Gelling Cristy, Dawes Ian W, Richhardt Nadine, Lill Roland, Mühlenhoff Ulrich
Institut für Zytobiologie und Zytopathologie, Philipps-Universität Marburg, Robert-Koch Str. 6, 35032 Marburg, Germany.
Mol Cell Biol. 2008 Mar;28(5):1851-61. doi: 10.1128/MCB.01963-07. Epub 2007 Dec 17.
A genome-wide screen for Saccharomyces cerevisiae iron-sulfur (Fe/S) cluster assembly mutants identified the gene IBA57. The encoded protein Iba57p is located in the mitochondrial matrix and is essential for mitochondrial DNA maintenance. The growth phenotypes of an iba57Delta mutant and extensive functional studies in vivo and in vitro indicate a specific role for Iba57p in the maturation of mitochondrial aconitase-type and radical SAM Fe/S proteins (biotin and lipoic acid synthases). Maturation of other Fe/S proteins occurred normally in the absence of Iba57p. These observations identify Iba57p as a novel dedicated maturation factor with specificity for a subset of Fe/S proteins. The Iba57p primary sequence is distinct from any known Fe/S assembly factor but is similar to certain tetrahydrofolate-binding enzymes, adding a surprising new function to this protein family. Iba57p physically interacts with the mitochondrial ISC assembly components Isa1p and Isa2p. Since all three proteins are conserved in eukaryotes and bacteria, the specificity of the Iba57/Isa complex may represent a biosynthetic concept that is universally used in nature. In keeping with this idea, the human IBA57 homolog C1orf69 complements the iba57Delta growth defects, demonstrating its conserved function throughout the eukaryotic kingdom.
一项针对酿酒酵母铁硫(Fe/S)簇组装突变体的全基因组筛选鉴定出了IBA57基因。其编码的Iba57p蛋白定位于线粒体基质,对线粒体DNA的维持至关重要。iba57Δ突变体的生长表型以及体内外广泛的功能研究表明,Iba57p在 mitochondrial aconitase型和自由基SAM Fe/S蛋白(生物素和硫辛酸合成酶)的成熟过程中具有特定作用。在没有Iba57p的情况下,其他Fe/S蛋白的成熟正常发生。这些观察结果将Iba57p确定为一种新型的专门成熟因子,对一部分Fe/S蛋白具有特异性。Iba57p的一级序列与任何已知的Fe/S组装因子都不同,但与某些四氢叶酸结合酶相似,为这个蛋白质家族增添了一个惊人的新功能。Iba57p与线粒体ISC组装成分Isa1p和Isa2p发生物理相互作用。由于这三种蛋白质在真核生物和细菌中都是保守的,Iba57/Isa复合物的特异性可能代表了一种在自然界中普遍使用的生物合成概念。与此观点一致的是,人类IBA57同源物C1orf69弥补了iba57Δ的生长缺陷,证明了其在整个真核生物界的保守功能。