SNX14 deficiency-induced defective axonal mitochondrial transport in Purkinje cells underlies cerebellar ataxia and can be reversed by valproate

Author:

Zhang Hongfeng1,Hong Yujuan1,Yang Weijie1,Wang Ruimin1,Yao Ting1,Wang Jian1,Liu Ke2,Yuan Huilong1,Xu Chaoqun2,Zhou Yuanyuan1,Li Guanxian1,Zhang Lishan1,Luo Hong1,Zhang Xian1,Du Dan3,Sun Hao1,Zheng Qiuyang1,Zhang Yun-Wu1,Zhao Yingjun1,Zhou Ying2,Xu Huaxi1,Wang Xin1ORCID

Affiliation:

1. State Key Laboratory of Cellular Stress Biology, Fujian Provincial Key Laboratory of Neurodegenerative Disease and Aging Research, Institute of Neuroscience, School of Medicine, Xiamen University, Xiamen 361102, China

2. National Institute for Data Science in Health and Medicine, School of Medicine, Xiamen University, Xiamen 361102, China

3. Cancer Research Center, Department of Stomatology, School of Medicine, Xiamen University, Xiamen 361102, China

Abstract

Abstract Loss-of-function mutations in sorting nexin 14 (SNX14) cause autosomal recessive spinocerebellar ataxia 20, which is a form of early-onset cerebellar ataxia that lacks molecular mechanisms and mouse models. We generated Snx14-deficient mouse models and observed severe motor deficits and cell-autonomous Purkinje cell degeneration. SNX14 deficiency disrupted microtubule organization and mitochondrial transport in axons by destabilizing the microtubule-severing enzyme spastin, which is implicated in dominant hereditary spastic paraplegia with cerebellar ataxia, and compromised axonal integrity and mitochondrial function. Axonal transport disruption and mitochondrial dysfunction further led to degeneration of high-energy-demanding Purkinje cells, which resulted in the pathogenesis of cerebellar ataxia. The antiepileptic drug valproate ameliorated motor deficits and cerebellar degeneration in Snx14-deficient mice via the restoration of mitochondrial transport and function in Purkinje cells. Our study revealed an unprecedented role for SNX14-dependent axonal transport in cerebellar ataxia, demonstrated the convergence of SNX14 and spastin in mitochondrial dysfunction, and suggested valproate as a potential therapeutic agent.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Natural Science Foundation of Fujian Province

Fundamental Research Funds of China West Normal University

Publisher

Oxford University Press (OUP)

Subject

Multidisciplinary

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