科研速览继续刷下去 →
◆ Advanced science (Weinheim, Baden-Wurttemberg, Germany)2026-08-27

An RNA-Binding Protein RBMS1 Promotes Endothelial Cell Autophagy to Maintain Vascular Homeostasis and Suppress Deep Vein Thrombosis.

Chu Chu, Xinkui Liu, Nannan Fan, Xiaoyan Yu, Qiaoqiao Han, Yunhong Zhang, Wei Li, Yongqing Cai, Miaomiao Zhou, Fang Li, Feifei Shi, Zhen Zhang, Bin Wang, Xia Li

一句话结论

Collectively, our findings in the IVC stenosis-induced DVT model demonstrate that RBMS1 regulates ATG3 to maintain vascular endothelial integrity, providing a mechanistic basis for further evaluation of RBMS1 in DVT intervention.

原始摘要(原文)
Deep vein thrombosis (DVT) is a prevalent vascular disorder characterized by aberrant coagulation within the deep venous system, and the roles of RNA-binding proteins (RBPs) in its pathogenesis remain largely undefined. Herein, using a murine inferior vena cava (IVC) stenosis model, we identify RNA-binding motif single-stranded interacting protein 1 (RBMS1) as a previously unrecognized regulator of DVT progression via the modulation of vascular endothelial cell (VEC) autophagy. By utilizing endothelial cell-conditional Rbms1 knockout mice, we demonstrate that RBMS1 deficiency exacerbates thrombus formation and impairs VEC function. Mechanistically, RBMS1 associates with autophagy-related 3 (ATG3) mRNA through its 3'-untranslated region (3'-UTR) and enhances its stability, thereby promoting autophagic flux in VECs. RBMS1 depletion destabilizes ATG3 mRNA, leading to suppressed autophagy and compromised endothelial homeostasis. Conversely, ATG3 overexpression rescues autophagy impairment and mitigates thrombotic phenotypes upon RBMS1 depletion. Collectively, our findings in the IVC stenosis-induced DVT model demonstrate that RBMS1 regulates ATG3 to maintain vascular endothelial integrity, providing a mechanistic basis for further evaluation of RBMS1 in DVT intervention.
读原文 ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文

An RNA-Binding Protein RBMS1 Promotes Endothelial Cell Autophagy to Maintain Vascular Homeostasis and Suppress Deep Vein Thrombosis. — 科研速览 Science Skim