Burdon-Sanderson Cardiac Science Centre, Department of Physiology, Anatomy and Genetics, University of Oxford, Oxford OX1 3PT, UK.
British Heart Foundation - Oxbridge Centre of Regenerative Medicine, CRM, University of Oxford, Oxford OX1 3PT, UK.
Development. 2021 May 1;148(9). doi: 10.1242/dev.197525. Epub 2021 May 10.
During heart development, epicardial cells residing within the outer layer undergo epithelial-mesenchymal transition (EMT) and migrate into the underlying myocardium to support organ growth and morphogenesis. Disruption of epicardial EMT results in embryonic lethality, yet its regulation is poorly understood. Here, we report epicardial EMT within the mesothelial layer of the mouse embryonic heart at ultra-high resolution using scanning electron microscopy combined with immunofluorescence analyses. We identified morphologically active EMT regions that associated with key components of the extracellular matrix, including the basement membrane-associated proteoglycan agrin. Deletion of agrin resulted in impaired EMT and compromised development of the epicardium, accompanied by downregulation of Wilms' tumor 1. Agrin enhanced EMT in human embryonic stem cell-derived epicardial-like cells by decreasing β-catenin and promoting pFAK localization at focal adhesions, and promoted the aggregation of dystroglycan within the Golgi apparatus in murine epicardial cells. Loss of agrin resulted in dispersal of dystroglycan in vivo, disrupting basement membrane integrity and impairing EMT. Our results provide new insights into the role of the extracellular matrix in heart development and implicate agrin as a crucial regulator of epicardial EMT.
在心脏发育过程中,位于外层的心外膜细胞经历上皮-间充质转化(EMT)并迁移到下面的心肌中,以支持器官生长和形态发生。心外膜 EMT 的破坏会导致胚胎致死,但它的调节机制还知之甚少。在这里,我们使用扫描电子显微镜结合免疫荧光分析,在超高分辨率下报告了小鼠胚胎心脏的心外膜层内的 EMT。我们鉴定了形态活跃的 EMT 区域,这些区域与细胞外基质的关键成分相关,包括与基底膜相关的蛋白聚糖层粘连蛋白。层粘连蛋白的缺失导致 EMT 受损,心外膜发育不良,并伴有 Wilms 肿瘤 1 的下调。层粘连蛋白通过降低β-catenin 并促进粘着斑处的 pFAK 定位,增强人胚胎干细胞衍生的心外膜样细胞中的 EMT,并促进鼠心外膜细胞中高尔基体内的 dystroglycan 聚集。层粘连蛋白的缺失导致 dystroglycan 在体内弥散,破坏基底膜完整性并损害 EMT。我们的结果提供了对细胞外基质在心脏发育中的作用的新见解,并表明层粘连蛋白是心外膜 EMT 的关键调节剂。