首页> 美国卫生研究院文献>Journal of Bacteriology >Analysis of the Arabinose-5-Phosphate Isomerase of Bacteroides fragilis Provides Insight into Regulation of Single-Domain Arabinose Phosphate Isomerases
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Analysis of the Arabinose-5-Phosphate Isomerase of Bacteroides fragilis Provides Insight into Regulation of Single-Domain Arabinose Phosphate Isomerases

机译:脆弱拟杆菌的阿拉伯糖5-磷酸异构酶的分析提供了对单域阿拉伯糖磷酸异构酶调控的见解。

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摘要

Arabinose-5-phosphate isomerases (APIs) catalyze the interconversion of d-ribulose-5-phosphate and d-arabinose-5-phosphate, the first step in the biosynthesis of 3-deoxy-d-manno-octulosonic acid (Kdo), an essential component of the lipopolysaccharide in Gram-negative bacteria. Classical APIs, such as Escherichia coli KdsD, contain a sugar isomerase domain and a tandem cystathionine beta-synthase domain. Despite substantial effort, little is known about structure-function relationships in these APIs. We recently reported an API containing only a sugar isomerase domain. This protein, c3406 from E. coli CFT073, has no known physiological function. In this study, we investigated a putative single-domain API from the anaerobic Gram-negative bacterium Bacteroides fragilis. This putative API (UniProt ID Q5LIW1) is the only protein encoded by the B. fragilis genome with significant identity to any known API, suggesting that it is responsible for lipopolysaccharide biosynthesis in B. fragilis. We tested this hypothesis by preparing recombinant Q5LIW1 protein (here referred to by the UniProt ID Q5LIW1), characterizing its API activity in vitro, and demonstrating that the gene encoding Q5LIW1 (GenBank ID YP_209877.1) was able to complement an API-deficient E. coli strain. We demonstrated that Q5LIW1 is inhibited by cytidine 5′-monophospho-3-deoxy-d-manno-2-octulosonic acid, the final product of the Kdo biosynthesis pathway, with a Ki of 1.91 μM. These results support the assertion that Q5LIW1 is the API that supports lipopolysaccharide biosynthesis in B. fragilis and is subject to feedback regulation by CMP-Kdo. The sugar isomerase domain of E. coli KdsD, lacking the two cystathionine beta-synthase domains, demonstrated API activity and was further characterized. These results suggest that Q5LIW1 may be a suitable system to study API structure-function relationships.
机译:5-磷酸阿拉伯糖异构酶(API)催化5-磷酸d-核糖-5-磷酸d-阿拉伯糖的相互转化,这是3-deoxy-d-manno-octulosonic acid(Kdo)生物合成的第一步,革兰氏阴性细菌中脂多糖的必需成分。经典API(例如大肠杆菌KdsD)包含糖异构酶域和串联胱硫醚β-合酶域。尽管付出了巨大的努力,但对于这些API中的结构-功能关系知之甚少。我们最近报告了仅包含糖异构酶结构域的API。这种蛋白质,来自大肠杆菌CFT073的c3406,没有已知的生理功能。在这项研究中,我们调查了来自厌氧革兰氏阴性菌脆弱拟杆菌的推定单域API。该推定的API(UniProt ID Q5LIW1)是脆弱的芽孢杆菌基因组编码的唯一蛋白,与任何已知的API都有显着的同一性,这表明它负责脆弱芽孢杆菌的脂多糖生物合成。我们通过制备重组Q5LIW1蛋白(此处由UniProt ID Q5LIW1命名),表征其API体外活性并证明编码Q5LIW1的基因(GenBank ID YP_209877.1)能够弥补API缺陷E大肠杆菌菌株我们证明Q5LIW1被胞嘧啶核苷5'-单磷酸-3-脱氧-d-甘露糖-2-辛磺酸(Kdo生物合成途径的最终产物)抑制,Ki为1.91μM。这些结果支持以下观点:Q5LIW1是支持易碎芽孢杆菌中脂多糖生物合成的API,并且受CMP-Kdo的反馈调节。缺少两个胱硫醚β-合酶结构域的大肠杆菌KdsD的糖异构酶结构域显示了API活性,并得到了进一步表征。这些结果表明Q5LIW1可能是研究API结构与功能关系的合适系统。

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