Tian Xiaoxue, Kan Hao, Yang Liu, Wang Zhiwei, Zhang Tiantian, Zhang Ka, Mao Aiqin, Wen Xin, Zhou Tingting, Wang Xiaoyan, Zhang Xiaodong, Feng Lei, Geng Li
Wuxi School of Medicine, Jiangnan University, Wuxi, China.
Department of Cardiology, The Affiliated Hospital of Jiangnan University, Wuxi, China.
Aging Cell. 2025 May;24(5):e14469. doi: 10.1111/acel.14469. Epub 2025 Jan 2.
Endothelial dysfunction, characterized by a decline in endothelial physiological functions, is a significant aspect of cardiovascular aging, contributing notably to arterial stiffness, atherosclerosis, and hypertension. Transient receptor potential channel V4 (TRPV4), a key member of Ca-permeable channels, plays a crucial role in maintaining vascular functions. However, the role and mechanisms of TRPV4 in aging-related endothelial dysfunction remain incompletely understood. Here, we demonstrated a marked reduction in endothelial TRPV4 function without alterations in its expression, leading to abnormal endothelial Ca signaling and impaired vasodilation in aging mesenteric arteries. Employing transcriptome sequencing, co-IP, and PLA assays, we characterized G protein-coupled receptor 35 (GPR35) interacting with TRPV4, and abnormally enhanced interactions were found in aging endothelial cells. Subsequently, we revealed that intensive GPR35-TRPV4 interaction significantly contributes to endothelial dysfunction during aging, utilizing TRPV4 endothelial-specific knockout (TRPV4 ), AAV-FLT1-shRNA (GPR35) mice, and GPR35 overexpressed/knocked-down HUVECs. Furthermore, molecular docking analysis and subsequent co-IP and pressure myograph experiments indicated that both Thonningianin A and Carfilzomib efficiently restored the GPR35-TRPV4 interaction, preventing endothelial dysfunction and vasodilation impairment. Our study identifies the crucial role of GPR35-TRPV4 interaction in aging-associated abnormal endothelial function and vascular tone modulation. Restoring GPR35-TRPV4 interaction via Thonningianin A or Carfilzomib represents a promising precision approach for aging-related endothelial dysfunction.
内皮功能障碍,其特征为内皮生理功能下降,是心血管衰老的一个重要方面,对动脉僵硬、动脉粥样硬化和高血压有显著影响。瞬时受体电位通道V4(TRPV4)是钙通透通道的关键成员,在维持血管功能中起关键作用。然而,TRPV4在衰老相关内皮功能障碍中的作用和机制仍未完全了解。在此,我们证明衰老肠系膜动脉中内皮TRPV4功能显著降低,但其表达未改变,导致内皮钙信号异常和血管舒张受损。通过转录组测序、免疫共沉淀(co-IP)和邻近连接分析(PLA)实验,我们鉴定出G蛋白偶联受体35(GPR35)与TRPV4相互作用,且在衰老内皮细胞中发现这种相互作用异常增强。随后,利用TRPV4内皮特异性敲除(TRPV4 -/-)小鼠、AAV-FLT1-shRNA(GPR35)小鼠以及过表达/敲低GPR35的人脐静脉内皮细胞(HUVECs),我们揭示GPR35与TRPV4的强烈相互作用在衰老过程中显著导致内皮功能障碍。此外,分子对接分析以及随后的免疫共沉淀和压力肌动描记实验表明,托宁宁A和卡非佐米均能有效恢复GPR35与TRPV4的相互作用,防止内皮功能障碍和血管舒张受损。我们的研究确定了GPR35与TRPV4相互作用在衰老相关的异常内皮功能和血管张力调节中的关键作用。通过托宁宁A或卡非佐米恢复GPR35与TRPV4的相互作用,代表了一种针对衰老相关内皮功能障碍的有前景的精准方法。