Brilli Matteo, Fani Renato
Dipartimento di Biologia Animale e Genetica, Via Romana 17-19, 1-50125, Firenze, Italy.
J Mol Evol. 2004 Feb;58(2):225-37. doi: 10.1007/s00239-003-2547-x.
The sixth and eighth steps of histidine biosynthesis are catalyzed by an imidazole glycerol-phosphate (IGP) dehydratase (EC 4.2.1.19) and by a histidinol-phosphate (HOL-P) phosphatase (EC 3.1.3.15), respectively. In the enterobacteria, in Campylobacter jejuni and in Xylella/Xanthomonas the two activities are associated with a single bifunctional polypeptide encoded by hisB. On the other hand, in Archaea, Eucarya, and most Bacteria the two activities are encoded by two separate genes. In this work we report a comparative analysis of the amino acid sequence of all the available HisB proteins, which allowed us to depict a likely evolutionary pathway leading to the present-day bifunctional hisB gene. According to the model that we propose, the bifunctional hisB gene is the result of a fusion event between two independent cistrons joined by domain-shuffling. The fusion event occurred recently in evolution, very likely in the proteobacterial lineage after the separation of the gamma- and the beta-subdivisions. Data obtained in this work established that a paralogous duplication event of an ancestral DDDD phosphatase encoding gene originated both the HOL-P phosphatase moiety of the E. coli hisB gene and the gmhB gene coding for a DDDD phosphatase, which is involved in the biosynthesis of a precursor of the inner core of the outer membrane lipopolysaccharides (LPS).
组氨酸生物合成的第六步和第八步分别由咪唑甘油磷酸(IGP)脱水酶(EC 4.2.1.19)和组氨醇磷酸(HOL-P)磷酸酶(EC 3.1.3.15)催化。在肠杆菌、空肠弯曲菌和木质部/黄单胞菌中,这两种活性与由hisB编码的单个双功能多肽相关。另一方面,在古菌、真核生物和大多数细菌中,这两种活性由两个独立的基因编码。在这项工作中我们报告了对所有可用HisB蛋白氨基酸序列的比较分析,这使我们能够描绘出一条可能导致当今双功能hisB基因的进化途径。根据我们提出的模型,双功能hisB基因是通过结构域改组连接的两个独立顺反子之间融合事件的结果。融合事件在进化过程中最近发生,很可能发生在γ-和β-亚群分离后的变形菌谱系中。这项工作中获得的数据表明,一个祖先的编码DDDD磷酸酶的基因的旁系同源重复事件产生了大肠杆菌hisB基因的HOL-P磷酸酶部分以及编码参与外膜脂多糖(LPS)内核前体生物合成的DDDD磷酸酶的gmhB基因。