首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Conversion of aquaporin 6 from an anion channel to a water-selective channel by a single amino acid substitution.
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Conversion of aquaporin 6 from an anion channel to a water-selective channel by a single amino acid substitution.

机译:通过单个氨基酸取代将水通道蛋白6从阴离子通道转化为水选择性通道。

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摘要

Aquaporin (AQP) 6 belongs to the aquaporin water channel family. Unlike other aquaporins, AQP6 functions not as a water channel but as an anion-selective channel. Single-channel analyses have shown AQP6 to flicker rapidly between closed and open status. The atomic structure of AQP1 and amino acid sequence alignments of the mammalian aquaporins reveal two well conserved glycine residues: Gly-57 in transmembrane helix (TM) 2 and Gly-173 in TM5 reside at the contact point where the two helices cross in human AQP1. Uniquely, all known mammalian orthologs of AQP6 have an asparagine residue (Asn-60) at the position corresponding to Gly-57. Here we show that a single residue substitution (N60G in rat AQP6) totally eliminates the anion permeability of AQP6 when expressed in Xenopus oocytes, but the N60G oocytes exhibit significantly higher osmotic water permeability under basal conditions. Replacement of the glycine at this site in AQP0, AQP1, and AQP2 blocked expression of the mutants at the oocyte plasma membrane. We propose that the asparagine residue at the contact point between TM2 and TM5 in AQP6 may function as a teeter board needed for rapid structural oscillations during anion permeation.
机译:水通道蛋白(AQP)6属于水通道水通道家族。与其他水通道蛋白不同,AQP6不是充当水通道,而是充当阴离子选择性通道。单通道分析显示AQP6在关闭和打开状态之间快速闪烁。 AQP1的原子结构和哺乳动物水通道蛋白的氨基酸序列比对揭示了两个保守的甘氨酸残基:跨膜螺旋(TM)2中的Gly-57和TM5中的Gly-173位于人AQP1中两个螺旋交叉的接触点。唯一地,所有已知的AQP6哺乳动物直系同源物在与Gly-57对应的位置具有天冬酰胺残基(Asn-60)。在这里,我们显示单个残基取代(在大鼠AQP6中为N60G)完全消除了在爪蟾卵母细胞中表达时AQP6的阴离子渗透性,但N60G卵母细胞在基础条件下表现出明显更高的渗透水渗透性。在AQP0,AQP1和AQP2的该位点替换甘氨酸可阻止突变体在卵母细胞质膜上的表达。我们建议在AQP6中TM2和TM5之间的接触点处的天冬酰胺残基可以用作跷跷板,以便在阴离子渗透过程中快速进行结构振荡。

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