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PMID: 17123542 已发表 · ppublish 英语

Structural and kinetic studies of induced fit in xylulose kinase from Escherichia coli.

Journal of molecular biology ·第 365 卷 ·第 3 期 ·2007-02-21

Di Luccio Eric, Petschacher Barbara, Voegtli Jennifer, Chou Hui-Ting, Stahlberg Henning, Nidetzky Bernd, Wilson David K

摘要

The primary metabolic route for D-xylose, the second most abundant sugar in nature, is via the pentose phosphate pathway after a two-step or three-step conversion to xylulose-5-phosphate. Xylulose kinase (XK; EC 2.7.1.17) phosphorylates D-xylulose, the last step in this conversion. The apo and D-xylulose-bound crystal structures of Escherichia coli XK have been determined and show a dimer composed of two domains separated by an open cleft. XK dimerization was observed directly by a cryo-EM reconstruction at 36 A resolution. Kinetic studies reveal that XK has a weak substrate-independent MgATP-hydrolyzing activity, and phosphorylates several sugars and polyols with low catalytic efficiency. Binding of pentulose and MgATP to form the reactive ternary complex is strongly synergistic. Although the steady-state kinetic mechanism of XK is formally random, a path is preferred in which D-xylulose binds before MgATP. Modelling of MgATP binding to XK and the accompanying conformational change suggests that sugar binding is accompanied by a dramatic hinge-bending movement that enhances interactions with MgATP, explaining the observed synergism. A catalytic mechanism is proposed and supported by relevant site-directed mutants.

文献信息
期刊
Journal of molecular biology
期刊简称
J Mol Biol
发表日期
2007-02-21
收录日期
2006-12-26
更新日期
2016-10-19
语言
英语
国家/地区
England
NLM ID
2985088R
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