Bhavsar Amit P, Truant Ray, Brown Eric D
Antimicrobial Research Centre and Department of Biochemistry and Biomedical Sciences, McMaster University, Hamilton, Ontario L8N 3Z5, Canada.
J Biol Chem. 2005 Nov 4;280(44):36691-700. doi: 10.1074/jbc.M507154200. Epub 2005 Sep 2.
Genes involved in the synthesis of poly(glycerol phosphate) wall teichoic acid have been identified in the tag locus of the model Gram-positive organism Bacillus subtilis 168. The functions of most of these gene products are predictable from sequence similarity to characterized proteins and have provided limited insight into the intracellular synthesis and translocation of wall teichoic acid. Nevertheless, critical steps of poly(glycerol phosphate) teichoic acid polymerization continue to be a puzzle. TagB and TagF, encoded in the tag locus, do not show sequence similarity to characterized proteins. We recently showed that recombinant TagF could catalyze glycerol phosphate polymerization in vitro. Based largely on homology to TagF, the TagB protein has been proposed to catalyze either an intracellular glycerophosphotransfer reaction or the extracellular teichoic acid/peptidoglycan ligation reaction. Here we have taken steps to characterize TagB, particularly through in vivo localization studies and in vitro biochemical assay, in order to make a case for either role in teichoic acid biogenesis. We have shown that TagB associates peripherally with the intracellular face of the cell membrane in vivo. We have also produced recombinant TagB and used it to demonstrate the enzymatic incorporation of labeled glycerol phosphate onto a membrane-bound acceptor. The data collected from this and the accompanying study are strongly supportive of a role for TagB in B. subtilis 168 teichoic acid biogenesis as the CDP-glycerol:N-acetyl-beta-d-mannosaminyl-1,4-N-acetyl-d-glucosaminyldiphosphoundecaprenyl glycerophosphotransferase. Here we use the trivial name "Tag primase."
参与聚(甘油磷酸)壁磷壁酸合成的基因已在模式革兰氏阳性菌枯草芽孢杆菌168的tag位点中被鉴定出来。这些基因产物中的大多数功能可通过与已表征蛋白质的序列相似性来预测,并且对壁磷壁酸的细胞内合成和转运提供了有限的见解。然而,聚(甘油磷酸)磷壁酸聚合的关键步骤仍然是一个谜。tag位点中编码的TagB和TagF与已表征蛋白质没有序列相似性。我们最近表明,重组TagF可以在体外催化甘油磷酸聚合。主要基于与TagF的同源性,有人提出TagB蛋白可催化细胞内甘油磷酸转移反应或细胞外壁磷壁酸/肽聚糖连接反应。在这里,我们采取措施对TagB进行表征,特别是通过体内定位研究和体外生化分析,以便确定其在磷壁酸生物合成中的作用。我们已经表明,TagB在体内与细胞膜的细胞内表面周边结合。我们还制备了重组TagB,并使用它来证明标记的甘油磷酸酶促掺入到膜结合的受体上。从这项研究及相关研究中收集的数据有力地支持了TagB在枯草芽孢杆菌168磷壁酸生物合成中作为CDP-甘油:N-乙酰-β-D-甘露糖胺基-1,4-N-乙酰-D-葡糖胺基二磷酸十一碳烯基甘油磷酸转移酶的作用。在这里,我们使用俗名“Tag引发酶”。