Van Lanen Steven G, Reader John S, Swairjo Manal A, de Crécy-Lagard Valérie, Lee Bobby, Iwata-Reuyl Dirk
Department of Chemistry, Portland State University, P.O. Box 751, Portland, OR 97207, USA.
Proc Natl Acad Sci U S A. 2005 Mar 22;102(12):4264-9. doi: 10.1073/pnas.0408056102. Epub 2005 Mar 14.
The enzyme YkvM from Bacillus subtilis was identified previously along with three other enzymes (YkvJKL) in a bioinformatics search for enzymes involved in the biosynthesis of queuosine, a 7-deazaguanine modified nucleoside found in tRNA(GUN) of Bacteria and Eukarya. Genetic analysis of ykvJKLM mutants in Acinetobacter confirmed that each was essential for queuosine biosynthesis, and the genes were renamed queCDEF. QueF exhibits significant homology to the type I GTP cyclohydrolases characterized by FolE. Given that GTP is the precursor to queuosine and that a cyclohydrolase-like reaction was postulated as the initial step in queuosine biosynthesis, QueF was proposed to be the putative cyclohydrolase-like enzyme responsible for this reaction. We have cloned the queF genes from B. subtilis and Escherichia coli and characterized the recombinant enzymes. Contrary to the predictions based on sequence analysis, we discovered that the enzymes, in fact, catalyze a mechanistically unrelated reaction, the NADPH-dependent reduction of 7-cyano-7-deazaguanineto7-aminomethyl-7-deazaguanine, a late step in the biosynthesis of queuosine. We report here in vitro and in vivo studies that demonstrate this catalytic activity, as well as preliminary biochemical and bioinformatics analysis that provide insight into the structure of this family of enzymes.
来自枯草芽孢杆菌的YkvM酶先前在一项生物信息学搜索中与其他三种酶(YkvJKL)一同被鉴定出来,该搜索旨在寻找参与queuosine生物合成的酶,queuosine是一种在细菌和真核生物的tRNA(GUN)中发现的7-脱氮鸟嘌呤修饰核苷。对不动杆菌中ykvJKLM突变体的遗传分析证实,每种酶对于queuosine生物合成都是必不可少的,这些基因被重新命名为queCDEF。QueF与以FolE为特征的I型GTP环水解酶具有显著的同源性。鉴于GTP是queuosine的前体,并且环水解酶样反应被假定为queuosine生物合成的第一步,因此推测QueF是负责该反应的假定环水解酶样酶。我们已经从枯草芽孢杆菌和大肠杆菌中克隆了queF基因,并对重组酶进行了表征。与基于序列分析的预测相反,我们发现这些酶实际上催化了一种机制上不相关的反应,即NADPH依赖的将7-氰基-7-脱氮鸟嘌呤还原为7-氨甲基-7-脱氮鸟嘌呤,这是queuosine生物合成中的一个后期步骤。我们在此报告了体外和体内研究,这些研究证明了这种催化活性,以及初步的生化和生物信息学分析,这些分析为深入了解该酶家族的结构提供了线索。