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首页> 外文期刊>Archives of Biochemistry and Biophysics >Contribution to catalysis of ornithine binding residues in ornithine N5-monooxygenase
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Contribution to catalysis of ornithine binding residues in ornithine N5-monooxygenase

机译:对鸟氨酸N5-单加氧酶中鸟氨酸结合残基的催化作用

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摘要

The SidA ornithine N5-monooxygenase from Aspergillus fumigatus is a flavin monooxygenase that catalyzes the NADPH-dependent hydroxylation of ornithine. Herein we report a mutagenesis study targeting four residues that contact ornithine in crystal structures of SidA: Lys107, Asn293, Asn323, and Ser469. Mutation of Lys107 to Ala abolishes activity as measured in steady-state oxygen consumption and ornithine hydroxylation assays, indicating that the ionic interaction of Lys107 with the carboxylate of ornithine is essential for catalysis. Mutation of Asn293, Asn323, or Ser469 individually to Ala results in >14-fold increases in K-m values for ornithine. Asn323 to Ala also increases the rate constant for flavin reduction by NADPH by 18-fold. Asn323 is unique among the four ornithine binding residues in that it also interacts with NADPH by forming a hydrogen bond with the nicotinamide ribose. The crystal structure of N323A complexed with NADP(+) and ornithine shows that the nicontinamide riboside group of NADP is disordered. This result suggests that the increase in flavin reduction rate results from an increase in conformational space available to the enzyme-bound NADP(H). Asn323 thus facilitates ornithine binding at the expense of hindering flavin reduction, which demonstrates the delicate balance that exists within protein-ligand interaction networks in enzyme active sites. (C) 2015 Elsevier Inc. All rights reserved.
机译:来自烟曲霉的SidA鸟氨酸N5-单加氧酶是一种黄素单加氧酶,其催化鸟氨酸的NADPH依赖性羟基化。在本文中,我们报告了一项诱变研究,该研究针对与SidA晶体结构中的鸟氨酸接触的四个残基:Lys107,Asn293,Asn323和Ser469。在稳态耗氧量和鸟氨酸羟基化分析中测得的Lys107突变为Ala消除了活性,表明Lys107与鸟氨酸的羧酸盐之间的离子相互作用对于催化至关重要。 Asn293,Asn323或Ser469分别突变为Ala会导致鸟氨酸K-m值增加> 14倍。 Asn323到Ala也使NADPH减少黄素的速率常数增加了18倍。 Asn323在四个鸟氨酸结合残基中是独特的,因为它也通过与烟酰胺核糖形成氢键与NADPH相互作用。 N323A的晶体结构与NADP(+)和鸟氨酸复合的结果表明,NADP的尼丝胺酰胺核糖苷基团是无序的。该结果表明黄素减少率的增加是由于可用于酶结合的NADP(H)的构象空间增加。因此,Asn323促进鸟氨酸的结合,但阻碍了黄素的减少,这证明了酶活性位点中蛋白质-配体相互作用网络中存在的微妙平衡。 (C)2015 Elsevier Inc.保留所有权利。

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