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Dioxygen reactivity of copper and heme-copper complexes possessing an imidazole-phenol cross-link

机译:具有咪唑-苯酚交联的铜和血红素铜配合物的双氧反应性

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Recent spectroscopic, kinetics, and structural studies on cytochrome c oxidases (CcOs) suggest that the histidine-tyrosine cross-link at the heme a(3)-Cu-B binuclear active site plays a key role in the reductive O-2-cleavage process. In this report, we describe dioxygen reactivity of copper and heme/Cu assemblies in which the imidazole-phenol moieties are employed as a part of copper ligand (LOH)-O-N4 (2- 4-[2-(bis-pyridin-2-ylmethyl-amino)-ethyl]-imidazol-1-yl}-4,6-di-tert-butyl-phenol). Stopped-flow kinetic studies reveal that low-temperature oxygenation of [Cu-I((LOH)-O-N4)](+) (1) leads to rapid formation of a copper-superoxo species [Cu-II((LOH)-O-N4)(O-2(-))](+) (1a), which further reacts with 1 to form the 2:1 Cu:O-2 adduct, peroxo complex [{Cu-II((LOH)-O-N4)}(2)(O-2(2-))](2+) (1b). Complex 1b is also short-lived, and a dimer Cu(II)-phenolate complex [CuII((LO-)-O-N4)](2)(2+) (1c) eventually forms as a final product in the later stage of the oxygenation reaction, Dioxygen reactivities of 1 and its anisole analogue [Cu-I((LOMe)-O-N4)](+) (2) in the presence of a heme complex (F-8)Fe-II (3) (F-8 = tetrakis(2,6,-difluorotetraphenyl)-porphyrinate) are also described. Spectroscopic investigations including UV-vis, H-1 and H-2 NMR, EPR, and resonance Raman spectroscopies along with spectrophotometric titration reveal that low-temperature oxygenation of 1/3 leads to formation of a heme-peroxo-copper species [(F-8)Fe-III-(O-2(2-))-Cu-II((LOH)-O-N4)](+) (4), v((O-O)) = 813 cm(-1). Complex 4 is an S = 2 spin system with strong antiferromagnetic coupling between high-spin iron(III) and copper(II) through a bridging peroxide ligand. A very similar complex [(F-8)Fe-III-(O-2(2-))-Cu-II((LOMe)-O-N4)](+) (5) (v((O-O)) = 815 cm(-1)) can be generated by utilizing the anisole compound 2, which indicates that the cross-linked phenol moiety in 4 does not interact with the bridging peroxo group between heme and copper. This investigation thus reveals that a stable heme-peroxo-copper species can be generated even in the presence of an imidazole-phenol group (i.e., possible electron/proton donor source) in close proximity. Future studies are needed to probe key factors that can trigger the reductive O-O cleavage in CcO model compounds.
机译:最近对细胞色素C氧化酶(CcOs)的光谱,动力学和结构研究表明,血红素a(3)-Cu-B双核活性位点处的组氨酸-酪氨酸交联在还原O-2-裂解中起关键作用处理。在本报告中,我们描述了铜和血红素/铜组装体的双氧反应性,其中咪唑-酚部分被用作铜配体(LOH)-O-N4(2- 4- [2-(双-吡啶- (2-基甲基-氨基)-乙基]-咪唑-1-基} -4,6-二叔丁基苯酚)。停止流动力学研究表明[Cu-I((LOH)-O-N4)](+)的低温氧合(1)导致铜超氧物种[Cu-II((LOH) -O-N4)(O-2(-))](+)(1a),它进一步与1反应形成2:1 Cu:O-2加合物,过氧配合物[{Cu-II((LOH) -O-N4)}(2)(O-2(2-))](2+)(1b)。配合物1b也是短暂的,二聚体Cu(II)-酚盐配合物[CuII((LO-)-O-N4)](2)(2+)(1c)最终形成为终产物氧合反应阶段,在血红素络合物(F-8)Fe-II存在下,1及其苯甲醚类似物[Cu-I((LOMe)-O-N4)](+)(2)的双氧反应性( 3)也描述了(F-8 =四(2,6,-二氟四苯基)-卟啉酸酯)。光谱研究包括UV-vis,H-1和H-2 NMR,EPR和共振拉曼光谱以及分光光度滴定法表明1/3的低温氧合导致形成血红素-过氧-铜物种[[F -8)Fe-III-(O-2(2-))-Cu-II((LOH)-O-N4)](+)(4),v((OO))= 813 cm(-1) 。配合物4是S = 2自旋系统,通过桥接的过氧化物配体在高自旋铁(III)和铜(II)之间具有强反铁磁耦合。非常相似的复合物[(F-8)Fe-III-(O-2(2-))-Cu-II((LOMe)-O-N4)](+)(5)(v((OO))苯甲醚化合物2可以生成815 cm(-1)),这表明4中的交联酚部分不与血红素和铜之间的桥接过氧基团相互作用。因此,该研究表明,即使在紧邻咪唑-酚基团(即,可能的电子/质子供体源)的存在下,也可以产生稳定的血红素-过氧-铜物质。需要进一步的研究来探究可能触发CcO模型化合物中还原性O-O裂解的关键因素。

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