Center for Birth Defects Research,Department of Obstetrics, Gynecology & Reproductive Sciences, University of Maryland School of Medicine, Baltimore, MD, USA; College of Dental Medicine, Columbia University in the City of New York, New York, NY, USA.
College of Dental Medicine, Columbia University in the City of New York, New York, NY, USA.
Dev Biol. 2021 Sep;477:241-250. doi: 10.1016/j.ydbio.2021.05.011. Epub 2021 May 27.
A critical cell type participating in cardiac outflow tract development is a subpopulation of the neural crest cells, the cardiac neural crest cells (NCCs), whose defect causes a spectrum of cardiovascular abnormalities. Accumulating evidence indicates that mTOR, which belongs to the PI3K-related kinase family and impacts multiple signaling pathways in a variety of contexts, plays a pivotal role for NCC development. Here, we investigated functional roles of mTOR for cardiac neural crest development using several lines of mouse genetic models. We found that disruption of mTOR caused NCC defects and failure of cardiac outflow tract separation, which resulted in a spectrum of cardiac defects including persistent truncus arteriosus, ventricular septal defect and ventricular wall defect. Specifically, mutant neural crest cells showed reduced migration into the cardiac OFT and prematurely exited the cell cycle. A number of critical factors and fundamental signaling pathways, which are important for neural crest and cardiomyocyte development, were impaired. Moreover, actin dynamics was disrupted by mTOR deletion. Finally, by phenotyping the neural crest Rptor and Rictor knockout mice respectively, we demonstrate that mTOR acts principally through the mTORC1 pathway for cardiac neural crest cells. Altogether, these data established essential roles of mTOR for cardiac NCC development and imply that dysregulation of mTOR in NCCs may underline a spectrum of cardiac defects.
参与心流出道发育的关键细胞类型是神经嵴细胞的一个亚群,即心脏神经嵴细胞(cardiac neural crest cells,NCCs),其缺陷会导致一系列心血管异常。越来越多的证据表明,mTOR 属于 PI3K 相关激酶家族,在多种情况下影响多种信号通路,对 NCC 发育起着关键作用。在这里,我们使用几种小鼠遗传模型研究了 mTOR 对心脏神经嵴发育的功能作用。我们发现,mTOR 的破坏导致 NCC 缺陷和心流出道分离失败,导致一系列心脏缺陷,包括永存动脉干、室间隔缺损和心室壁缺损。具体而言,突变的神经嵴细胞显示出向心脏 OFT 的迁移减少,并过早退出细胞周期。许多对神经嵴和心肌细胞发育很重要的关键因子和基本信号通路受到损害。此外,肌动蛋白动力学也被 mTOR 缺失破坏。最后,通过分别表型分析神经嵴 Rptor 和 Rictor 基因敲除小鼠,我们证明 mTOR 主要通过 mTORC1 通路对心脏神经嵴细胞起作用。总之,这些数据确立了 mTOR 对心脏 NCC 发育的重要作用,并暗示 NCC 中 mTOR 的失调可能是一系列心脏缺陷的基础。