Department of Chemistry, Stanford University, Stanford, California 94305, United States.
Department of Chemistry, University of California at Davis, Davis, California 95616, United States.
J Am Chem Soc. 2023 Jun 21;145(24):13284-13301. doi: 10.1021/jacs.3c03241. Epub 2023 Jun 9.
In multicopper oxidases (MCOs), the type 1 (T1) Cu accepts electrons from the substrate and transfers these to the trinuclear Cu cluster (TNC) where O is reduced to HO. The T1 potential in MCOs varies from 340 to 780 mV, a range not explained by the existing literature. This study focused on the ∼350 mV difference in potential of the T1 center in Fet3p and laccase (TvL) that have the same 2His1Cys ligand set. A range of spectroscopies performed on the oxidized and reduced T1 sites in these MCOs shows that they have equivalent geometric and electronic structures. However, the two His ligands of the T1 Cu in Fet3p are H-bonded to carboxylate residues, while in TvL they are H-bonded to noncharged groups. Electron spin echo envelope modulation spectroscopy shows that there are significant differences in the second-sphere H-bonding interactions in the two T1 centers. Redox titrations on type 2-depleted derivatives of Fet3p and its D409A and E185A variants reveal that the two carboxylates (D409 and E185) lower the T1 potential by 110 and 255-285 mV, respectively. Density functional theory calculations uncouple the effects of the charge of the carboxylates and their difference in H-bonding interactions with the His ligands on the T1 potential, indicating 90-150 mV for anionic charge and ∼100 mV for a strong H-bond. Finally, this study provides an explanation for the generally low potentials of metallooxidases relative to the wide range of potentials of the organic oxidases in terms of different oxidized states of their TNCs involved in catalytic turnover.
在多铜氧化酶 (MCOs) 中,类型 1 (T1) Cu 从底物接受电子,并将这些电子转移到三核铜簇 (TNC),在那里 O 被还原为 HO。MCOs 中的 T1 电位范围为 340 至 780 mV,这一范围无法用现有文献解释。本研究专注于 Fet3p 和漆酶 (TvL) 中 T1 中心的电位差异约为 350 mV,它们具有相同的 2His1Cys 配体组。对这些 MCOs 中氧化和还原的 T1 位点进行的一系列光谱研究表明,它们具有相同的几何和电子结构。然而,Fet3p 中 T1 Cu 的两个 His 配体与羧酸盐残基形成氢键,而在 TvL 中它们与非带电基团形成氢键。电子自旋回波包络调制光谱表明,两个 T1 中心的第二球氢键相互作用存在显著差异。对 Fet3p 及其 D409A 和 E185A 变体的类型 2 耗尽衍生物的氧化还原滴定表明,两个羧酸盐 (D409 和 E185) 分别使 T1 电位降低 110 和 255-285 mV。密度泛函理论计算分离了羧酸盐的电荷及其与 His 配体的氢键相互作用对 T1 电位的影响,表明阴离子电荷为 90-150 mV,氢键强为 100 mV。最后,本研究从参与催化周转的 TNC 的不同氧化态的角度,为相对于有机氧化酶广泛的电位范围,金属氧化酶的一般低电位提供了解释。