Rodionov Dmitry A, Mironov Andrei A, Gelfand Mikhail S
State Scientific Center GosNIIGenetika, Moscow 113545, Russia.
Genome Res. 2002 Oct;12(10):1507-16. doi: 10.1101/gr.314502.
Biotin is a necessary cofactor of numerous biotin-dependent carboxylases in a variety of microorganisms. The strict control of biotin biosynthesis in Escherichia coli is mediated by the bifunctional BirA protein, which acts both as a biotin-protein ligase and as a transcriptional repressor of the biotin operon. Little is known about regulation of biotin biosynthesis in other bacteria. Using comparative genomics and phylogenetic analysis, we describe the biotin biosynthetic pathway and the BirA regulon in most available bacterial genomes. Existence of an N-terminal DNA-binding domain in BirA strictly correlates with the presence of putative BirA-binding sites upstream of biotin operons. The predicted BirA-binding sites are well conserved among various eubacterial and archaeal genomes. The possible role of the hypothetical genes bioY and yhfS-yhfT, newly identified members of the BirA regulon, in the biotin metabolism is discussed. Based on analysis of co-occurrence of the biotin biosynthetic genes and bioY in complete genomes, we predict involvement of the transmembrane protein BioY in biotin transport. Various nonorthologous substitutes of the bioC-coupled gene bioH from E. coli, observed in several genomes, possibly represent the existence of different pathways for pimeloyl-CoA biosynthesis. Another interesting result of analysis of operon structures and BirA sites is that some biotin-dependent carboxylases from Rhodobacter capsulatus, actinomycetes, and archaea are possibly coregulated with BirA. BirA is the first example of a transcriptional regulator with a conserved binding signal in eubacteria and archaea.
生物素是多种微生物中众多生物素依赖性羧化酶的必需辅因子。大肠杆菌中生物素生物合成的严格调控由双功能BirA蛋白介导,该蛋白既作为生物素-蛋白连接酶,又作为生物素操纵子的转录阻遏物。关于其他细菌中生物素生物合成的调控知之甚少。通过比较基因组学和系统发育分析,我们描述了大多数可用细菌基因组中的生物素生物合成途径和BirA调控子。BirA中N端DNA结合结构域的存在与生物素操纵子上游假定的BirA结合位点的存在严格相关。预测的BirA结合位点在各种真细菌和古细菌基因组中高度保守。讨论了BirA调控子新鉴定的成员——假设基因bioY和yhfS-yhfT在生物素代谢中的可能作用。基于对完整基因组中生物素生物合成基因和bioY共现情况的分析,我们预测跨膜蛋白BioY参与生物素转运。在几个基因组中观察到的来自大肠杆菌的bioC偶联基因bioH的各种非直系同源替代物,可能代表了庚二酸单酰辅酶A生物合成的不同途径。对操纵子结构和BirA位点分析的另一个有趣结果是,来自荚膜红细菌、放线菌和古细菌的一些生物素依赖性羧化酶可能与BirA共同调控。BirA是真细菌和古细菌中具有保守结合信号的转录调节因子的第一个例子。