Patronin/CAMSAP promotes reactivation and regeneration of Drosophila quiescent neural stem cells

Author:

Gujar Mahekta R1ORCID,Gao Yang1ORCID,Teng Xiang2,Ding Wei Yung1,Lin Jiaen1,Tan Ye Sing1,Chew Liang Yuh1,Toyama Yusuke23,Wang Hongyan145ORCID

Affiliation:

1. Neuroscience and Behavioral Disorders Programme Duke‐NUS Medical School Singapore Singapore

2. Mechanobiology Institute Singapore Singapore

3. Department of Biological Sciences National University of Singapore Singapore Singapore

4. Department of Physiology, Yong Loo Lin School of Medicine National University of Singapore Singapore Singapore

5. Integrative Sciences and Engineering Programme National University of Singapore Singapore Singapore

Abstract

AbstractThe ability of stem cells to switch between quiescent and proliferative states is crucial for maintaining tissue homeostasis and regeneration. Drosophila quiescent neural stem cells (qNSCs) extend a primary protrusion that is enriched in acentrosomal microtubules and can be regenerated upon injury. Arf1 promotes microtubule growth, reactivation (exit from quiescence), and regeneration of qNSC protrusions upon injury. However, how Arf1 is regulated in qNSCs remains elusive. Here, we show that the microtubule minus‐end binding protein Patronin/CAMSAP promotes acentrosomal microtubule growth and quiescent NSC reactivation. Patronin is important for the localization of Arf1 at Golgi and physically associates with Arf1, preferentially with its GDP‐bound form. Patronin is also required for the regeneration of qNSC protrusion, likely via the regulation of microtubule growth. Finally, Patronin functions upstream of Arf1 and its effector Msps/XMAP215 to target the cell adhesion molecule E‐cadherin to NSC‐neuropil contact sites during NSC reactivation. Our findings reveal a novel link between Patronin/CAMSAP and Arf1 in the regulation of microtubule growth and NSC reactivation. A similar mechanism might apply to various microtubule‐dependent systems in mammals.

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Molecular Biology,Biochemistry

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Homemade: building the structure of the neurogenic niche;Frontiers in Cell and Developmental Biology;2023-12-01

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