神经传递
突触小泡
突触蛋白
突触囊泡循环
兴奋性突触后电位
神经科学
胞吐
生物
细胞生物学
中棘神经元
神经递质
细胞神经科学
突触可塑性
神经促进
LRRK2
突触疲劳
突触增强
神经递质药
分子神经科学
运动前神经元活动
化学
神经科学家
电生理学
长时程增强
突触体
信号转导
调节器
突触
基因剔除小鼠
拉布
多巴胺
GTP酶
神经元
抑制性突触后电位
去极化
作者
Xingjian Li,Yuanxin Chen,Huaixing Wang,Xue Zhang,Noah Guy Lewis Guiberson,Xianting Li,Jacqueline Burré,Junmin Peng,Hui Zhang,Zhenyu Yue
标识
DOI:10.1038/s41531-026-01353-4
摘要
RAB12 is a small GTPase and a validated substrate of LRRK2, a kinase genetically linked to Parkinson's disease (PD). While RAB12-LRRK2 signaling has been implicated in ciliogenesis and immune regulation, the neuronal function of RAB12 remains largely unexplored. Here, we investigated the role of RAB12 in synaptic physiology using Rab12 knockout (KO) mice. Rab12 KO mice developed normally but exhibited increased locomotor activity in adulthood. Electrophysiological recordings from striatal slices revealed enhanced presynaptic release probability and increased excitatory drive onto medium spiny neurons. Consistently, live-cell imaging of cultured cortical neurons revealed that Rab12 deletion facilitated, while Rab12 overexpression inhibited, synaptic vesicle exocytosis. Biochemical fractionation showed enrichment of RAB12 in synaptic vesicle-associated fractions containing presynaptic components. Proteomic analysis of Rab12 KO striatal synaptosomes further identified alterations in proteins involved in synaptic membrane trafficking pathways. Together, these findings establish RAB12 as a negative regulator of synaptic vesicle exocytosis and excitatory neurotransmission in vivo. Our study defines a physiological role for RAB12 in synaptic function and provides a basis for future investigation into how LRRK2-dependent RAB12 signaling may contribute to neuronal dysfunction in PD.
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