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Human stoned B interacts with AP-2 and synaptotagmin and facilitates clathrin-coated vesicle uncoating

机译:人类扔石头的B与AP-2和突触结合素相互作用并促进网格蛋白包被的囊泡脱膜

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摘要

Synaptic vesicle biogenesis involves the recycling of synaptic vesicle components by clathrin-mediated endocytosis from the presynaptic membrane. stoned B, a protein encoded by the stoned locus in Drosophila melanogaster has been shown to regulate vesicle recycling by interacting with synaptotagmin. We report here the identification and characterization of a human homolog of stoned B (hStnB). Human stoned B is a brain-specific protein which co-enriches with other endocytic proteins such as AP-2 in a crude synaptic vesicle fraction and at nerve terminals. A domain with homology to the medium chain of adaptor complexes binds directly to both AP-2 and synaptotagmin and competes with AP-2 for the same binding site within synaptotagmin. Finally we show that the µ2 homology domain of hStnB stimulates the uncoating of both clathrin and AP-2 adaptors from clathrin-coated vesicles. We hypothesize that hStnB regulates synaptic vesicle recycling by facilitating vesicle uncoating.
机译:突触小泡的生物发生涉及通过网格蛋白介导的从突触前膜的内吞作用来回收突触小泡的成分。结石的B,一种由果蝇中结石的基因座编码的蛋白质,已被证明可通过与突触结合蛋白相互作用来调节囊泡的回收。我们在这里报告的人类鉴定的石头B(hStnB)的同源物。人类扔石头的B是一种大脑特异性蛋白,在粗突触小泡部分和神经末梢与其他胞吞蛋白(例如AP-2)共同富集。与衔接子复合物的中链同源的结构域直接与AP-2和突触结合蛋白结合,并与AP-2竞争突触结合蛋白内的相同结合位点。最后,我们证明了hStnB的µ2同源域可刺激网格蛋白和AP-2衔接子从网格蛋白包被的囊泡中脱膜。我们假设hStnB通过促进囊泡脱膜调节突触囊泡回收。

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