He Jia, Blazeski Adriana, Nilanthi Uthayanan, Menéndez Javier, Pirani Samuel C, Levic Daniel S, Bagnat Michel, Singh Manvendra K, Raya José G, García-Cardeña Guillermo, Torres-Vázquez Jesús
Department of Cell Biology, NYU Grossman School of Medicine, New York, NY 10016, USA.
Center for Excellence in Vascular Biology, Department of Pathology, Brigham and Women's Hospital, Boston, MA, USA and Harvard Medical School, Boston, MA, USA.
bioRxiv. 2024 Jan 25:2024.01.24.576555. doi: 10.1101/2024.01.24.576555.
The cardiovascular system generates and responds to mechanical forces. The heartbeat pumps blood through a network of vascular tubes, which adjust their caliber in response to the hemodynamic environment. However, how endothelial cells in the developing vascular system integrate inputs from circulatory forces into signaling pathways to define vessel caliber is poorly understood. Using vertebrate embryos and -assembled microvascular networks of human endothelial cells as models, flow and genetic manipulations, and custom software, we reveal that Plexin-D1, an endothelial Semaphorin receptor critical for angiogenic guidance, employs its mechanosensing activity to serve as a crucial positive regulator of the Dorsal Aorta's (DA) caliber. We also uncover that the flow-responsive transcription factor KLF2 acts as a paramount mechanosensitive effector of Plexin-D1 that enlarges endothelial cells to widen the vessel. These findings illuminate the molecular and cellular mechanisms orchestrating the interplay between cardiovascular development and hemodynamic forces.
心血管系统产生并对机械力作出反应。心跳通过血管网络泵血,血管会根据血液动力学环境调整其管径。然而,发育中的血管系统中的内皮细胞如何将循环力的输入整合到信号通路中以确定血管管径,目前还知之甚少。我们以脊椎动物胚胎和人内皮细胞组装的微血管网络为模型,通过流动和基因操作以及定制软件,揭示了血管生成引导关键的内皮信号素受体丛蛋白D1(Plexin-D1)利用其机械传感活性作为背主动脉(DA)管径的关键正向调节因子。我们还发现,血流反应性转录因子KLF2是Plexin-D1最重要的机械敏感效应器,它可使内皮细胞增大从而扩宽血管。这些发现阐明了协调心血管发育与血液动力学力之间相互作用的分子和细胞机制。