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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Tridentate copper ligand influences on heme-peroxo-copper formation and properties: Reduced, superoxo, and mu-peroxo iron/copper complexes
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Tridentate copper ligand influences on heme-peroxo-copper formation and properties: Reduced, superoxo, and mu-peroxo iron/copper complexes

机译:三齿铜配体对血红素-过氧-铜的形成和性质的影响:还原的,超氧代和μ-过氧铁/铜络合物

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In cytochrome c oxidase synthetic modeling studies, we recently reported a new mu-eta(2):eta(2)-peroxo binding mode in the heteronuclear heme/copper complex [(L-2)Fe-lll-(O-2(2-))-Cu-ll](+) (6) which is effected by tridentate copper chelation (J. Am. Chem. Soc. 2004, 126, 12716). To establish fundamental coordination and O-2-reactivity chemistry, we have studied and describe here (i) the structure and dioxygen reactivity of the copper-free compound (2L)Fell (1), (ii) detailed spectroscopic properties of 6 in comparisons with those of known mu-eta(2):eta(1): heme-peroxo-copper complexes, (iii) formation of 6 from the reactions of [(L-2)(FeCul)-Cu-ll](+) (3) and dioxygen by stopped-flow kinetics, and (iv) reactivities of 6 with CO and PPh3, In the absence of copper, 1 serves as a myoglobin model compound possessing a pyridine-bound five-coordinate iron(ll)-porphyrinate which undergoes reversible dioxygen binding. Oxygenation of 3 below -60 degrees C generates the heme-peroxo-copper complex 6 with strong antiferromagnetic coupling between high-spin iron(lll) and copper(ll) to yield an S = 2 spin system. Stopped-flow kinetics in CH2Cl2/6% EtCN show that dioxygen reacts with iron(ll) first to form a heme-superoxide moiety, [(EtCN)(L-2) Fe-lll(O-2)Cu-...(l)(EtCN)](+) (5), which further reacts with Cu-l to generate 6. Compared to those properties of a known mu-eta(2):eta(1)-heme-peroxo-copper complex, 6 has a significantly diminished resonance Raman nu(O-O) stretching frequency at 747 cm(-1) and distinctive visible absorptions at 485, 541, and 572 nm, all of which seem to be characteristics of a mu-eta(2):eta(2)-heme-peroxo-copper system. Addition of CO or PPh3 to 6 yields a bis-CO adduct of 3 or a PPh3 adduct of 5, the latter with a remaining Fe-lll-(O-2(-)) moiety.
机译:在细胞色素C氧化酶的合成建模研究中,我们最近报道了异核血红素/铜复合物[(L-2)Fe-III-(O-2()中新的mu-eta(2):eta(2)-peroxo结合模式2-))-Cu-11](+)(6),其通过三齿铜螯合实现(J. Am。Chem。Soc。2004,126,12716)。为了建立基本的配位和O-2-反应性化学,我们在这里研究和描述了(i)无铜化合物(2L)的结构和双氧反应性(1),(ii)比较中6的详细光谱性质与已知的mu-eta(2):eta(1):血红素-过氧铜复合物,(iii)由[(L-2)(FeCul)-Cu-II](+)反应形成6 (3)通过停止流动动力学与双氧反应,以及(iv)6与CO和PPh3的反应性,在不存在铜的情况下,1用作肌红蛋白模型化合物,具有吡啶结合的五配位铁(II)-卟啉酸盐经历可逆的双氧结合。低于-60摄氏度的3氧合生成血红素-过氧-铜络合物6,在高自旋铁(III)和铜(II)之间具有强反铁磁耦合,从而产生S = 2自旋体系。 CH2Cl2 / 6%EtCN中的停止流动力学表明,双氧首先与铁(II)反应形成血红素超氧化物部分,[(EtCN)(L-2)Fe-III(O-2)Cu -... (l)(EtCN)](+)(5),它进一步与Cu-1反应生成6。与已知的mu-eta(2):eta(1)-血红素-过氧铜复合物的那些性质相比,6在747 cm(-1)处的共振拉曼nu(OO)拉伸频率明显降低,在485、541和572 nm处具有明显的可见吸收,所有这些似乎都是mu-eta(2)的特征: eta(2)-血红素-过氧-铜系统。将CO或PPh3加成6得到的双-CO加成物为3或PPh3加成物为5,后者具有剩余的Fe-III-(O-2(-))部分。

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