ZFYVE21 promotes endothelial nitric oxide signaling and vascular barrier function in the kidney during aging

一氧化氮 调节器 内体 功能(生物学) 体内 细胞生物学 内皮 肾功能 势垒函数 医学 化学 内分泌学 生物 生物化学 生物技术 细胞内 基因
作者
Quan Jiang,Guiyu Song,Liying He,Xue Li,Bo Jiang,Qianxun Wang,Shaoxun Wang,Catherine Kim,Mahsa Nouri Barkestani,Roberto Lopez,Matthew Fan,Kujani Wanniarachchi,Maya Quaranta,Xuefei Tian,Arya Mani,Anjelica L. Gonzalez,Julie E. Goodwin,William C. Sessa,Shuta Ishibe,Dan Jane‐wit
出处
期刊:Kidney International [Elsevier BV]
卷期号:106 (3): 419-432 被引量:9
标识
DOI:10.1016/j.kint.2024.05.007
摘要

ZFYVE21 is an ancient, endosome-associated protein that is highly expressed in endothelial cells (ECs) but whose function(s) in vivo are undefined. Here, we identified ZFYVE21 as an essential regulator of vascular barrier function in the aging kidney. ZFYVE21 levels significantly decline in ECs in aged human and mouse kidneys. To investigate attendant effects, we generated EC-specific ZFVYE21-/- reporter mice. These knockout mice developed accelerated aging phenotypes including reduced endothelial nitric oxide (ENOS) activity, failure to thrive, and kidney insufficiency. Kidneys from ZFYVE21 EC-/- mice showed interstitial edema and glomerular EC injury. ZFYVE21-mediated phenotypes were not programmed developmentally as loss of ZFYVE21 in ECs during adulthood phenocopied its loss prenatally, and a nitric oxide donor normalized kidney function in adult hosts. Using live cell imaging and human kidney organ cultures, we found that in a GTPase Rab5- and protein kinase Akt-dependent manner, ZFYVE21 reduced vesicular levels of inhibitory caveolin-1 and promoted transfer of Golgi-derived ENOS to a perinuclear Rab5+ vesicular population to functionally sustain ENOS activity. Thus, our work defines a ZFYVE21- mediated trafficking mechanism sustaining ENOS activity and demonstrates the relevance of this pathway for maintaining kidney function with aging.
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