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来自粘质沙雷氏菌的非催化性几丁质结合蛋白CBP21对几丁质降解至关重要。

The non-catalytic chitin-binding protein CBP21 from Serratia marcescens is essential for chitin degradation.

作者信息

Vaaje-Kolstad Gustav, Horn Svein J, van Aalten Daan M F, Synstad Bjørnar, Eijsink Vincent G H

机构信息

Department of Chemistry, Biotechnology, and Food Science, Norwegian University of Life Sciences, P. O. Box 5003, 1432 As, Norway.

出版信息

J Biol Chem. 2005 Aug 5;280(31):28492-7. doi: 10.1074/jbc.M504468200. Epub 2005 Jun 1.

Abstract

The Gram-negative soil bacterium Serratia marcescens uses three different family 18 chitinases to degrade chitin, an abundant insoluble carbohydrate polymer composed of beta(1,4)-linked units of N-acetylglucosamine. We show that efficient chitin degradation additionally depends on the action of a small non-catalytic protein, CBP21, which binds to the insoluble crystalline substrate, leading to structural changes in the substrate and increased substrate accessibility. CBP21 strongly promoted hydrolysis of crystalline beta-chitin by chitinases A and C, while it was essential for full degradation by chitinase B. CBP21 variants with single mutations on the largely polar binding surface lost their ability to promote chitin degradation, while retaining considerable affinity for the polymer. Thus, binding alone is not sufficient for CBP21 functionality, which seems to depend on specific, mostly polar interactions between the protein and crystalline chitin. This is the first time a secreted binding protein is shown to assist in the enzymatic degradation of an insoluble carbohydrate via non-hydrolytic disruption of the substrate. Interestingly, homologues of CBP21 occur in most chitin-degrading microorganisms, suggesting a general mechanism by which chitin-binding proteins enhance chitinolytic activity. Homologues also occur in chitinase-containing insect viruses, whose infectiousness is known to depend on chitinase efficiency.

摘要

革兰氏阴性土壤细菌粘质沙雷氏菌利用三种不同的18家族几丁质酶来降解几丁质,几丁质是一种丰富的不溶性碳水化合物聚合物,由N-乙酰葡糖胺的β(1,4)-连接单元组成。我们发现,高效的几丁质降解还依赖于一种小的非催化蛋白CBP21的作用,该蛋白与不溶性晶体底物结合,导致底物结构发生变化并增加底物的可及性。CBP21强烈促进几丁质酶A和C对晶体β-几丁质的水解,而它对于几丁质酶B的完全降解至关重要。在主要为极性的结合表面上具有单突变的CBP21变体失去了促进几丁质降解的能力,同时对该聚合物仍保留相当大的亲和力。因此,仅结合对于CBP21的功能是不够的,其功能似乎取决于蛋白质与晶体几丁质之间特定的、主要为极性的相互作用。这是首次证明一种分泌型结合蛋白通过对底物的非水解性破坏来协助不溶性碳水化合物的酶促降解。有趣的是,CBP21的同源物存在于大多数降解几丁质的微生物中,这表明几丁质结合蛋白增强几丁质分解活性的一般机制。同源物也存在于含几丁质酶的昆虫病毒中,已知其感染性取决于几丁质酶的效率。

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