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首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Insights into the function of RifI2: Structural and biochemical investigation of a new shikimate dehydrogenase family protein
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Insights into the function of RifI2: Structural and biochemical investigation of a new shikimate dehydrogenase family protein

机译:深入了解RifI2的功能:一种新型sh草酸脱氢酶家族蛋白的结构和生化研究

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The shikimate dehydrogenase (SDH) family consists of enzymes with diverse roles in secondary metabolism. The two most widespread members of the family, AroE and YdiB, function in amino acid biosynthesis and quinate catabolism, respectively. Here, we have determined the crystal structure of an SDH homolog belonging to the RifI class, a group of enzymes with proposed roles in antibiotic biosynthesis. The structure of RifI2 from Pseudomonas putida exhibits a number of distinctive features, including a substantial C-terminal truncation and an atypical mode of oligomerization. The active site of the enzyme contains substrate- and cofactor-binding motifs that are significantly different from those of any previously characterized member of the SDH family. These features are reflected in the novel kinetic properties of the enzyme. RifI2 exhibits much lower activity using shikimate as a substrate than AroE, and a strong preference for NAD+ instead of NADP+ as a cofactor. Moreover, the enzyme has only trace activity using quinate, unlike YdiB. Cocrystallization of RifI2 with NAD+ provided the opportunity to determine the mode of cofactor selectivity employed by the enzyme. We complemented this analysis by probing the role of a strictly conserved residue in the cofactor-binding domain, Asn193, by site directed mutagenesis. This study presents the first crystal structure and formal kinetic characterization of a new NAD+-dependent member of the SDH family. ? 2012 Elsevier B.V.
机译:sh草酸脱氢酶(SDH)家族由在次级代谢中具有多种作用的酶组成。该家族中两个最普遍的成员AroE和YdiB分别在氨基酸生物合成和奎宁酸分解代谢中起作用。在这里,我们确定了属于RifI类的SDH同源物的晶体结构,RifI类是在抗生素生物合成中具有拟议作用的一组酶。来自恶臭假单胞菌(Pseudomonas putida)的RifI2的结构表现出许多独特的特征,包括大量的C末端截短和非典型的寡聚模式。该酶的活性位点包含与底物和辅因子结合的基序,这些基序与SDH家族以前鉴定过的成员的基序明显不同。这些特征反映在酶的新的动力学特性中。使用sh草酸作为底物,RifI2的活性要比AroE低得多,并且对NAD +而不是NADP +的辅助因子的要求很高。此外,与YdiB不同,使用奎宁酸酯时,该酶仅具有微量活性。 RifI2与NAD +的共结晶提供了确定酶所用辅因子选择性模式的机会。我们通过定点诱变探索辅因子结合结构域Asn193中严格保守的残基的作用来补充此分析。这项研究提出了SDH家族中一个新的NAD +依赖性成员的第一个晶体结构和形式动力学特征。 ? 2012年Elsevier B.V.

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