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来自合成基因的棘孢木霉42 kDa几丁质酶(Ta-CHI42)在大肠杆菌中的表达。

Expression of 42 kDa chitinase of Trichoderma asperellum (Ta-CHI42) from a synthetic gene in Escherichia coli.

作者信息

Luong Nguyen Ngoc, Tien Nguyen Quang Duc, Huy Nguyen Xuan, Tue Nguyen Hoang, Man Le Quang, Sinh Duong Duc Hoang, Van Thanh Dang, Chi Duong Thi Kim, Hoa Phung Thi Bich, Loc Nguyen Hoang

机构信息

Institute of Bioactive Compounds and Department of Biotechnology, University of Sciences, Hue University, 77 Nguyen Hue st, Hue 530000, Vietnam.

Department of Biology, University of Education, 34 Le Loi st, Hue 530000, Vietnam.

出版信息

FEMS Microbiol Lett. 2021 Sep 1;368(16). doi: 10.1093/femsle/fnab110.

Abstract

Chitinases are enzymes that catalyze the degradation of chitin, a major component of the cell walls of pathogenic fungi and cuticles of insects, gaining increasing attention for the control of fungal pathogens and insect pests. Production of recombinant chitinase in a suitable host can result in a more pure product with less processing time and a significantly larger yield than that produced by native microorganisms. The present study aimed to express the synthetic chi42 gene (syncodChi42), which was optimized from the chi42 gene of Trichoderma asperellum SH16, in Escherichia coli to produce 42 kDa chitinase (Ta-CHI42); then determined the activity of this enzyme, characterizations and in vitro antifungal activity as well as its immunogenicity in mice. The results showed that Ta-CHI42 was overexpressed in E. coli. Analysis of the colloidal chitin hydrolytic activity of purified Ta-CHI42 on an agar plate revealed that this enzyme was in a highly active form. This is a neutral chitinase with pH stability in a range of 6-8 and has an optimum temperature of 45°C with thermal stability in a range of 25-35°C. The chitinolytic activity of Ta-CHI42 was almost completely abolished by 5 mM Zn2+ or 1% SDS, whereas it remained about haft under the effect of 1 M urea, 1% Triton X-100 or 5 mM Cu2+. Except for ions such as Mn2+ and Ca2+ at 5 mM that have enhanced chitinolytic activity; 5 mM of Na+, Fe2+ or Mg2+ ions or 1 mM EDTA negatively impacted the enzyme. Ta-CHI42 at 60 U/mL concentration strongly inhibited the growth of the pathogenic fungus Aspergillus niger. Analysis of western blot indicated that the polyclonal antibody against Ta-CHI42 was greatly produced in mice. It can be used to analyze the expression of the syncodChi42 gene in transgenic plants, through immunoblotting assays, for resistance to pathogenic fungi.

摘要

几丁质酶是催化几丁质降解的酶,几丁质是致病真菌细胞壁和昆虫角质层的主要成分,在控制真菌病原体和害虫方面越来越受到关注。在合适的宿主中生产重组几丁质酶可以得到更纯的产品,加工时间更短,产量比天然微生物生产的产量显著更高。本研究旨在在大肠杆菌中表达从棘孢木霉SH16的chi42基因优化而来的合成chi42基因(syncodChi42),以产生42 kDa的几丁质酶(Ta-CHI42);然后测定该酶的活性、特性、体外抗真菌活性以及在小鼠中的免疫原性。结果表明,Ta-CHI42在大肠杆菌中过表达。在琼脂平板上对纯化的Ta-CHI42的胶体几丁质水解活性进行分析,结果显示该酶呈高活性形式。这是一种中性几丁质酶,pH稳定性在6-8范围内,最适温度为45°C,热稳定性在25-35°C范围内。5 mM Zn2+或1% SDS几乎完全消除了Ta-CHI42的几丁质分解活性,而在1 M尿素、1% Triton X-100或5 mM Cu2+的作用下,其活性仍保留约一半。除了5 mM的Mn2+和Ca2+等离子增强了几丁质分解活性外;5 mM的Na+、Fe2+或Mg2+离子或1 mM EDTA对该酶有负面影响。浓度为60 U/mL的Ta-CHI42强烈抑制致病真菌黑曲霉的生长。蛋白质免疫印迹分析表明,针对Ta-CHI42的多克隆抗体在小鼠中大量产生。它可用于通过免疫印迹分析来分析转基因植物中syncodChi42基因的表达,以检测对致病真菌的抗性。

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