自噬
细胞生物学
小型GTPase
基因沉默
内体
癌症研究
RAC1
血管生成
内皮干细胞
内皮
下调和上调
肺动脉高压
生物
内皮功能障碍
化学
内科学
医学
信号转导
内分泌学
细胞凋亡
生物化学
基因
细胞内
体外
作者
Bryce Piper,Srimathi Bogamuwa,Tanvir Hossain,Daniela Farkas,Lorena Rosas,Adam Green,Geoffrey Newcomb,Nuo Sun,Jeffrey C. Horowitz,A.R. Bhagwani,Hu Yang,Tatiana V. Kudryashova,Mauricio Rojas,Ana L. Mora,Pearlly S. Yan,Rama K. Mallampalli,Elena A. Goncharova,David M. Eckmann,László Farkas
标识
DOI:10.1101/2023.02.03.526842
摘要
ABSTRACT Pulmonary arterial hypertension (PAH) is a devastating and progressive disease with limited treatment options. Endothelial dysfunction plays a central role in development and progression of PAH, yet the underlying mechanisms are incompletely understood. The endosome-lysosome system is important to maintain cellular health and the small GTPase RAB7 regulates many functions of this system. Here, we explored the role of RAB7 in endothelial cell (EC) function and lung vascular homeostasis. We found reduced expression of RAB7 in ECs from PAH patients. Endothelial haploinsufficiency of RAB7 caused spontaneous PH in mice. Silencing of RAB7 in ECs induced broad changes in gene expression revealed via RNA sequencing and RAB7 silenced ECs showed impaired angiogenesis, expansion of a senescent cell fraction, combined with impaired endolysosomal trafficking and degradation, which suggests inhibition of autophagy at the pre-degradation level. Further, mitochondrial membrane potential and oxidative phosphorylation were decreased, and glycolysis was enhanced. Treatment with the RAB7 activator ML-098 reduced established PH in chronic hypoxia/SU5416 rats. In conclusion, we demonstrate here for the first time the fundamental impairment of EC function by loss of RAB7 that leads to PH and show RAB7 activation as a potential therapeutic strategy in a preclinical model of PH.
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