首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Electrostatics of aquaporin and aquaglyceroporin channels correlates with their transport selectivity
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Electrostatics of aquaporin and aquaglyceroporin channels correlates with their transport selectivity

机译:水通道蛋白和水甘油通道蛋白的静电与其迁移选择性相关

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摘要

Aquaporins are homotetrameric channel proteins, which allow the diffusion of water and small solutes across biological membranes. According to their transport function, aquaporins can be divided into "orthodox aquaporins", which allow the flux of water molecules only, and "aquaglyceroporins", which facilitate the diffusion of glycerol and other small solutes in addition to water. The contribution of individual residues in the pore to the selectivity of orthodox aquaporins and aquaglyceroporins is not yet fully understood. To gain insights into aquaporin selectivity, we focused on the sequence variation and electrostatics of their channels. The continuum Poisson-Boltzmann electrostatic potential along the channel was calculated and compared for ten three-dimensional-structures which are representatives of different aquaporin subfamilies, and a panel of functionally characterized mutants, for which high-accuracy three-dimensional-models could be derived. Interestingly, specific electrostatic profiles associated with the main selectivity to water or glycerol could be identified. In particular: (ⅰ) orthodox aquaporins showed a distinctive electrostatic potential maximum at the periplasmic side of the channel around the aromatic/Arg (ar/R) constriction site; (ⅱ) aquaporin-0 (AQP0), a mammalian aquaporin with considerably low water permeability, had an additional deep minimum at the cytoplasmic side; (ⅲ) aquaglyceroporins showed a rather flat potential all along the channel; and (ⅳ) the bifunctional protozoan PfAQP had an unusual all negative profile. Evaluation of electrostatics of the mutants, along with a thorough sequence analysis of the aquaporin pore-lining residues, illuminated the contribution of specific residues to the electrostatics of the channels and possibly to their selectivity.
机译:水通道蛋白是同四聚体通道蛋白,其允许水和小溶质在生物膜上扩散。根据其转运功能,水通道蛋白可分为仅允许水分子通过的“正统水通道蛋白”和除水以外还促进甘油和其他小溶质扩散的“水甘油通道蛋白”。尚未完全理解孔中单个残基对正统水通道蛋白和水甘油通道蛋白选择性的贡献。为了深入了解水通道蛋白的选择性,我们集中于其通道的序列变异和静电。计算并比较了沿通道的连续Poisson-Boltzmann静电势,对代表不同水通道蛋白亚家族的十个三维结构和一组功能特征化的突变体进行了比较,可以得出高精度的三维模型。有趣的是,可以确定与对水或甘油的主要选择性相关的特定静电分布。特别是:(ⅰ)正统水通道蛋白在芳族/ Arg(ar / R)收缩位点周围通道的周质侧显示出独特的静电势最大值; (ⅱ)水通道蛋白-0(AQP0),一种具有很低水渗透性的哺乳动物水通道蛋白,在细胞质侧具有更深的最小值; (ⅲ)沿通道,水甘油糖蛋白显示出相当平坦的电位; (ⅳ)双功能原生动物PfAQP具有异常的全部阴性特征。评估突变体的静电,以及对水通道蛋白孔衬残基进行彻底的序列分析,阐明了特定残基对通道静电及其可能的选择性的贡献。

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