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Catalysis at a dinuclear [CuSMo(O)OH] cluster in a CO dehydrogenase resolved at 1.1-Å resolution

机译:在双核[CuSMo(O)OH]簇中以1.1-Å分辨率解析的CO脱氢酶中的催化

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摘要

The CO dehydrogenase of the eubacterium Oligotropha carboxidovorans is a 277-kDa Mo- and Cu-containing iron-sulfur flavoprotein. Here, the enzyme's active site in the oxidized or reduced state, after inactivation with potassium cyanide or with n-butylisocyanide bound to the active site, has been reinvestigated by multiple wavelength anomalous dispersion measurements at atomic resolution, electron spin resonance spectroscopy, and chemical analyses. We present evidence for a dinuclear heterometal [CuSMo(O)OH] cluster in the active site of the oxidized or reduced enzyme, which is prone to cyanolysis. The cluster is coordinated through interactions of the Mo with the dithiolate pyran ring of molybdopterin cytosine dinucleotide and of the Cu with the Sγ of Cys-388, which is part of the active-site loop VAYRC388SFR. The previously reported active-site structure [Dobbek, H., Gremer, L., Meyer, O. & Huber, R. (1999) Proc. Natl. Acad. Sci. USA 96, 8884–8889] of an Mo with three oxygen ligands and an SeH-group bound to the Sγ atom of Cys-388 could not be confirmed. The structure of CO dehydrogenase with the inhibitor n-butylisocyanide bound has led to a model for the catalytic mechanism of CO oxidation which involves a thiocarbonate-like intermediate state. The dinuclear [CuSMo(O)OH] cluster of CO dehydrogenase establishes a previously uncharacterized class of dinuclear molybdoenzymes containing the pterin cofactor.
机译:真细菌Oligotropha carboxidovorans的CO脱氢酶是一种277 kDa的含Mo和Cu的铁硫黄素蛋白。在此,通过氰化钾或结合在活性位点上的正丁基异氰酸酯失活后,处于氧化或还原状态的酶的活性位点已通过原子分辨率,电子自旋共振光谱和化学分析的多波长异常色散测量进行了重新研究。 。我们目前的证据表明,在氧化或还原酶的活性位点中,双核杂金属[CuSMo(O)OH]簇很容易发生氰解作用。通过Mo与钼蝶呤胞嘧啶二核苷酸的二硫醇吡喃环和Cu与Cys-388的Sγ的相互作用来协调该簇,Cys-388是活性位点环VAYRC388SFR的一部分。先前报道的活性部位结构[Dobbek,H.,Gremer,L.,Meyer,O。和Huber,R。(1999)Proc.Natl.Acad.Sci.USA 90:5873-5877。 Natl。学院科学[USA 96,8884–8889]的Mo具有三个氧配体和一个与Cys-388的Sγ原子键合的SeH-基团,尚未得到证实。具有抑制剂正丁基异氰化物键合的CO脱氢酶的结构已导致建立了一种CO催化机理的模型,该模型涉及一种类似于硫代碳酸酯的中间态。 CO脱氢酶的双核[CuSMo(O)OH]簇建立了以前未表征的包含蝶呤辅因子的一类双核钼酶。

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