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Transmembrane segments of syntaxin line the fusion pore of Ca2+-triggered exocytosis

机译:Syntaxin的跨膜片段排列在Ca2 +触发的胞吐作用的融合孔中

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摘要

The fusion pore of regulated exocytosis is a channel that connects and spans the vesicle and plasma membranes. The molecular composition of this important intermediate structure of exocytosis is unknown. Here, we found that mutations of some residues within the transmembrane segment of syntaxin (Syx), a plasma membrane protein essential for exocytosis, altered neurotransmitter flux through fusion pores and altered pore conductance. The residues that influenced fusion-pore flux lay along one face of an alpha-helical model. Thus, the fusion pore is formed at least in part by a circular arrangement of 5 to 8 Syx transmembrane segments in the plasma membrane.
机译:调节性胞吐作用的融合孔是连接并跨越囊泡和质膜的通道。这种胞吐作用的重要中间结构的分子组成是未知的。在这里,我们发现了synxin(Syx)跨膜片段内某些残基的突变,Synx是胞吐作用所必需的质膜蛋白,改变了通过融合孔的神经递质通量,并改变了孔的电导率。影响融合孔通量的残基沿着α-螺旋模型的一个面放置。因此,融合孔至少部分由质膜中5至8个Syx跨膜片段的圆形排列形成。

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