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利用核磁共振氢谱法测定萝卜抗真菌蛋白1的三维溶液结构

Determination of the three-dimensional solution structure of Raphanus sativus antifungal protein 1 by 1H NMR.

作者信息

Fant F, Vranken W, Broekaert W, Borremans F

机构信息

Department of Organic Chemistry, University of Gent, Belgium.

出版信息

J Mol Biol. 1998 May 29;279(1):257-70. doi: 10.1006/jmbi.1998.1767.

Abstract

Raphanus sativus Antifungal Protein 1 (Rs-AFP1) is a 51 amino acid residue plant defensin isolated from radish (Raphanus sativus L.) seeds. The three-dimensional structure in aqueous solution has been determined from two-dimensional 1H NMR data recorded at 500 MHz using the DIANA/REDAC calculation protocols. Experimental constraints consisted of 787 interproton distances extracted from NOE cross-peaks, 89 torsional constraints from 106 vicinal interproton coupling constants and 32 stereospecific assignments of prochiral protons. Further refinement by simulated annealing resulted in a set of 20 structures having pairwise root-mean-square differences of 1.35(+/- 0.35) A over the backbone heavy atoms and 2.11(+/- 0.46) A over all heavy atoms. The molecule adopts a compact globular fold comprising an alpha-helix from Asn18 till Leu28 and a triple-stranded beta-sheet (beta 1 = Lys2-Arg6, beta 2 = His33-Tyr38 and beta 3 = His43-Pro50). The central strand of this beta-sheet is connected by two disulfide bridges (Cys21-Cys45 and Cys25-Cys47) to the alpha-helix. The connection between beta-strand 2 and 3 is formed by a type VIa beta-turn. Even the loop (Pro7 to Asn17) between beta-strand 1 and the alpha-helix is relatively well defined. The structure of Raphanus sativus Antifungal Protein 1 features all the characteristics of the "cysteine stabilized alpha beta motif". A comparison of the complete structure and of the regions important for interaction with the fungal receptor according to a mutational study, is made with the structure of gamma-thionin, a plant defensin that has no antifungal activity. It is concluded that this interaction is both electrostatic and specific, and some possible scenarios for the mode of action are given.

摘要

萝卜抗真菌蛋白1(Rs-AFP1)是一种从萝卜(Raphanus sativus L.)种子中分离出的由51个氨基酸残基组成的植物防御素。利用DIANA/REDAC计算协议,根据在500 MHz下记录的二维1H NMR数据确定了其在水溶液中的三维结构。实验约束包括从NOE交叉峰中提取的787个质子间距离、来自106个邻位质子耦合常数的89个扭转约束以及32个前手性质子的立体特异性归属。通过模拟退火进一步优化得到了一组20个结构,其主链重原子的成对均方根偏差为1.35(±0.35)Å,所有重原子的成对均方根偏差为2.11(±0.46)Å。该分子呈现出紧凑的球状折叠结构,包含一个从Asn18到Leu28的α螺旋和一个三股β折叠(β1 = Lys2-Arg6,β2 = His33-Tyr38,β3 = His43-Pro50)。这个β折叠的中央链通过两个二硫键(Cys21-Cys45和Cys25-Cys47)与α螺旋相连。β链2和3之间的连接由一个VIa型β转角形成。甚至β链1和α螺旋之间的环(Pro7到Asn17)也相对明确。萝卜抗真菌蛋白1的结构具有“半胱氨酸稳定的αβ基序”的所有特征。根据突变研究,将其完整结构以及与真菌受体相互作用重要区域的结构与没有抗真菌活性的植物防御素γ-硫堇的结构进行了比较。得出的结论是,这种相互作用既是静电的又是特异性的,并给出了一些可能的作用模式设想。

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