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What causes iron–sulphur bonds in active sites of one-iron superoxide reductase and two-iron superoxide reductase to differ

机译:是什么导致一铁超氧化物还原酶和二铁超氧化物还原酶的活性位中的铁硫键不同

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The electronic and vibrational properties of [Fe(NHis)_4(SCys)] sites responsible for the catalysis of superoxide reduction in two types of superoxide reductase (SOR), one-iron superoxide reductase (1Fe-SOR) and two-iron superoxide reductase (2Fe-SOR), were compared previously (Clay et al., 2003); the differences between these two classes of SOR, examined by UV-VIS and NIR absorption, VTMCD, and vibrational spectroscopy techniques, were interpreted as being indicative of weaker Fe--S bonds in 2Fe-SOR in comparison with 1Fe-SOR. Here, we report on density functional (DFT) and semi-empirical (ZINDO/S-CI) calculations exploring the extent of this difference in bonding between the two classes of SOR. The differences observed experimentally between the electronic spectra of the two SORs are shown to probably arise either from different degrees of torsion between the Fe---ligand bonds or from differences in length of the Fe—carboxylate bond, but are shown to be incompatible with any significant differences in Fe S bond lengths. The differences observed in the vibrational spectra between the two SORs are shown to correlate with differences in the Fe---S bond length of no more than 0.01 A, which in turn arise from slight differences in the polarity of the medium surrounding the iron active site in the two proteins.
机译:[Fe(NHis)_4(SCys)]位点的电子和振动性质负责催化两种类型的超氧化物还原酶(SOR),一铁超氧化物还原酶(1Fe-SOR)和二铁超氧化物还原酶中的超氧化物还原(2Fe-SOR),之前已进行过比较(Clay等,2003);通过UV-VIS和NIR吸收,VTMCD和振动光谱技术检查的这两类SOR之间的差异被解释为表明2Fe-SOR中的Fe-S键比1Fe-SOR弱。在这里,我们报告了密度泛函(DFT)和半经验(ZINDO / S-CI)计算,探讨了两类SOR之间键合差异的程度。在实验中观察到的两个SOR的电子光谱之间的差异可能是由于Fe-配体键之间的扭转程度不同或由于Fe-羧酸酯键的长度不同而引起的,但表明与SOR不相容。 Fe S键长的任何显着差异。在两个SOR之间的振动光谱中观察到的差异表明与Fe--S键长不超过0.01 A的差异相关,而这又是由于铁活性物质周围介质极性的微小差异引起的两种蛋白质中的位点。

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