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The role of the C terminus of the SNARE protein SNAP-25 in fusion pore opening and a model for fusion pore mechanics

机译:SNARE蛋白SNAP-25的C末端在融合孔开放中的作用和融合孔力学模型

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摘要

Formation of a fusion pore between a vesicle and its target membrane is thought to involve the so-called SNARE protein complex. However, there is no mechanistic model explaining how the fusion pore is opened by conformational changes in the SNARE complex. It has been suggested that C-terminal zipping triggers fusion pore opening. A SNAP-25 mutant named SNAP-25Δ9 (lacking the last nine C-terminal residues) should lead to a less-tight C-terminal zipping. Single exocytotic events in chromaffin cells expressing this mutant were characterized by carbon fiber amperometry and cell-attached patch capacitance measurements. Cells expressing SNAP-25Δ9 displayed smaller amperometric “foot-current” currents, reduced fusion pore conductances, and lower fusion pore expansion rates. We propose that SNARE/lipid complexes form proteolipid fusion pores. Fusion pores involving the SNAP-25Δ9 mutant will be less tightly zipped and may lead to a longer fusion pore structure, consistent with the observed decrease of fusion pore conductance.
机译:囊泡与其靶膜之间的融合孔的形成被认为涉及所谓的SNARE蛋白复合物。但是,没有机制模型可以解释如何通过SNARE复合物中的构象变化打开融合孔。已经提出,C末端拉链触发融合孔开放。名为SNAP-25Δ9的SNAP-25突变体(缺少最后9个C末端残基)应导致C末端的拉链紧度不足。表达该突变体的嗜铬细胞中的单个胞吐事件通过碳纤维安培法和细胞附着膜片电容测量来表征。表达SNAP-25Δ9的细胞显示出较小的安培“足电流”电流,降低的融合孔电导率和更低的融合孔扩展率。我们建议网罗/脂质复合物形成蛋白脂质融合孔。涉及SNAP-25Δ9突变体的融合孔的拉紧程度较小,并可能导致更长的融合孔结构,这与观察到的融合孔电导率降低相一致。

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