Excessive STAU1 condensate drives mTOR translation and autophagy dysfunction in neurodegeneration

Author:

Zhao Ruiqian1ORCID,Huang Shijing1ORCID,Li Jingyu1ORCID,Gu Aihong1ORCID,Fu Minjie1ORCID,Hua Wei1ORCID,Mao Ying1ORCID,Lei Qun-Ying2ORCID,Lu Boxun3ORCID,Wen Wenyu1ORCID

Affiliation:

1. Fudan University 1 Department of Neurosurgery, Huashan Hospital, The Shanghai Key Laboratory of Medical Epigenetics, State Key Laboratory of Medical Neurobiology and MOE Frontiers Center for Brain Science, Institutes of Biomedical Sciences, School of Basic Medical Sciences, , Shanghai, China

2. Fudan University 2 Fudan University Shanghai Cancer Center and Institutes of Biomedical Sciences, Shanghai Medical College, , Shanghai, China

3. Fudan University 3 State Key Laboratory of Medical Neurobiology and MOE Frontiers Center for Brain Science, New Cornerstone Science Laboratory, School of Life Sciences, , Shanghai, China

Abstract

The double-stranded RNA-binding protein Staufen1 (STAU1) regulates a variety of physiological and pathological events via mediating RNA metabolism. STAU1 overabundance was observed in tissues from mouse models and fibroblasts from patients with neurodegenerative diseases, accompanied by enhanced mTOR signaling and impaired autophagic flux, while the underlying mechanism remains elusive. Here, we find that endogenous STAU1 forms dynamic cytoplasmic condensate in normal and tumor cell lines, as well as in mouse Huntington’s disease knockin striatal cells. STAU1 condensate recruits target mRNA MTOR at its 5′UTR and promotes its translation both in vitro and in vivo, and thus enhanced formation of STAU1 condensate leads to mTOR hyperactivation and autophagy–lysosome dysfunction. Interference of STAU1 condensate normalizes mTOR levels, ameliorates autophagy–lysosome function, and reduces aggregation of pathological proteins in cellular models of neurodegenerative diseases. These findings highlight the importance of balanced phase separation in physiological processes, suggesting that modulating STAU1 condensate may be a strategy to mitigate the progression of neurodegenerative diseases with STAU1 overabundance.

Funder

Ministry of Science and Technology of China

National Natural Science Foundation of China

Publisher

Rockefeller University Press

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