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杯碟蛋白支架中的碳烯:活性位点中组氨酸配体的取代极大地改变了铜的氧化还原性质。

Carbene in Cupredoxin Protein Scaffolds: Replacement of a Histidine Ligand in the Active Site Substantially Alters Copper Redox Properties.

机构信息

School of Chemistry, University of Nottingham, University Park, Nottingham, NG7 2RD, UK.

Department of Chemistry & Biochemistry, Universität Bern, Freiestrasse 3, 3012, Bern, Switzerland.

出版信息

Angew Chem Int Ed Engl. 2018 Aug 13;57(33):10677-10682. doi: 10.1002/anie.201807168. Epub 2018 Jul 24.

Abstract

N-heterocyclic carbene (NHC) ligands have had a major impact in homogeneous catalysis, however, their potential role in biological systems is essentially unexplored. We replaced a copper-coordinating histidine (His) in the active site of the redox enzyme azurin with exogenous dimethyl imidazolylidene. This NHC rapidly restores the type-1 Cu center, with spectroscopic properties (EPR, UV/Vis) that are identical to those from N-coordination of the His in the wild type. However, the introduction of the NHC markedly alters the redox potential of the metal, which is a key functionality of this blue copper protein. These results suggest that C-bonding for histidine is plausible and a potentially relevant bonding mode of redox-active metalloenzymes in their (transient) active states.

摘要

氮杂环卡宾(NHC)配体在均相催化中具有重大影响,但它们在生物系统中的潜在作用基本上尚未得到探索。我们用外源性二甲基咪唑基取代氧化还原酶蓝铜中的铜配位组氨酸(His)在活性部位。这种 NHC 可以快速恢复 1 型 Cu 中心,其光谱性质(EPR、UV/Vis)与野生型 His 的 N 配位完全相同。然而,引入 NHC 会显著改变金属的氧化还原电位,这是这种蓝铜蛋白的关键功能。这些结果表明,组氨酸的 C 键合是合理的,并且在其(瞬态)活性状态下,是氧化还原活性金属酶的一种潜在相关键合模式。

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