Active-site models of bacterial nitric oxide red'/> Active-Site Models of Bacterial Nitric Oxide Reductase Featuring Tris-Histidyl and Glutamic Acid Mimics: Influence of Carboxylate Ligand on FeB Binding and Heme Fe/FeB Redox Potential
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Active-Site Models of Bacterial Nitric Oxide Reductase Featuring Tris-Histidyl and Glutamic Acid Mimics: Influence of Carboxylate Ligand on FeB Binding and Heme Fe/FeB Redox Potential

机译:具有三组氨酸和谷氨酸模拟物的细菌一氧化氮还原酶的主动站点模型:羧酸盐配体对FeB结合和血红素Fe / FeB氧化还原电位的影响

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摘要

Active-site models of bacterial nitric oxide reductase (NOR) featuring a heme iron and a trisimidazole and a glutaric acid-bound non-heme iron (FeB) have been synthesized. These models closely replicate the proposed active site of native NORs. Examination of these models shows that the glutamic acid mimic is required for both FeB retention in the distal binding site and proper modulation of the redox potentials of both the heme and non-heme irons.
机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1->已经合成了具有血红素铁和三咪唑和戊二酸键合的非血红素铁(FeB)的细菌一氧化氮还原酶(NOR)的活性位点模型。这些模型紧密复制了拟议的本地NOR活动站点。这些模型的检验表明,谷氨酸模拟物对于FeB保留在远端结合位点以及血红素和非血红素铁的氧化还原电位的适当调节都是必需的。

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