and debate questions related to the role of cell-to-cell variability in development and disease. Finally, we present emerging epigenomic approaches that, when combined with single-cell RNA-sequencing, can resolve basic mechanisms of gene regulation and variability in cell phenotype.
器官对刺激的反应源于单个细胞的作用。最近对心脏发育、损伤和重编程的单细胞 RNA 测序研究发现,即使在以前定义明确的细胞类型中,也存在异质群体,这引发了关于与疾病相关的组织水平表型对应的实验分辨率是多少的问题。在这篇综述中,我们通过对心脏的单细胞转录组学进行详尽的分析(包括迄今为止发表的研究的全面注释汇编),并评估这些研究中出现的新的心脏功能模型(包括讨论和示意图,描绘了该领域的新假设),来探讨这种细胞异质性背后的生物学意义。我们评估了支持新鉴定的细胞群体的生物学作用的证据,并就细胞间变异性在发育和疾病中的作用相关问题进行了辩论。最后,我们提出了新兴的表观基因组学方法,当与单细胞 RNA 测序相结合时,可以解析基因调控的基本机制和细胞表型的变异性。