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糖蛋白 A 跨膜二聚体在立方相脂质中的晶体结构。

Crystal Structure of the Glycophorin A Transmembrane Dimer in Lipidic Cubic Phase.

机构信息

Structural Biology Division, The Walter and Eliza Hall Institute of Medical Research , Parkville, Victoria 3052, Australia.

Department of Medical Biology, The University of Melbourne , Parkville, Victoria 3052, Australia.

出版信息

J Am Chem Soc. 2015 Dec 23;137(50):15676-9. doi: 10.1021/jacs.5b11354. Epub 2015 Dec 10.

Abstract

The mechanisms of assembly and function for many important type I/II (single-pass) transmembrane (TM) receptors are proposed to involve the formation and/or alteration of specific interfaces among their membrane-embedded α-helical TM domains. The application of lipidic cubic phase (LCP) bilayer media for crystallization of single-α-helical TM complexes has the potential to provide valuable structural and mechanistic insights into many such systems. However, the fidelity of the interfaces observed in crowded crystalline arrays has been difficult to establish from the very limited number of such structures determined using X-ray diffraction data. Here we examine this issue using the glycophorin A (GpA) model system, whose homodimeric TM helix interface has been characterized by solution and solid-state NMR and biochemical techniques but never crystallographically. We report that a GpA-TM peptide readily crystallized in a monoolein cubic phase bilayer, yielding a dimeric α-helical structure that is in excellent agreement with previously reported NMR measurements made in several different types of host media. These results provide compelling support for the wider application of LCP techniques to enable X-ray crystallographic analysis of single-pass TM interactions.

摘要

许多重要的 I/II 型(单次跨膜)跨膜(TM)受体的组装和功能机制被认为涉及它们的膜嵌入的α-螺旋 TM 结构域之间的特定界面的形成和/或改变。用于单-α-螺旋 TM 复合物结晶的类脂立方相(LCP)双层介质有可能为许多此类系统提供有价值的结构和机制见解。然而,从使用 X 射线衍射数据确定的非常有限数量的此类结构中,很难确定在拥挤的结晶阵列中观察到的界面的保真度。在这里,我们使用糖蛋白 A(GpA)模型系统检查了这个问题,该系统的同源二聚体 TM 螺旋界面已通过溶液和固态 NMR 和生化技术进行了表征,但从未通过晶体学进行表征。我们报告说,GpA-TM 肽在单油酸立方相双层中容易结晶,产生二聚体α-螺旋结构,与先前在几种不同类型的宿主介质中进行的 NMR 测量结果非常吻合。这些结果为更广泛地应用 LCP 技术以实现单次跨膜相互作用的 X 射线晶体学分析提供了有力支持。

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