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5D01

Crystal structure of BshA from B. subtilis complexed with N-acetylglucosaminyl-malate

5D01 の概要
エントリーDOI10.2210/pdb5d01/pdb
関連するPDBエントリー5D00
分子名称N-acetyl-alpha-D-glucosaminyl L-malate synthase, (2S)-2-{[2-acetamido-2-deoxy-alpha-D-glucopyranosyl]oxy}butanedioic acid (3 entities in total)
機能のキーワードbacillithiol, glycosyltransferase, glcnac, gram-positive, transferase
由来する生物種Bacillus subtilis (strain 168)
タンパク質・核酸の鎖数2
化学式量合計85133.82
構造登録者
Cook, P.D.,Winchell, K.R. (登録日: 2015-08-02, 公開日: 2016-09-07, 最終更新日: 2023-09-27)
主引用文献Winchell, K.R.,Egeler, P.W.,VanDuinen, A.J.,Jackson, L.B.,Karpen, M.E.,Cook, P.D.
A Structural, Functional, and Computational Analysis of BshA, the First Enzyme in the Bacillithiol Biosynthesis Pathway.
Biochemistry, 55:4654-4665, 2016
Cited by
PubMed Abstract: Bacillithiol is a compound produced by several Gram-positive bacterial species, including the human pathogens Staphylococcus aureus and Bacillus anthracis. It is involved in maintaining cellular redox balance as well as the destruction of reactive oxygen species and harmful xenobiotic agents, including the antibiotic fosfomycin. BshA, BshB, and BshC are the enzymes involved in bacillithiol biosynthesis. BshA is a retaining glycosyltransferase responsible for the first committed step in bacillithiol production, namely the addition of N-acetylglucosamine to l-malate. Retaining glycosyltransferases like BshA are proposed to utilize an SNi-like reaction mechanism in which leaving group departure and nucleophilic attack occur on the same face of the hexose. However, significant questions regarding the details of how BshA and similar enzymes accommodate their substrates and facilitate catalysis persist. Here we report X-ray crystallographic structures of BshA from Bacillus subtilis 168 bound with UMP and/or GlcNAc-mal at resolutions of 2.15 and 2.02 Å, respectively. These ligand-bound structures, along with our functional and computational studies, provide clearer insight into how BshA and other retaining GT-B glycosyltransferases operate, corroborating the substrate-assisted, SNi-like reaction mechanism. The analyses presented herein can serve as the basis for the design of inhibitors capable of preventing bacillithiol production and, subsequently, help combat resistance to fosfomycin in various pathogenic Gram-positive microorganisms.
PubMed: 27454321
DOI: 10.1021/acs.biochem.6b00472
主引用文献が同じPDBエントリー
実験手法
X-RAY DIFFRACTION (2.02 Å)
構造検証レポート
Validation report summary of 5d01
検証レポート(詳細版)ダウンロードをダウンロード

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件を2026-01-28に公開中

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