Raulfs Estella C, O'Carroll Ina P, Dos Santos Patricia C, Unciuleac Mihaela-Carmen, Dean Dennis R
Department of Biochemistry, Virginia Tech, Blacksburg, VA 24061, USA.
Proc Natl Acad Sci U S A. 2008 Jun 24;105(25):8591-6. doi: 10.1073/pnas.0803173105. Epub 2008 Jun 17.
It has been proposed that iron-sulfur [Fe-S] clusters destined for the maturation of [Fe-S] proteins can be preassembled on a molecular scaffold designated IscU. In the present article, it is shown that production of the intact Azotobacter vinelandii [Fe-S] cluster biosynthetic machinery at levels exceeding the amount required for cellular maturation of [Fe-S] proteins results in the accumulation of: (i) apo-IscU, (ii) an oxygen-labile [2Fe-2S] cluster-loaded form of IscU, and (iii) IscU complexed with the S-delivery protein, IscS. It is suggested that these species represent different stages of the [Fe-S] cluster assembly process. Substitution of the IscU Asp(39) residue by Ala results in the in vivo trapping of a stoichiometric, noncovalent, nondissociating IscU-IscS complex that contains an oxygen-resistant [Fe-S] species. In aggregate, these results validate the scaffold hypothesis for [Fe-S] cluster assembly and indicate that in vivo [Fe-S] cluster formation is a dynamic process that involves the reversible interaction of IscU and IscS.
有人提出,用于[Fe-S]蛋白成熟的铁硫[Fe-S]簇可以在一种名为IscU的分子支架上预先组装。在本文中,研究表明,完整的棕色固氮菌[Fe-S]簇生物合成机制的产量超过了[Fe-S]蛋白细胞成熟所需的量,导致以下物质的积累:(i)脱辅基IscU,(ii)一种对氧不稳定的[2Fe-2S]簇负载形式的IscU,以及(iii)与硫传递蛋白IscS复合的IscU。有人认为,这些物质代表了[Fe-S]簇组装过程的不同阶段。将IscU的Asp(39)残基替换为Ala会导致体内捕获一种化学计量的、非共价的、不解离的IscU-IscS复合物,该复合物含有一种抗氧的[Fe-S]物质。总的来说,这些结果验证了[Fe-S]簇组装的支架假说,并表明体内[Fe-S]簇的形成是一个动态过程,涉及IscU和IscS的可逆相互作用。