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柱状田头菇真菌半乳糖凝集素识别唾液酸共轭物的结构基础

Structural basis of a fungal galectin from Agrocybe cylindracea for recognizing sialoconjugate.

作者信息

Ban Mizuho, Yoon Hye-Jin, Demirkan Elif, Utsumi Shigeru, Mikami Bunzo, Yagi Fumio

机构信息

Laboratory of Food Design and Development, Graduate school of Agriculture, Kyoto University, Kyoto, Japan.

出版信息

J Mol Biol. 2005 Aug 26;351(4):695-706. doi: 10.1016/j.jmb.2005.06.045.

Abstract

Galectin from an edible fungus Agrocybe cylindracea (ACG) has a strong preference for N-acetylneuraminyl lactose (NeuAcalpha2-3lactose). The sugar recognition mechanism of ACG was explored by the X-ray crystallographic analyses of ligand-free ACG, and its complex with lactose, 3'-sulfonyl lactose and NeuAcalpha2-3lactose. The refined structure shows that ACG is a "proto"-type galectin composed of a beta-sandwich of two antiparallel sheets, each with six strands, in contrast to the five and six strands in animal galectins. ACG dimer in solution was classified as being among the "layer"-type. The carbohydrate recognition domain (CRD) of this galectin is common to those of animal galectins, except for substitution of one residue, Ala64, which corresponds to Asn46 in human galectin 1. A five-residue insertion in ACG at positions 42-46 involving Ser44 and Asn46 modified the architecture of the sugar binding site that contributes sialic acid specificity. Furthermore, it was found that the binding of a sulfate ion near the CRD in the ligand-free form led to a change in the conformation of the loop region caused by main-chain cis/trans transition between Ser44 and Pro45.

摘要

来自食用菌柱状田头菇(ACG)的半乳糖凝集素对N-乙酰神经氨酸乳糖(NeuAcalpha2 - 3乳糖)具有强烈偏好。通过对无配体ACG及其与乳糖、3'-磺酰乳糖和NeuAcalpha2 - 3乳糖复合物的X射线晶体学分析,探索了ACG的糖识别机制。优化后的结构表明,ACG是一种“原始”型半乳糖凝集素,由两个反平行片层的β-三明治结构组成,每个片层有六条链,这与动物半乳糖凝集素中的五条和六条链不同。溶液中的ACG二聚体被归类为“层”型。除了一个残基Ala64被取代外,这种半乳糖凝集素的碳水化合物识别结构域(CRD)与动物半乳糖凝集素的相似,Ala64对应于人半乳糖凝集素1中的Asn46。ACG在42 - 46位有一个五残基插入,涉及Ser44和Asn46,改变了糖结合位点的结构,从而产生了唾液酸特异性。此外,还发现无配体形式下CRD附近硫酸根离子的结合导致了由Ser44和Pro45之间主链顺反转变引起的环区构象变化。

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