Kulikauskas Molly R, Oatley Morgan, Yu Tianji, Liu Ziqing, Matsumura Lauren, Kidder Elise, Ruter Dana, Bautch Victoria L
Cell Biology and Physiology Curriculum, The University of North Carolina, Chapel Hill, NC USA.
Department of Biology, The University of North Carolina, Chapel Hill, NC USA.
bioRxiv. 2023 Mar 25:2023.03.23.534007. doi: 10.1101/2023.03.23.534007.
BMP signaling is critical to blood vessel formation and function, but how pathway components regulate vascular development is not well-understood. Here we find that inhibitory SMAD6 functions in endothelial cells to negatively regulate ALK1/ACVRL1-mediated responses, and it is required to prevent vessel dysmorphogenesis and hemorrhage in the embryonic liver vasculature. Reduced gene dosage rescued embryonic hepatic hemorrhage and microvascular capillarization induced by deletion in endothelial cells . At the cellular level, co-depletion of Smad6 and Alk1 rescued the destabilized junctions and impaired barrier function of endothelial cells depleted for SMAD6 alone. At the mechanistic level, blockade of actomyosin contractility or increased PI3K signaling rescued endothelial junction defects induced by SMAD6 loss. Thus, SMAD6 normally modulates ALK1 function in endothelial cells to regulate PI3K signaling and contractility, and SMAD6 loss increases signaling through ALK1 that disrupts endothelial junctions. ALK1 loss-of-function also disrupts vascular development and function, indicating that balanced ALK1 signaling is crucial for proper vascular development and identifying ALK1 as a "Goldilocks" pathway in vascular biology regulated by SMAD6.
骨形态发生蛋白(BMP)信号传导对于血管形成和功能至关重要,但该信号通路的组成部分如何调节血管发育尚不清楚。在此,我们发现抑制性SMAD6在内皮细胞中发挥作用,对ALK1/激活素受体样激酶1(ACVRL1)介导的反应起负调节作用,并且它是防止胚胎肝血管系统中血管畸形发生和出血所必需的。基因剂量减少可挽救因内皮细胞中基因缺失而诱导的胚胎肝出血和微血管毛细血管化。在细胞水平上,Smad6和Alk1的共同缺失挽救了仅缺失SMAD6的内皮细胞中不稳定的连接和受损的屏障功能。在机制层面,肌动球蛋白收缩性的阻断或磷脂酰肌醇-3-激酶(PI3K)信号传导的增加挽救了由SMAD6缺失诱导的内皮连接缺陷。因此,SMAD6通常在内皮细胞中调节ALK1功能,以调节PI3K信号传导和收缩性,而SMAD6的缺失会增加通过ALK1的信号传导,从而破坏内皮连接。ALK1功能丧失也会破坏血管发育和功能,这表明平衡的ALK1信号传导对于正常的血管发育至关重要,并将ALK1确定为血管生物学中受SMAD6调节的“恰到好处”的信号通路。