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Crystal Structure of a Yeast Aquaporin at 1.15 Å Reveals a Novel Gating Mechanism

机译:酵母水通道蛋白在1.15Å处的晶体结构揭示了一种新型的门控机制

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摘要

Aquaporins are transmembrane proteins that facilitate the flow of water through cellular membranes. An unusual characteristic of yeast aquaporins is that they frequently contain an extended N terminus of unknown function. Here we present the X-ray structure of the yeast aquaporin Aqy1 from Pichia pastoris at 1.15 Å resolution. Our crystal structure reveals that the water channel is closed by the N terminus, which arranges as a tightly wound helical bundle, with Tyr31 forming H-bond interactions to a water molecule within the pore and thereby occluding the channel entrance. Nevertheless, functional assays show that Aqy1 has appreciable water transport activity that aids survival during rapid freezing of P. pastoris. These findings establish that Aqy1 is a gated water channel. Mutational studies in combination with molecular dynamics simulations imply that gating may be regulated by a combination of phosphorylation and mechanosensitivity.
机译:水通道蛋白是促进水通过细胞膜流动的跨膜蛋白。酵母水通道蛋白的不寻常特征是它们经常包含未知功能的延伸N末端。在这里,我们介绍了1.15Å分辨率的巴斯德毕赤酵母酵母水通道蛋白Aqy1的X射线结构。我们的晶体结构表明,水通道被N末端封闭,该末端排列成紧密缠绕的螺旋束,Tyr31与孔中的水分子形成H键相互作用,从而阻塞了通道入口。尽管如此,功能测定表明,Aqy1具有明显的水运输活性,有助于快速冷冻巴斯德毕赤酵母的存活。这些发现确定Aqy1是封闭水通道。突变研究与分子动力学模拟相结合表明,门控可能受磷酸化和机械敏感性的组合调节。

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