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来自……的两种几丁质酶LmChiA和LmChiB的酶学特性及结构-功能关系

Enzymatic characterization and structure-function relationship of two chitinases, LmChiA and LmChiB, from .

作者信息

Churklam Wasinee, Aunpad Ratchaneewan

机构信息

Graduate Program in Biomedical Sciences, Faculty of Allied Health Sciences, Thammasat University, Pathum Thani, Thailand.

出版信息

Heliyon. 2020 Jul 1;6(7):e04252. doi: 10.1016/j.heliyon.2020.e04252. eCollection 2020 Jul.

Abstract

possesses two chitinases (LmChiA and LmChiB) belonging to glycoside hydrolase family 18 (GH18). In this study, two chitinase genes ( and ) from 10403S were cloned and their biochemical characteristics were studied. Using colloidal chitin as substrate, both chitinases exhibited maximum catalytic activity at pH 6-7 with optimum temperature at 50 °C. Their activities were stable over broad pH (3-10) and temperature (10-50 °C) ranges. Kinetic analysis using [4NP-(GlcNAc)] as substrate indicated that LmChiB had an approximately 4-fold lower and 2-fold higher than LmChiA, suggesting that the catalytic specificity and efficiency of LmChiB were greater than those of LmChiA. LmChiA and LmChiB showed the same reactivity toward oligomeric substrates and exhibited both non-processive endo-acting and processive exo-acting (chitobiosidase) activity on colloidal chitin, chitin oligosaccharides and 4-nitrophenyl substrates. Structure-based sequence alignments and homology modeling of the catalytic domains revealed that both chitinases consisted of an (α/β) TIM barrel fold with a conserved DXDXE motif. The key residues involved in the substrate hydrolysis were conserved with other bacterial chitinases. The site-directed mutagenesis of conserved Asp and Glu residues in DXDXE motif of both chitinases significantly reduced the chitinolytic activity toward colloidal chitin substrate and revealed their critical role in the catalytic mechanism. LmChiA and LmChiB might have potential in chitin waste utilization and biotechnological applications.

摘要

拥有两个属于糖苷水解酶家族18(GH18)的几丁质酶(LmChiA和LmChiB)。在本研究中,从10403S中克隆了两个几丁质酶基因(和),并研究了它们的生化特性。以胶体几丁质为底物,两种几丁质酶在pH 6 - 7时表现出最大催化活性,最适温度为50℃。它们的活性在较宽的pH范围(3 - 10)和温度范围(10 - 50℃)内保持稳定。以[4NP-(GlcNAc)]为底物的动力学分析表明,LmChiB的Km约比LmChiA低4倍,Vmax比LmChiA高2倍,这表明LmChiB的催化特异性和效率高于LmChiA。LmChiA和LmChiB对寡聚底物表现出相同的反应性,并且对胶体几丁质、几丁质寡糖和4 - 硝基苯基底物均表现出非连续内切作用和连续外切作用(壳二糖酶)活性。基于结构的催化结构域序列比对和同源建模显示,两种几丁质酶均由具有保守DXDXE基序的(α/β)TIM桶状折叠组成。参与底物水解的关键残基与其他细菌几丁质酶保守。对两种几丁质酶DXDXE基序中保守的Asp和Glu残基进行定点诱变,显著降低了对胶体几丁质底物的几丁质分解活性,并揭示了它们在催化机制中的关键作用。LmChiA和LmChiB在几丁质废料利用和生物技术应用方面可能具有潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99d3/7334433/3160281d5b02/gr1.jpg

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