USP25 inhibition ameliorates Parkinson’s disease by restoring mitophagy

Y Yanqi Xu (School of Pharmaceutical Sciences, Wenzhou Medical University) K Keshuo Jin (School of Pharmaceutical Sciences, Wenzhou Medical University) J Jiaqing Chen (School of Pharmaceutical Sciences, Wenzhou Medical University) Z Zhongding Li (Oujiang Laboratory (Zhejiang Lab for Regenerative Medicine, Vision and Brain Health)) Z Zhenhu Zhu (School of Pharmaceutical Sciences, Wenzhou Medical University) X Xian Su (School of Pharmaceutical Sciences, Wenzhou Medical University) J Jiangyun Shen (School of Pharmaceutical Sciences, Wenzhou Medical University) B Bincheng Zhou (School of Pharmaceutical Sciences, Wenzhou Medical University) Z Zijun Cao (School of Pharmaceutical Sciences, Wenzhou Medical University) L Liyan Lou (School of Pharmaceutical Sciences, Wenzhou Medical University) D Deyu Deng (School of Pharmaceutical Sciences, Wenzhou Medical University) J Jianzhao Zhang (School of Pharmaceutical Sciences, Wenzhou Medical University) B Baohua Liu Y Yangping Shentu (Department of Pathology, The First Affiliated Hospital of Wenzhou Medical University) X Xu Wang

Abstract

Parkinson’s disease (PD) is a progressive neurodegenerative disease that casts a significant shadow over global health and the identification of therapeutic targets for PD will empower more effective clinical treatment. The gene encoding the deubiquitinating enzyme USP25 has been identified as a susceptible locus for PD, but the role of USP25 in PD remains unknown. In this study, we found that USP25 exacerbated dopaminergic neuronal loss and motor deficits in murine models of PD by sabotaging the mitophagy machinery. USP25 physically interacted with the autophagy receptor optineurin and disrupted its linkage with K63-specific polyubiquitin chains, leading to impaired mitophagy and the accumulation of damaged mitochondria. Genetic ablation or pharmacological inhibition of USP25 significantly restored mitophagy and thereby impeded the neurodegenerative progression in PD model mice. Collectively, our results unravel a pivotal role of USP25 in PD and identify USP25 as a pharmacological target for the development of PD drugs.

Article Details

Volume / Issue Vol. 123, Issue 2
Published January 13, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (15)

Y

Yanqi Xu

School of Pharmaceutical Sciences, Wenzhou Medical University

K

Keshuo Jin

School of Pharmaceutical Sciences, Wenzhou Medical University

J

Jiaqing Chen

School of Pharmaceutical Sciences, Wenzhou Medical University

Z

Zhongding Li

Oujiang Laboratory (Zhejiang Lab for Regenerative Medicine, Vision and Brain Health)

Z

Zhenhu Zhu

School of Pharmaceutical Sciences, Wenzhou Medical University

X

Xian Su

School of Pharmaceutical Sciences, Wenzhou Medical University

J

Jiangyun Shen

School of Pharmaceutical Sciences, Wenzhou Medical University

B

Bincheng Zhou

School of Pharmaceutical Sciences, Wenzhou Medical University

Z

Zijun Cao

School of Pharmaceutical Sciences, Wenzhou Medical University

L

Liyan Lou

School of Pharmaceutical Sciences, Wenzhou Medical University

D

Deyu Deng

School of Pharmaceutical Sciences, Wenzhou Medical University

J

Jianzhao Zhang

School of Pharmaceutical Sciences, Wenzhou Medical University

B

Baohua Liu

Y

Yangping Shentu

Department of Pathology, The First Affiliated Hospital of Wenzhou Medical University

X

Xu Wang