首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Crystallographic studies of [NiFe]-hydrogenase mutants: towards consensus structures for the elusive unready oxidized states
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Crystallographic studies of [NiFe]-hydrogenase mutants: towards consensus structures for the elusive unready oxidized states

机译:[NiFe]-氢化酶突变体的晶体学研究:难以捉摸的未就绪氧化态的共识结构。

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摘要

Catalytically inactive oxidized O-2-sensitive [NiFe]-hydrogenases are characterized by a mixture of the paramagnetic Ni-A and Ni-B states. Upon O-2 exposure, enzymes in a partially reduced state preferentially form the unready Ni-A state. Because partial O-2 reduction should generate a peroxide intermediate, this species was previously assigned to the elongated Ni-Fe bridging electron density observed for preparations of [NiFe]-hydrogenases known to contain the Ni-A state. However, this proposition has been challenged based on the stability of this state to UV light exposure and the possibility of generating it anaerobically under either chemical or electrochemical oxidizing conditions. Consequently, we have considered alternative structures for the Ni-A species including oxidation of thiolate ligands to either sulfenate or sulfenic acid. Here, we report both new and revised [NiFe]-hydrogenases structures and conclude, taking into account corresponding characterizations by Fourier transform infrared spectroscopy (FTIR), that the Ni-A species contains oxidized cysteine and bridging hydroxide ligands instead of the peroxide ligand we proposed earlier. Our analysis was rendered difficult by the typical formation of mixtures of unready oxidized states that, furthermore, can be reduced by X-ray induced photoelectrons. The present study could be carried out thanks to the use of Desulfovibrio fructosovorans [NiFe]-hydrogenase mutants with special properties. In addition to the Ni-A state, crystallographic results are also reported for two diamagnetic unready states, allowing the proposal of a revised oxidized inactive Ni-SU model and a new structure characterized by a persulfide ion that is assigned to an Ni-'S-ox' species.
机译:催化不活泼的氧化的O-2-敏感[NiFe]-氢化酶的特征是顺磁性Ni-A和Ni-B状态的混合物。暴露于O-2后,处于部分还原状态的酶会优先形成未就绪的Ni-A状态。因为部分O-2还原会产生过氧化物中间体,所以该物质以前被分配给了制备已知包含Ni-A态的[NiFe]氢化酶时观察到的延长的Ni-Fe桥接电子密度。然而,基于该状态对紫外线曝光的稳定性以及在化学或电化学氧化条件下厌氧产生该状态的可能性,对该命题提出了挑战。因此,我们考虑了Ni-A物种的替代结构,包括将硫醇盐配体氧化为亚硫酸盐或亚硫酸。在这里,我们报告了新的和经修订的[NiFe]-氢化酶结构,并得出结论,考虑到傅立叶变换红外光谱(FTIR)的相应特征,Ni-A物种包含氧化的半胱氨酸和桥接的氢氧化物配体,而不是过氧化物配体。较早提出。典型的未就绪氧化态混合物的形成使我们的分析变得困难,此外,还可以通过X射线诱导的光电子将其还原。由于使用了具有特殊特性的果糖脱硫弧菌[NiFe]-氢化酶突变体,因此可以进行本研究。除了Ni-A状态外,还报告了两个抗磁性未就绪状态的晶体学结果,从而提出了修改后的氧化钝化Ni-SU模型和以过硫化物离子为特征的新结构的建议,该结构被分配给Ni-S -ox'种。

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