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Oligomerization of the voltage-gated proton channel

机译:电压门控质子通道的低聚

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摘要

The voltage-gated proton channel exists as a dimer, although each protomer has a separate conduction pathway, and when forced to exist as a monomer, most major functions are retained. However, the proton channel protomers appear to interact during gating. Proton channel dimerization is thought to result mainly from coiled-coil interaction of the intracellular C-termini. Several types of evidence are discussed that suggest that the dimer conformation may not be static, but is dynamic and can sample different orientations. Zn2+ appears to link the protomers in an orientation from which the channel(s) cannot open. A tandem WT-WT dimer exhibits signs of cooperative gating, indicating that despite the abnormal linkage, the correct orientation for opening can occur. We propose that C-terminal interaction functions mainly to tether the protomers together. Comparison of the properties of monomeric and dimeric proton channels speaks against the hypothesis that enhanced gating reflects monomer-dimer interconversion.
机译:电压门控质子通道以二聚体形式存在,尽管每个质子均具有独立的传导路径,并且当被迫以单体形式存在时,大多数主要功能得以保留。但是,质子通道启动子似乎在门控期间相互作用。质子通道二聚化被认为主要是由于细胞内C末端的卷曲螺旋相互作用引起的。讨论了几种类型的证据,这些证据表明二聚体构象可能不是静态的,而是动态的,并且可以采样不同的方向。 Zn 2 + 似乎以无法打开通道的方向链接原型。串联的WT-WT二聚体显示出协同门控的迹象,表明尽管存在异常的连接,但仍可能发生正确的打开方向。我们建议,C末端相互作用的功能主要是拴在一起的protomer。单体质子通道和二聚体质子通道性质的比较表明,门控增强反映了单体-二聚体的相互转化这一假说。

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