The 2.2 Å resolution structure of RpiB/AlsB from Escherichia coli illustrates a new approach to the ribose-5-phosphate isomerase reaction

被引:52
作者
Zhang, RG
Andersson, CE
Skarina, T
Evdokimova, E
Edwards, AM
Joachimiak, A
Savchenko, A
Mowbray, SL
机构
[1] Argonne Natl Lab, Struct Biol Ctr, Biosci Div, Argonne, IL 60439 USA
[2] Uppsala Univ, Dept Cell & Mol Biol, Biomed Ctr, S-75124 Uppsala, Sweden
[3] Univ Toronto, Hlth Network, Toronto, ON M5G 2C4, Canada
[4] Univ Toronto, Banting & Best Dept Med Res, Toronto, ON M5G 1L7, Canada
[5] Swedish Univ Agr Sci, Ctr Biomed, Dept Mol Biosci, Div Struct Biol, S-75124 Uppsala, Sweden
基金
美国国家卫生研究院;
关键词
ribose-5-phosphate isomerase; pentose phosphate pathway; galactose-6-phosphate isomerase; MAD; X-ray crystallography;
D O I
10.1016/j.jmb.2003.08.009
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Ribose-5-phosphate isomerases (EC 5.3.1.6) interconvert ribose 5-phosphate and ribulose 5-phosphate. This reaction permits the synthesis of ribose from other sugars, as well as the recycling of sugars from nucleotide breakdown. Two unrelated types of enzyme can catalyze the reaction. The most common, RpiA, is present in almost all organisms (including Escherichia coli), and is highly conserved. The second type, RpiB, is present in some bacterial and eukaryotic species and is well conserved. In E. coli, RpiB is sometimes referred to as AlsB, because it can take part in the metabolism of the rare sugar, allose, as well as the much more common ribose sugars. We report here the structure of RpiB/AlsB from E. coli, solved by multi-wavelength anomalous diffraction (MAD) phasing, and refined to 2.2 Angstrom resolution. RpiB is the first structure to be solved from pfam02502 (the RpiB/LacAB family). It exhibits a Rossmann-type alphabetaalpha-sandwich fold that is common to many nucleotide-binding proteins, as well as other proteins with different functions. This structure is quite distinct from that of the previously solved RpiA; although both are, to some extent, based on the Rossmann fold, their tertiary and quaternary structures are very different. The four molecules in the RpiB asymmetric unit represent a dimer of dimers. Active-site residues were identified at the interface between the subunits, such that each active site has contributions from both subunits. Kinetic studies indicate that RpiB is nearly as efficient as RpiA, despite its completely different catalytic machinery. The sequence and structural results further suggest that the two homologous components of LacAB (galactose-6-phosphate isomerase) will compose a bi-functional enzyme; the second activity is unknown. (C) 2003 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1083 / 1094
页数:12
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