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大肠杆菌鼠李糖变旋酶单糖特异性的结构见解。

Structural insights into the monosaccharide specificity of Escherichia coli rhamnose mutarotase.

作者信息

Ryu Kyoung-Seok, Kim Jung-In, Cho Sung-Jae, Park Dongkyu, Park Chankyu, Cheong Hae-Kap, Lee Jie-Oh, Choi Byong-Seok

机构信息

Yusong-Gu, Yeoeun-Dong 52, Magnetic Resonance Team, Korea Basic Science Institute, Daejon 305-333, South Korea.

出版信息

J Mol Biol. 2005 May 27;349(1):153-62. doi: 10.1016/j.jmb.2005.03.047. Epub 2005 Apr 7.

DOI:10.1016/j.jmb.2005.03.047
PMID:15876375
Abstract

The crystal structure of Escherichia coli rhamnose mutarotase (YiiL) is completely different from the previously reported structures of the Lactococcus lactis galactose mutarotase and the Bacillus subtilis RbsD (pyranase). YiiL exists as a locally asymmetric dimer, which is stabilized by an intermolecular beta-sheet, various hydrophobic interactions, and a cation-pi interaction with a salt-bridge. The protein folds of YiiL are similar to those of a Streptomyces coelicolor mono-oxygenase and a hypothetical Arabidopsis thaliana protein At3g17210. By assaying the enzymatic activity of six active-site mutants and by comparing the crystal structure-derived active site conformations of YiiL, RbsD, and a galactose mutarotase, we were able to define the amino acid residues required for catalysis and suggest a possible catalytic mechanism for YiiL. Although the active-site amino acid residues of YiiL (His, Tyr, and Trp) differ greatly from those of galactose mutarotase (His, Glu, and Asp), their geometries, which determine the structures of the preferred monosaccharide substrates, are conserved. In addition, the in vivo function of YiiL was assessed by constructing a mutant E.coli strain that carries a yiiL deletion. The presence of the yiiL gene is critical for efficient cell growth only when concentrations of l-rhamnose are limited.

摘要

大肠杆菌鼠李糖变旋酶(YiiL)的晶体结构与先前报道的乳酸乳球菌半乳糖变旋酶和枯草芽孢杆菌RbsD(吡喃糖酶)的结构完全不同。YiiL以局部不对称二聚体形式存在,通过分子间β-折叠、各种疏水相互作用以及与盐桥的阳离子-π相互作用得以稳定。YiiL的蛋白质折叠与天蓝色链霉菌单加氧酶和拟南芥假定蛋白At3g17210的折叠相似。通过测定六个活性位点突变体的酶活性,并比较YiiL、RbsD和半乳糖变旋酶晶体结构衍生的活性位点构象,我们能够确定催化所需的氨基酸残基,并提出YiiL可能的催化机制。尽管YiiL的活性位点氨基酸残基(His、Tyr和Trp)与半乳糖变旋酶的(His、Glu和Asp)有很大差异,但它们决定优选单糖底物结构的几何形状是保守的。此外,通过构建携带yiiL缺失的突变大肠杆菌菌株来评估YiiL的体内功能。仅当L-鼠李糖浓度有限时,yiiL基因的存在对细胞高效生长才至关重要。

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