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来自蛋白G的IgG结合结构域的连续¹H NMR归属及二级结构

Sequential 1H NMR assignments and secondary structure of an IgG-binding domain from protein G.

作者信息

Lian L Y, Yang J C, Derrick J P, Sutcliffe M J, Roberts G C, Murphy J P, Goward C R, Atkinson T

机构信息

Biological NMR Centre, University of Leicester, U.K.

出版信息

Biochemistry. 1991 Jun 4;30(22):5335-40. doi: 10.1021/bi00236a002.

Abstract

Protein G is a member of a class of cell surface bacterial proteins from Streptococcus that bind IgG with high affinity. A fragment of molecular mass 6988, which retains IgG-binding activity, has been generated by proteolytic digestion and analyzed by 1H NMR. Two-dimensional DQF-COSY, TOCSY, and NOESY spectra have been employed to assign the 1H NMR spectrum of the peptide. Elements of regular secondary structure have been identified by using nuclear Overhauser enhancement, coupling constant, and amide proton exchange data. The secondary structure consists of a central alpha-helix (Ala28-Val44), flanked by two portions of beta-sheet (Val5-Val26 and Asp45-Lys62). This is a fundamentally different arrangement of secondary structure from that of protein A, which is made up of three consecutive alpha-helices in free solution (Torigoe et al., 1990). We conclude that the molecular mechanisms underlying the association of protein A and protein G with IgG are different.

摘要

蛋白G是一类来自链球菌的细胞表面细菌蛋白的成员,它能以高亲和力结合IgG。通过蛋白水解消化产生了一个分子量为6988且保留IgG结合活性的片段,并通过1H NMR进行了分析。二维DQF-COSY、TOCSY和NOESY谱已被用于确定该肽的1H NMR谱。通过使用核Overhauser增强、耦合常数和酰胺质子交换数据确定了规则二级结构的元素。二级结构由一个中央α-螺旋(Ala28-Val44)组成,两侧是两部分β-折叠(Val5-Val26和Asp45-Lys62)。这是一种与蛋白A二级结构根本不同 的排列,蛋白A在自由溶液中由三个连续的α-螺旋组成(Torigoe等人,1990年)。我们得出结论,蛋白A和蛋白G与IgG结合的分子机制是不同的。

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