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来自黑曲霉的一种非持续性、需盐且嗜酸的果胶甲酯酶的结构与特性为理解持续性控制的关键决定因素提供了见解。

Structure and Properties of a Non-processive, Salt-requiring, and Acidophilic Pectin Methylesterase from Aspergillus niger Provide Insights into the Key Determinants of Processivity Control.

作者信息

Kent Lisa M, Loo Trevor S, Melton Laurence D, Mercadante Davide, Williams Martin A K, Jameson Geoffrey B

机构信息

From Riddet Institute and Institute of Fundamental Sciences, Massey University, Palmerston North 4442, New Zealand.

From Riddet Institute and School of Chemical Sciences, University of Auckland, Auckland 1142, New Zealand.

出版信息

J Biol Chem. 2016 Jan 15;291(3):1289-306. doi: 10.1074/jbc.M115.673152. Epub 2015 Nov 14.

Abstract

Many pectin methylesterases (PMEs) are expressed in plants to modify plant cell-wall pectins for various physiological roles. These pectins are also attacked by PMEs from phytopathogens and phytophagous insects. The de-methylesterification by PMEs of the O6-methyl ester groups of the homogalacturonan component of pectin, exposing galacturonic acids, can occur processively or non-processively, respectively, describing sequential versus single de-methylesterification events occurring before enzyme-substrate dissociation. The high resolution x-ray structures of a PME from Aspergillus niger in deglycosylated and Asn-linked N-acetylglucosamine-stub forms reveal a 10⅔-turn parallel β-helix (similar to but with less extensive loops than bacterial, plant, and insect PMEs). Capillary electrophoresis shows that this PME is non-processive, halophilic, and acidophilic. Molecular dynamics simulations and electrostatic potential calculations reveal very different behavior and properties compared with processive PMEs. Specifically, uncorrelated rotations are observed about the glycosidic bonds of a partially de-methyl-esterified decasaccharide model substrate, in sharp contrast to the correlated rotations of processive PMEs, and the substrate-binding groove is negatively not positively charged.

摘要

许多果胶甲基酯酶(PMEs)在植物中表达,用于修饰植物细胞壁果胶以发挥各种生理作用。这些果胶也会受到来自植物病原体和植食性昆虫的PMEs的攻击。果胶同型半乳糖醛酸组分的O6 - 甲酯基团被PMEs脱甲基酯化,暴露出半乳糖醛酸,这分别可以连续或不连续地发生,描述了在酶 - 底物解离之前发生的连续与单次脱甲基酯化事件。黑曲霉PME的去糖基化形式和Asn连接的N - 乙酰葡糖胺残基形式的高分辨率x射线结构揭示了一个10⅔圈的平行β - 螺旋(与细菌、植物和昆虫的PMEs相似,但环的范围较小)。毛细管电泳表明这种PME是非连续的、嗜盐的和嗜酸的。分子动力学模拟和静电势计算揭示了与连续PMEs相比非常不同的行为和性质。具体而言,在部分去甲基酯化的十糖模型底物的糖苷键周围观察到不相关的旋转,这与连续PMEs的相关旋转形成鲜明对比,并且底物结合凹槽带负电荷而非正电荷。

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