Centre for Molecular and Structural Biochemistry, School of Chemistry, University of East Anglia, Norwich NR4 7TJ, United Kingdom.
J Am Chem Soc. 2011 Feb 2;133(4):1112-21. doi: 10.1021/ja109581t. Epub 2010 Dec 23.
The reactivity of protein bound iron-sulfur clusters with nitric oxide (NO) is well documented, but little is known about the actual mechanism of cluster nitrosylation. Here, we report studies of members of the Wbl family of [4Fe-4S] containing proteins, which play key roles in regulating developmental processes in actinomycetes, including Streptomyces and Mycobacteria, and have been shown to be NO responsive. Streptomyces coelicolor WhiD and Mycobacterium tuberculosis WhiB1 react extremely rapidly with NO in a multiphasic reaction involving, remarkably, 8 NO molecules per [4Fe-4S] cluster. The reaction is 10(4)-fold faster than that observed with O(2) and is by far the most rapid iron-sulfur cluster nitrosylation reaction reported to date. An overall stoichiometry of Fe(4)S(4)(Cys)(4) + 8NO → 2Fe(I)(2)(NO)(4)(Cys)(2) + S(2-) + 3S(0) has been established by determination of the sulfur products and their oxidation states. Kinetic analysis leads to a four-step mechanism that accounts for the observed NO dependence. DFT calculations suggest the possibility that the nitrosylation product is a novel cluster Fe(I)(4)(NO)(8)(Cys)(4) derived by dimerization of a pair of Roussin's red ester (RRE) complexes.
蛋白质结合的铁硫簇与一氧化氮(NO)的反应性已有充分的文献记载,但对于簇亚硝化为实际机制知之甚少。在这里,我们报告了含有 [4Fe-4S] 的 Wbl 家族成员的研究,这些蛋白在调节放线菌(包括链霉菌和分枝杆菌)的发育过程中起着关键作用,并且已经被证明对 NO 有反应。链霉菌的 WhiD 和分枝杆菌的 WhiB1 与 NO 发生快速的多相反应,每个 [4Fe-4S] 簇涉及到令人瞩目的 8 个 NO 分子。该反应比与 O(2) 的反应快 10(4)倍,是迄今为止报道的最快的铁硫簇亚硝化为反应。通过确定硫产物及其氧化态,建立了 Fe(4)S(4)(Cys)(4) + 8NO → 2Fe(I)(2)(NO)(4)(Cys)(2) + S(2-) + 3S(0) 的总体化学计量。动力学分析导致了一个四步机制,解释了观察到的对 NO 的依赖性。DFT 计算表明,亚硝化为产物可能是一种新型的簇 Fe(I)(4)(NO)(8)(Cys)(4),由一对 Roussin 的红酯(RRE)复合物的二聚化衍生而来。