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The Molecular Bases of the Dual Regulation of Bacterial Iron Sulfur Cluster Biogenesis by CyaY and IscX

机译:CyaY和IscX对细菌铁硫团簇生物发生双重调控的分子基础

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摘要

IscX (or YfhJ) is a protein of unknown function which takes part in the iron-sulfur cluster assembly machinery, a highly specialized and essential metabolic pathway. IscX binds to iron with low affinity and interacts with IscS, the desulfurase central to cluster assembly. Previous studies have suggested a competition between IscX and CyaY, the bacterial ortholog of frataxin, for the same binding surface of IscS. This competition could suggest a link between the two proteins with a functional significance. Using a hybrid approach based on nuclear magnetic resonance, small angle scattering and biochemical methods, we show here that IscX is a modulator of the inhibitory properties of CyaY: by competing for the same site on IscS, the presence of IscX rescues the rates of enzymatic cluster formation which are inhibited by CyaY. The effect is stronger at low iron concentrations, whereas it becomes negligible at high iron concentrations. These results strongly suggest the mechanism of the dual regulation of iron sulfur cluster assembly under the control of iron as the effector.
机译:IscX(或YfhJ)是一种功能未知的蛋白质,它参与铁硫簇装配机械(一种高度专业化且必不可少的代谢途径)。 IscX以低亲和力与铁结合,并与IscS相互作用,后者是簇组装的关键。先前的研究表明,IscX和CataY(一种frataxin的细菌直系同源物)之间存在着与IscS相同的结合表面的竞争。这种竞争可能表明两种蛋白质之间具有功能上的意义。使用基于核磁共振,小角度散射和生化方法的混合方法,我们在这里表明IscX是CyaY抑制特性的调节剂:通过竞争IscS上的相同位点,IscX的存在可以提高酶促速率被CyaY抑制的簇形成。在低铁浓度下效果更强,而在高铁浓度下效果可忽略不计。这些结果强烈暗示了在铁作为效应子的控制下铁硫簇簇组装的双重调控机制。

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