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An approach to membrane protein structure without crystals

机译:一种无晶体的膜蛋白结构方法

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摘要

The lactose permease of Escherichia coli catalyzes coupled trans-location of galactosides and H~+ across the cell membrane. It is the best-characterized member of the Major Facilitator Superfamily, a related group of membrane proteins with 12 transmembrane domains that mediate transport of various substrates across cell membranes. Despite decades of effort and their functional importance in all kingdoms of life, no high-resolution structures have been solved for any member of this family. However, extensive biochemical, genetic, and biophysical studies on lactose permease have established its transmembrane topology, secondary structure, and numerous interhelical contacts. Here we demonstrate that this information is sufficient to calculate a structural model at the level of helix packing or better.
机译:大肠杆菌的乳糖通透酶催化半乳糖苷和H〜+跨细胞膜的耦合易位。它是主要促进子超家族中最典型的成员,超家族是具有12个跨膜结构域的膜蛋白的相关组,该膜蛋白介导各种底物跨细胞膜的运输。尽管付出了数十年的努力,并且在所有生活王国中发挥了重要作用,但对于这个家庭的任何成员,都没有解决高分辨率的结构。但是,对乳糖通透酶的广泛生化,遗传和生物物理研究已经建立了其跨膜拓扑结构,二级结构和许多螺旋间接触。在这里,我们证明了该信息足以在螺旋堆积或更佳的水平上计算结构模型。

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