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细胞分裂素诱导的白羽扇豆PR-10蛋白的结构适应性

Cytokinin-induced structural adaptability of a Lupinus luteus PR-10 protein.

作者信息

Fernandes Humberto, Bujacz Anna, Bujacz Grzegorz, Jelen Filip, Jasinski Michal, Kachlicki Piotr, Otlewski Jacek, Sikorski Michal M, Jaskolski Mariusz

机构信息

Institute of Bioorganic Chemistry, Polish Academy of Sciences, Poznan, Poland.

出版信息

FEBS J. 2009 Mar;276(6):1596-609. doi: 10.1111/j.1742-4658.2009.06892.x. Epub 2009 Feb 11.

Abstract

Plant pathogenesis-related (PR) proteins of class 10 are the only group among the 17 PR protein families that are intracellular and cytosolic. Sequence conservation and the wide distribution of PR-10 proteins throughout the plant kingdom are an indication of an indispensable function in plants, but their true biological role remains obscure. Crystal and solution structures for several homologues have shown a similar overall fold with a vast internal cavity which, together with structural similarities to the steroidogenic acute regulatory protein-related lipid transfer domain and cytokinin-specific binding proteins, strongly indicate a ligand-binding role for the PR-10 proteins. This article describes the structure of a complex between a classic PR-10 protein [Lupinus luteus (yellow lupine) PR-10 protein of subclass 2, LlPR-10.2B] and N,N'-diphenylurea, a synthetic cytokinin. Synthetic cytokinins have been shown in various bioassays to exhibit activity similar to that of natural cytokinins. The present 1.95 A resolution crystallographic model reveals four N,N'-diphenylurea molecules in the hydrophobic cavity of the protein and a degree of conformational changes accompanying ligand binding. The structural adaptability of LlPR-10.2B and its ability to bind different cytokinins suggest that this protein, and perhaps other PR-10 proteins as well, can act as a reservoir of cytokinin molecules in the aqueous environment of a plant cell.

摘要

10类植物病程相关(PR)蛋白是17个PR蛋白家族中唯一位于细胞内和胞质溶胶中的一类。PR-10蛋白在植物界的序列保守性和广泛分布表明其在植物中具有不可或缺的功能,但其真正的生物学作用仍不清楚。几种同源物的晶体结构和溶液结构显示出相似的整体折叠结构,内部有一个很大的腔,再加上与类固醇生成急性调节蛋白相关的脂质转移结构域和细胞分裂素特异性结合蛋白的结构相似性,有力地表明PR-10蛋白具有配体结合作用。本文描述了一种经典PR-10蛋白[羽扇豆(黄羽扇豆)2亚类的PR-10蛋白,LlPR-10.2B]与合成细胞分裂素N,N'-二苯基脲之间的复合物结构。在各种生物测定中已表明合成细胞分裂素具有与天然细胞分裂素相似的活性。目前分辨率为1.95 Å的晶体学模型揭示了该蛋白疏水腔内有四个N,N'-二苯基脲分子,以及配体结合时伴随的一定程度的构象变化。LlPR-10.2B的结构适应性及其结合不同细胞分裂素的能力表明,该蛋白以及可能其他PR-10蛋白也可以在植物细胞的水环境中作为细胞分裂素分子的储存库。

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