纤毛形成
中心体
纤毛
细胞生物学
平衡
生物
小学(天文学)
LRRK2
星形胶质细胞
细胞
神经科学
遗传学
基因
物理
突变
细胞周期
中枢神经系统
天文
作者
Xingjian Li,Hanwen Zhu,Bik Tzu Huang,Xianting Li,Hee‐Soo Kim,Haiyan Tan,Yuanxi Zhang,Insup Choi,Junmin Peng,Pingyi Xu,Ji Sun,Zhenyu Yue
标识
DOI:10.1038/s41467-024-52723-6
摘要
The leucine-rich repeat kinase 2 (LRRK2) phosphorylates a subset of RAB GTPases, and their phosphorylation levels are elevated by Parkinson's disease (PD)-linked mutations of LRRK2. However, the precise function of the LRRK2-regulated RAB GTPase in the brain remains to be elucidated. Here, we identify RAB12 as a robust LRRK2 substrate in the mouse brain through phosphoproteomics profiling and solve the structure of RAB12-LRRK2 protein complex through Cryo-EM analysis. Mechanistically, RAB12 cooperates with LRRK2 to inhibit primary ciliogenesis and regulate centrosome homeostasis in astrocytes through enhancing the phosphorylation of RAB10 and recruiting RILPL1, while the functions of RAB12 require a direct interaction with LRRK2 and LRRK2 activity. Furthermore, the ciliary and centrosome defects caused by the PD-linked LRRK2-G2019S mutation are prevented by Rab12 deletion in astrocytes. Thus, our study reveals a physiological function of the RAB12-LRRK2 complex in regulating ciliogenesis and centrosome homeostasis. The RAB12-LRRK2 structure offers a guidance in the therapeutic development of PD by targeting the RAB12-LRRK2 interaction.
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