National Institute for Medical Research, The Ridgeway, London NW7 1AA, UK.
Nat Commun. 2010 Oct 19;1(7):95. doi: 10.1038/ncomms1097.
Reduced levels of frataxin, an essential protein of as yet unknown function, are responsible for causing the neurodegenerative pathology Friedreich's ataxia. Independent reports have linked frataxin to iron-sulphur cluster assembly through interactions with the two central components of this machinery: desulphurase Nfs1/IscS and the scaffold protein Isu/IscU. In this study, we use a combination of biophysical methods to define the structural bases of the interaction of CyaY (the bacterial orthologue of frataxin) with the IscS/IscU complex. We show that CyaY binds IscS as a monomer in a pocket between the active site and the IscS dimer interface. Recognition does not require iron and occurs through electrostatic interactions of complementary charged residues. Mutations at the complex interface affect the rates of enzymatic cluster formation. CyaY binding strengthens the affinity of the IscS/IscU complex. Our data suggest a new paradigm for understanding the role of frataxin as a regulator of IscS functions.
尚未明确功能的必需蛋白 frataxin 水平降低,是导致神经退行性病变弗里德里希共济失调的原因。独立报告将 frataxin 与铁-硫簇组装联系起来,通过与该机制的两个核心组件相互作用:去硫酶 Nfs1/IscS 和支架蛋白 Isu/IscU。在这项研究中,我们使用一系列生物物理方法来定义 CyaY(细菌 frataxin 的同源物)与 IscS/IscU 复合物相互作用的结构基础。我们表明,CyaY 以单体形式结合到活性位点和 IscS 二聚体界面之间的口袋中。识别不需要铁,而是通过互补带电残基的静电相互作用发生。在复合物界面处的突变会影响酶簇形成的速率。CyaY 结合增强了 IscS/IscU 复合物的亲和力。我们的数据表明,理解 frataxin 作为 IscS 功能调节剂的作用的新范例。