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通过结构、动力学和生化特征分析,揭示了大丽轮枝菌果胶酸裂解酶VdPelB的特异性。

The specificity of pectate lyase VdPelB from Verticilium dahliae is highlighted by structural, dynamical and biochemical characterizations.

作者信息

Safran Josip, Ung Vanessa, Bouckaert Julie, Habrylo Olivier, Molinié Roland, Fontaine Jean-Xavier, Lemaire Adrien, Voxeur Aline, Pilard Serge, Pau-Roblot Corinne, Mercadante Davide, Pelloux Jérôme, Sénéchal Fabien

机构信息

UMR INRAE 1158 BioEcoAgro - Biologie des Plantes et Innovation, Université de Picardie Jules Verne, UFR des Sciences, 33 Rue St Leu, 80039 Amiens, France.

School of Chemical Sciences, The University of Auckland, Private Bag 92019, Auckland 1142, New Zealand.

出版信息

Int J Biol Macromol. 2023 Mar 15;231:123137. doi: 10.1016/j.ijbiomac.2023.123137. Epub 2023 Jan 11.

Abstract

Pectins, complex polysaccharides and major components of the plant primary cell wall, can be degraded by pectate lyases (PLs). PLs cleave glycosidic bonds of homogalacturonans (HG), the main pectic domain, by β-elimination, releasing unsaturated oligogalacturonides (OGs). To understand the catalytic mechanism and structure/function of these enzymes, we characterized VdPelB from Verticillium dahliae. We first solved the crystal structure of VdPelB at 1.2 Å resolution showing that it is a right-handed parallel β-helix structure. Molecular dynamics (MD) simulations further highlighted the dynamics of the enzyme in complex with substrates that vary in their degree of methylesterification, identifying amino acids involved in substrate binding and cleavage of non-methylesterified pectins. We then biochemically characterized wild type and mutated forms of VdPelB. Pectate lyase VdPelB was most active on non-methylesterified pectins, at pH 8.0 in presence of Ca ions. The VdPelB-G125R mutant was most active at pH 9.0 and showed higher relative activity compared to native enzyme. The OGs released by VdPelB differed to that of previously characterized PLs, showing its peculiar specificity in relation to its structure. OGs released from Verticillium-partially tolerant and sensitive flax cultivars differed which could facilitate the identification VdPelB-mediated elicitors of defence responses.

摘要

果胶是植物初生细胞壁的复杂多糖和主要成分,可被果胶酸裂解酶(PLs)降解。PLs通过β-消除作用切割同型半乳糖醛酸聚糖(HG,主要的果胶结构域)的糖苷键,释放出不饱和低聚半乳糖醛酸(OGs)。为了解这些酶的催化机制和结构/功能,我们对大丽轮枝菌的VdPelB进行了表征。我们首先以1.2埃的分辨率解析了VdPelB的晶体结构,表明它是一种右手平行β-螺旋结构。分子动力学(MD)模拟进一步突出了该酶与甲酯化程度不同的底物形成复合物时的动力学,确定了参与底物结合和非甲酯化果胶切割的氨基酸。然后,我们对VdPelB的野生型和突变形式进行了生化表征。果胶酸裂解酶VdPelB在非甲酯化果胶上活性最高,在pH 8.0且存在钙离子的条件下作用最佳。VdPelB-G125R突变体在pH 9.0时活性最高,与天然酶相比具有更高的相对活性。VdPelB释放的OGs与先前表征的PLs不同,显示出其在结构方面的独特特异性。从对大丽轮枝菌部分耐受和敏感的亚麻品种中释放的OGs有所不同,这可能有助于鉴定VdPelB介导的防御反应激发子。

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