突触小泡
生物物理学
胞吐
小泡
ATP酶
突触素
生物
低温电子显微
生物化学
化学
膜
细胞生物学
酶
免疫组织化学
免疫学
作者
Claire E. Coupland,Ryan Karimi,Stephanie A. Bueler,Yingke Liang,Gautier M. Courbon,Justin M. Di Trani,Cassandra J. Wong,Rayan Saghian,Ji‐Young Youn,Lu‐Yang Wang,John L. Rubinstein
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2024-07-12
卷期号:385 (6705): 168-174
被引量:3
标识
DOI:10.1126/science.adp5577
摘要
Intercellular communication in the nervous system occurs through the release of neurotransmitters into the synaptic cleft between neurons. In the presynaptic neuron, the proton pumping vesicular- or vacuolar-type ATPase (V-ATPase) powers neurotransmitter loading into synaptic vesicles (SVs), with the V 1 complex dissociating from the membrane region of the enzyme before exocytosis. We isolated SVs from rat brain using SidK, a V-ATPase–binding bacterial effector protein. Single-particle electron cryomicroscopy allowed high-resolution structure determination of V-ATPase within the native SV membrane. In the structure, regularly spaced cholesterol molecules decorate the enzyme’s rotor and the abundant SV protein synaptophysin binds the complex stoichiometrically. ATP hydrolysis during vesicle loading results in a loss of the V 1 region of V-ATPase from the SV membrane, suggesting that loading is sufficient to induce dissociation of the enzyme.
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