The Spermine Oxidase/Spermine Axis Coordinates ATG5‐Mediated Autophagy to Orchestrate Renal Senescence and Fibrosis

Author:

Luo Dan12,Lu Xiaohui1,Li Hongyu1,Li Yi1,Wang Yating1,Jiang Simin1,Li Guanglan1,Xu Yiping1,Wu Kefei1,Dou Xianrui2,Liu Qinghua1,Chen Wei1,Zhou Yi1,Mao Haiping1ORCID

Affiliation:

1. Department of Nephrology The First Affiliated Hospital Sun Yat‐sen University NHC Key Laboratory of Clinical Nephrology Guangdong Provincial Key Laboratory of Nephrology Guangzhou Guangdong 510080 China

2. Department of Nephrology Shunde Hospital Southern Medical University (The First People's Hospital of Shunde) Foshan Guangdong 528308 China

Abstract

AbstractDecreased plasma spermine levels are associated with kidney dysfunction. However, the role of spermine in kidney disease remains largely unknown. Herein, it is demonstrated that spermine oxidase (SMOX), a key enzyme governing polyamine metabolism, is predominantly induced in tubular epithelium of human and mouse fibrotic kidneys, alongside a reduction in renal spermine content in mice. Moreover, renal SMOX expression is positively correlated with kidney fibrosis and function decline in patients with chronic kidney disease. Importantly, supplementation with exogenous spermine or genetically deficient SMOX markedly improves autophagy, reduces senescence, and attenuates fibrosis in mouse kidneys. Further, downregulation of ATG5, a critical component of autophagy, in tubular epithelial cells enhances SMOX expression and reduces spermine in TGF‐β1‐induced fibrogenesis in vitro and kidney fibrosis in vivo. Mechanically, ATG5 readily interacts with SMOX under physiological conditions and in TGF‐β1‐induced fibrogenic responses to preserve cellular spermine levels. Collectively, the findings suggest SMOX/spermine axis is a potential novel therapy to antagonize renal fibrosis, possibly by coordinating autophagy and suppressing senescence.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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