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Structure of a Glycerol-Conducting Channel and the Basis for Its Selectivity

机译:甘油传导通道的结构及其选择性的基础

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Membrane channel proteins of the aquaporin family are highly selective for permeation of specific small molecules, with absolute exclusion of ions and charged solutes and without dissipation of the electrochemical potential across the cell membrane. We report the crystal structure of the Escherichia coli glycerol facilitator (GlpF) with its primary permeant substrate glycerol at 2.2 angstrom resolution. Glycerol molecules line up in an amphipathic channel in single file. In the narrow selectivity filter of the channel the glycerol alkyl backbone is wedged against a hydrophobic corner, and successive hydroxyl groups form hydrogen bonds with a pair of acceptor, and donor atoms. Two conserved aspartic acid-proline-alanine motifs form a key interface between two gene-duplicated segments that each encode three-and-one-half membrane-spanning helices around the channel. This structure elucidates the mechanism of selective permeability for linear carbohydrates and suggests how ions and water are excluded.
机译:水通道蛋白家族的膜通道蛋白对特定小分子的渗透具有高度选择性,具有绝对排斥离子和带电溶质的功能,并且不会分散整个细胞膜的电化学势。我们报告其主要渗透基质甘油在2.2埃分辨率的大肠杆菌甘油促进剂(GlpF)的晶体结构。甘油分子在单个文件的两亲通道中排列。在狭窄的通道选择性过滤器中,甘油烷基骨架被楔在疏水角上,连续的羟基与一对受体和供体原子形成氢键。两个保守的天冬氨酸-脯氨酸-丙氨酸基序在两个基因重复的片段之间形成关键界面,每个片段在通道周围编码三到一半的跨膜螺旋。这种结构阐明了线性碳水化合物选择性渗透的机理,并提出了如何排除离子和水的建议。

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