Presynaptic Endosomal Cathepsin D Regulates the Biogenesis of GABAergic Synaptic Vesicles

突触前内体组织蛋白酶 D 调节 GABA 能突触小泡的生物合成

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作者:Xia Li, Liming Qin, Yefei Li, Hao Yu, Zhijun Zhang, Changlu Tao, Yijun Liu, Yanhong Xue, Xiaoxing Zhang, Zhenghao Xu, Yi Wang, Huifang Lou, Zhibin Tan, Paul Saftig, Zhong Chen, Tao Xu, Guoqiang Bi, Shumin Duan, Zhihua Gao

Abstract

Presynaptic endosomes reportedly participate in synaptic vesicle (SV) recycling. However, it remains unclear whether they differentially regulate SV biogenesis and synaptic transmission in different types of synapses and how they are implicated in diseases. Using cryo-electron tomography and endocytic tracing, we uncover different endocytic modes and dynamics associated with distinct SV morphology between glutamatergic and GABAergic synapses. We further find that cathepsin D (CatD), a lysosomal storage disease (LSD) protein, is selectively located in GABAergic presynaptic endosomes. Inactivation of CatD results in enlarged presynaptic endosomes, reduces the readily releasable pool, and impairs synaptic transmission in GABAergic, but not glutamatergic, synapses. Moreover, CatD-deficient mice exhibit hyperactivity and increased sensitivity to seizure, mimicking epileptic behavior in CatD-related LSD patients. These data reveal an important role for presynaptic endosomal CatD in regulating GABAergic SV biogenesis and provide mechanistic insights for understanding the synaptic pathology and behavioral defects in CatD-associated LSD.

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