Sakai Akihiro, Kita Makoto, Katsuragi Tohoru, Ogasawara Naotake, Tani Yoshiki
Graduate School of Biological Sciences, Nara Institute of Science and Technology, 8916-5 Takayama-cho, Ikoma City, Nara 630-0101, Japan.
J Biosci Bioeng. 2002;93(3):309-12. doi: 10.1263/jbb.93.309.
We show that yaaD and yaaE are involved in vitamin B6 (B6) biosynthesis in Bacillus subtilis. This is the first report which identifies genes involved in B(6) biosynthesis in B. subtilis. Based on homology, yaaD and yaaE belong to the highly conserved SNZ and SNO families, respectively. Disruptants of yaaD and yaaE required pyridoxal (PL) or pyridoxine (PN), and grew in the same way as the wild type in a minimal medium supplemented with 0.05 mM PL. The SNZ family is considered to be involved in singlet-oxygen resistance. Singlet-oxygen quenchers, L(+)-ascorbic acid and reduced glutathione, did not support the growth of these disruptants. Both yaaD and yaaE were transcribed at the highest level during the middle- to late-exponential phase and at a much lower level during the stationary phase. Neither PL nor PN affected the transcriptional rates of yaaD and yaaE. It is concluded that yaaD and yaaE are involved in B6 biosynthesis in B. subtilis, and are transcribed at the highest level during the middle- to late-exponential phase.
我们发现yaaD和yaaE参与枯草芽孢杆菌中维生素B6(B6)的生物合成。这是首次鉴定出参与枯草芽孢杆菌B6生物合成的基因的报告。基于同源性,yaaD和yaaE分别属于高度保守的SNZ和SNO家族。yaaD和yaaE的缺失突变体需要吡哆醛(PL)或吡哆醇(PN),并且在添加了0.05 mM PL的基本培养基中与野生型生长方式相同。SNZ家族被认为与单线态氧抗性有关。单线态氧淬灭剂L(+)-抗坏血酸和还原型谷胱甘肽不能支持这些缺失突变体的生长。yaaD和yaaE在指数中期到后期转录水平最高,而在稳定期转录水平低得多。PL和PN均不影响yaaD和yaaE的转录速率。结论是,yaaD和yaaE参与枯草芽孢杆菌中B6的生物合成,并且在指数中期到后期转录水平最高。