Department of Physiology, Anatomy and Genetics, University of Oxford, Oxford, Oxfordshire OX1 3PT, UK; MRC Weatherall Institute of Molecular Medicine, Radcliffe Department of Medicine, University of Oxford, Oxford, Oxfordshire OX3 9DS, UK.
MRC Weatherall Institute of Molecular Medicine, Radcliffe Department of Medicine, University of Oxford, Oxford, Oxfordshire OX3 9DS, UK.
Dev Cell. 2020 Mar 9;52(5):574-590.e6. doi: 10.1016/j.devcel.2020.01.023. Epub 2020 Feb 20.
The epicardium is essential during cardiac development, homeostasis, and repair, and yet fundamental insights into its underlying cell biology, notably epicardium formation, lineage heterogeneity, and functional cross-talk with other cell types in the heart, are currently lacking. In this study, we investigated epicardial heterogeneity and the functional diversity of discrete epicardial subpopulations in the developing zebrafish heart. Single-cell RNA sequencing uncovered three epicardial subpopulations with specific genetic programs and distinctive spatial distribution. Perturbation of unique gene signatures uncovered specific functions associated with each subpopulation and established epicardial roles in cell adhesion, migration, and chemotaxis as a mechanism for recruitment of leukocytes into the heart. Understanding which mechanisms epicardial cells employ to establish a functional epicardium and how they communicate with other cardiovascular cell types during development will bring us closer to repairing cellular relationships that are disrupted during cardiovascular disease.
心外膜在心脏发育、稳态和修复过程中至关重要,但对于其基础细胞生物学的基本认识,特别是心外膜的形成、谱系异质性以及与心脏中其他细胞类型的功能相互作用,目前还很缺乏。在这项研究中,我们研究了斑马鱼心脏发育过程中心外膜的异质性和离散心外膜亚群的功能多样性。单细胞 RNA 测序揭示了具有特定遗传程序和独特空间分布的三个心外膜亚群。对独特基因特征的干扰揭示了每个亚群的特定功能,并确定了心外膜在细胞黏附、迁移和趋化作用中的作用,这是将白细胞募集到心脏的一种机制。了解心外膜细胞采用哪些机制来建立功能性的心外膜,以及它们在发育过程中如何与其他心血管细胞类型进行通信,将使我们更接近于修复在心血管疾病中受到破坏的细胞关系。