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首页> 外文期刊>Neuron >V-ATPase membrane sector associates with synaptobrevin to modulate neurotransmitter release.
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V-ATPase membrane sector associates with synaptobrevin to modulate neurotransmitter release.

机译:V-ATPase膜区段与突触素结合,调节神经递质的释放。

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Acidification of synaptic vesicles by the vacuolar proton ATPase is essential for loading with neurotransmitter. Debated findings have suggested that V-ATPase membrane domain (V0) also contributes to Ca(2+)-dependent transmitter release via a direct role in vesicle membrane fusion, but the underlying mechanisms remain obscure. We now report a direct interaction between V0 c-subunit and the v-SNARE synaptobrevin, constituting a molecular link between the V-ATPase and SNARE-mediated fusion. Interaction domains were mapped to the membrane-proximal domain of VAMP2 and the cytosolic 3.4 loop of c-subunit. Acute perturbation of this interaction with c-subunit 3.4 loop peptides did not affect synaptic vesicle proton pump activity, but induced a substantial decrease in neurotransmitter release probability, inhibiting glutamatergic as well as cholinergic transmission in cortical slices and cultured sympathetic neurons, respectively. Thus, V-ATPase may ensure two independent functions: proton transport by a fully assembled V-ATPase and a role in SNARE-dependent exocytosis by the V0 sector.
机译:液泡质子ATPase对突触小泡的酸化作用对于神经递质的加载至关重要。辩论的结果表明,V-ATPase膜结构域(V0)也通过囊泡膜融合的直接作用也导致Ca(2+)依赖的变送器释放,但潜在的机制仍然不清楚。现在,我们报道了V C亚基和v-SNARE突触短纤维之间的直接相互作用,构成V-ATPase和SNARE介导的融合之间的分子联系。相互作用域映射到VAMP2的膜近端域和c亚基的胞质3.4环。与c亚基3.4环肽相互作用的急性扰动不会影响突触小泡质子泵的活性,但会导致神经递质释放概率的显着降低,分别抑制皮质切片和培养的交感神经元中的谷氨酸能和胆碱能传递。因此,V-ATPase可以确保两个独立的功能:通过完全组装的V-ATPase进行质子转运,以及通过V0区段参与依赖SNARE的胞吐作用。

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