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嗜色杆菌几丁质酶的克隆、高效表达及其保守或非保守残基对催化活性的作用

Cloning and high-level production of a chitinase from Chromobacterium sp. and the role of conserved or nonconserved residues on its catalytic activity.

作者信息

Park Seur Kee, Kim Chi Wook, Kim Hoon, Jung Jae Sung, Harman G E

机构信息

Department of Agricultural Biology, Sunchon National University, Sunchon, South Korea.

出版信息

Appl Microbiol Biotechnol. 2007 Mar;74(4):791-804. doi: 10.1007/s00253-006-0614-0. Epub 2007 Feb 9.

Abstract

A gene encoding an alkaline (pI of 8.67) chitinase was cloned and sequenced from Chromobacterium sp. strain C-61. The gene was composed of 1,611 nucleotides and encoded a signal sequence of 26 N-terminal amino acids and a mature protein of 510 amino acids. Two chitinases of 54 and 52 kDa from both recombinant Escherichia coli and C-61 were detected on SDS-PAGE. Maximum chitinase activity was obtained in the culture supernatant of recombinant E. coli when cultivated in TB medium for 6 days at 37 degrees C and was about fourfold higher than that from C-61. Chi54 from the culture supernatants could be purified by a single step based on isoelectric point. The purified Chi54 had about twofold higher binding affinity to chitin than to cellulose. The chi54 encoded a protein that included a type 3 chitin-binding domain belonging to group A and a family 18 catalytic domain belonging to subfamily A. In the catalytic domain, mutation of perfectly conserved residues and highly conserved residues resulted in loss of nearly all activity, while mutation of nonconserved residues resulted in enzymes that retained activity. In this process, a mutant (T218S) was obtained that had about 133% of the activity of the wild type, based on comparison of K (cat) values.

摘要

从嗜色杆菌属菌株C-61中克隆并测序了一个编码碱性(pI为8.67)几丁质酶的基因。该基因由1611个核苷酸组成,编码一个由26个N端氨基酸组成的信号序列和一个由510个氨基酸组成的成熟蛋白。在SDS-PAGE上检测到来自重组大肠杆菌和C-61的两种分子量分别为54 kDa和52 kDa的几丁质酶。重组大肠杆菌在TB培养基中于37℃培养6天时,其培养上清液中获得最大几丁质酶活性,比C-61的活性高约四倍。培养上清液中的Chi54可基于等电点通过一步法纯化。纯化后的Chi54与几丁质的结合亲和力比与纤维素的结合亲和力高约两倍。chi54编码的蛋白质包含一个属于A组的3型几丁质结合结构域和一个属于A亚家族的18家族催化结构域。在催化结构域中,完全保守残基和高度保守残基的突变导致几乎所有活性丧失,而非保守残基的突变导致酶保留活性。在此过程中,通过比较K(cat)值,获得了一个活性约为野生型133%的突变体(T218S)。

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