Horticultural Sciences, Food Science and Human Nutrition, Microbiology and Cell Science Departments, and Department of Biochemistry and Molecular Biology and National High Magnetic Field Laboratory, and McKnight Brain Institute, University of Florida, Gainesville, FL 32611, USA.
Proc Natl Acad Sci U S A. 2010 Jun 8;107(23):10412-7. doi: 10.1073/pnas.0911586107. Epub 2010 May 20.
Iron-sulfur (Fe/S) cluster enzymes are crucial to life. Their assembly requires a suite of proteins, some of which are specific for particular subsets of Fe/S enzymes. One such protein is yeast Iba57p, which aconitase and certain radical S-adenosylmethionine enzymes require for activity. Iba57p homologs occur in all domains of life; they belong to the COG0354 protein family and are structurally similar to various folate-dependent enzymes. We therefore investigated the possible relationship between folates and Fe/S cluster enzymes using the Escherichia coli Iba57p homolog, YgfZ. NMR analysis confirmed that purified YgfZ showed stereoselective folate binding. Inactivating ygfZ reduced the activities of the Fe/S tRNA modification enzyme MiaB and certain other Fe/S enzymes, although not aconitase. When successive steps in folate biosynthesis were ablated, folE (lacking pterins and folates) and folP (lacking folates) mutants mimicked the ygfZ mutant in having low MiaB activities, whereas folE thyA mutants supplemented with 5-formyltetrahydrofolate (lacking pterins and depleted in dihydrofolate) and gcvP glyA mutants (lacking one-carbon tetrahydrofolates) had intermediate MiaB activities. These data indicate that YgfZ requires a folate, most probably tetrahydrofolate. Importantly, the ygfZ mutant was hypersensitive to oxidative stress and grew poorly on minimal media. COG0354 genes of bacterial, archaeal, fungal, protistan, animal, or plant origin complemented one or both of these growth phenotypes as well as the MiaB activity phenotype. Comparative genomic analysis indicated widespread functional associations between COG0354 proteins and Fe/S cluster metabolism. Thus COG0354 proteins have an ancient, conserved, folate-dependent function in the activity of certain Fe/S cluster enzymes.
铁硫 (Fe/S) 簇酶对生命至关重要。它们的组装需要一套蛋白质,其中一些蛋白质是特定于特定亚群的 Fe/S 酶的。酵母 Iba57p 就是这样一种蛋白质,它是 aconitase 和某些自由基 S-腺苷甲硫氨酸酶活性所必需的。Iba57p 同源物存在于所有生命领域;它们属于 COG0354 蛋白家族,在结构上与各种依赖叶酸的酶相似。因此,我们使用大肠杆菌 Iba57p 同源物 YgfZ 研究了叶酸和 Fe/S 簇酶之间的可能关系。NMR 分析证实,纯化的 YgfZ 表现出立体选择性叶酸结合。失活 ygfZ 降低了 Fe/S tRNA 修饰酶 MiaB 和某些其他 Fe/S 酶的活性,尽管 aconitase 不受影响。当叶酸生物合成的连续步骤被破坏时,folE(缺乏蝶呤和叶酸)和 folP(缺乏叶酸)突变体在 MiaB 活性低方面模拟了 ygfZ 突变体,而 folE thyA 突变体补充 5-甲酰四氢叶酸(缺乏蝶呤和二氢叶酸耗竭)和 gcvP glyA 突变体(缺乏一碳四氢叶酸)则具有中等 MiaB 活性。这些数据表明,YgfZ 需要一种叶酸,很可能是四氢叶酸。重要的是,ygfZ 突变体对氧化应激敏感,在最小培养基上生长不良。细菌、古细菌、真菌、原生动物、动物或植物来源的 COG0354 基因可以补充一种或两种这些生长表型以及 MiaB 活性表型。比较基因组分析表明,COG0354 蛋白与 Fe/S 簇代谢之间存在广泛的功能关联。因此,COG0354 蛋白在某些 Fe/S 簇酶的活性中具有古老、保守、依赖叶酸的功能。