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几丁质寡糖与来自多细胞绿藻团藻的一种新型几丁质酶的溶素基序结合。

Chitin oligosaccharide binding to the lysin motif of a novel type of chitinase from the multicellular green alga, Volvox carteri.

作者信息

Kitaoku Yoshihito, Fukamizo Tamo, Numata Tomoyuki, Ohnuma Takayuki

机构信息

Department of Advanced Bioscience, Kindai University, 3327-204 Nakamachi, Nara, 631-8505, Japan.

Biomedical Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, 305-8566, Japan.

出版信息

Plant Mol Biol. 2017 Jan;93(1-2):97-108. doi: 10.1007/s11103-016-0549-5. Epub 2016 Nov 2.

Abstract

The chitinase-mediated defense system in higher plants has been intensively studied from physiological and structural viewpoints. However, the defense system in the most primitive plant species, such as green algae, has not yet been elucidated in details. In this study, we solved the crystal structure of a family CBM-50 LysM module attached to the N-terminus of chitinase from Volvox carteri, and successfully analyzed its chitin-binding ability by NMR spectroscopy and isothermal titration calorimetry. Trp96 of the LysM module appeared to make a CH-π stacking interaction with the reducing end sugar residue of the ligand. We believe the data included in this manuscript provide novel insights into the molecular basis of chitinase-mediated defense system in green algae. A chitinase from the multicellular green alga, Volvox carteri, contains two N-terminal lysin motifs (VcLysM1 and VcLysM2), that belong to the CBM-50 family, in addition to a catalytic domain. We produced a recombinant protein of VcLysM2 in order to examine its structure and function. The X-ray crystal structure of VcLysM2 was successfully solved at a resolution of 1.2 Å, and revealed that the protein adopts the βααβ fold typical of members belonging to the CBM-50 family. NMR spectra of C- and N-labeled proteins were analyzed in order to completely assign the main chain resonances of the H,N-HSQC spectrum in a sequential manner. NMR-based titration experiments of chitin oligosaccharides, (GlcNAc) (n = 3-6), revealed the ligand-binding site of VcLysM2, in which the Trp96 side chain appeared to interact with the terminal GlcNAc residue of the ligand. We then mutated Trp96 to alanine (VcLysM2-W96A), and the mutant protein was characterized. Based on isothermal titration calorimetry, the affinity of (GlcNAc) toward VcLysM2 (-6.9 kcal/mol) was found to be markedly higher than that of (GlcNAc) (-4.1 kcal/mol), whereas the difference in affinities between (GlcNAc) and (GlcNAc) in VcLysM2-W96A (-5.1 and -4.0 kcal/mol, respectively) was only moderate. This suggests that the Trp96 side chain of VcLysM2 interacts with the sugar residue of (GlcNAc) not with (GlcNAc). VcLysM2 appears to preferentially bind (GlcNAc) with longer chains and plays a major role in the degradation of the chitinous components of enzyme targets.

摘要

从生理和结构角度对高等植物中几丁质酶介导的防御系统进行了深入研究。然而,最原始的植物物种(如绿藻)中的防御系统尚未得到详细阐明。在本研究中,我们解析了附着在团藻几丁质酶N端的CBM-50家族LysM模块的晶体结构,并通过核磁共振光谱和等温滴定量热法成功分析了其几丁质结合能力。LysM模块的Trp96似乎与配体的还原端糖残基形成了CH-π堆积相互作用。我们相信本文所包含的数据为绿藻中几丁质酶介导的防御系统的分子基础提供了新的见解。多细胞绿藻团藻的一种几丁质酶,除了催化结构域外,还包含两个属于CBM-50家族的N端赖氨酸基序(VcLysM1和VcLysM2)。为了研究其结构和功能,我们制备了VcLysM2的重组蛋白。VcLysM2的X射线晶体结构成功解析,分辨率为1.2 Å,结果表明该蛋白具有CBM-50家族成员典型的βααβ折叠结构。为了依次完全归属H,N-HSQC谱的主链共振,对C和N标记的蛋白的核磁共振谱进行了分析。几丁质寡糖(GlcNAc)(n = 3-6)的基于核磁共振的滴定实验揭示了VcLysM2的配体结合位点,其中Trp96侧链似乎与配体的末端GlcNAc残基相互作用。然后我们将Trp96突变为丙氨酸(VcLysM2-W96A),并对突变蛋白进行了表征。基于等温滴定量热法,发现(GlcNAc)对VcLysM2的亲和力(-6.9 kcal/mol)明显高于(GlcNAc)(-4.1 kcal/mol),而VcLysM2-W96A中(GlcNAc)和(GlcNAc)之间的亲和力差异(分别为-5.1和-4.0 kcal/mol)仅为中等。这表明VcLysM2的Trp96侧链与(GlcNAc)的糖残基相互作用,而不是与(GlcNAc)相互作用。VcLysM2似乎优先结合链更长的(GlcNAc),并在酶靶标的几丁质成分降解中起主要作用。

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