Takamatsu H, Kodama T, Nakayama T, Watabe K
Faculty of Pharmaceutical Sciences, Setsunan University, Osaka, Japan.
J Bacteriol. 1999 Aug;181(16):4986-94. doi: 10.1128/JB.181.16.4986-4994.1999.
Insertional inactivation of the yrbA gene of Bacillus subtilis reduced the resistance of the mutant spores to lysozyme. The yrbA mutant spores lost their optical density at the same rate as the wild-type spores upon incubation with L-alanine but became only phase gray and did not swell. The response of the mutant spores to a combination of asparagine, glucose, fructose, and KCl was also extremely poor; in this medium yrbA spores exhibited only a small loss in optical density and gave a mixture of phase-bright, -gray, and -dark spores. Northern blot analysis of yrbA transcripts in various sig mutants indicated that yrbA was transcribed by RNA polymerase with sigma(E) beginning at 2 h after the start of sporulation. The yrbA promoter was localized by primer extension analysis, and the sequences of the -35 (TCATAAC) and -10 (CATATGT) regions were similar to the consensus sequences of genes recognized by sigma(E). Sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis of proteins solubilized from intact yrbA mutant spores showed an alteration in the protein profile, as 31- and 36-kDa proteins, identified as YrbA and CotG, respectively, were absent, along with some other minor changes. Electron microscopic examination of yrbA spores revealed changes in the spore coat, including a reduction in the density and thickness of the outer layer and the appearance of an inner coat layer-like structure around the outside of the coat. This abnormal coat structure was also observed on the outside of the developing forespores of the yrbA mutant. These results suggest that YrbA is involved in assembly of some coat proteins which have roles in both spore lysozyme resistance and germination.
枯草芽孢杆菌yrbA基因的插入失活降低了突变体孢子对溶菌酶的抗性。与L-丙氨酸一起孵育时,yrbA突变体孢子与野生型孢子以相同的速率失去其光密度,但仅变成相灰色且不膨胀。突变体孢子对天冬酰胺、葡萄糖、果糖和氯化钾组合的反应也极差;在这种培养基中,yrbA孢子仅表现出光密度的小幅降低,并产生相亮、相灰和相暗孢子的混合物。对各种sig突变体中yrbA转录本的Northern印迹分析表明,yrbA在芽孢形成开始后2小时由带有sigma(E)的RNA聚合酶转录。通过引物延伸分析确定了yrbA启动子的位置,其-35(TCATAAC)和-10(CATATGT)区域的序列与sigma(E)识别的基因的共有序列相似。对从完整的yrbA突变体孢子中溶解的蛋白质进行的十二烷基硫酸钠-聚丙烯酰胺凝胶电泳分析显示蛋白质谱发生了改变,因为分别鉴定为YrbA和CotG的31 kDa和36 kDa蛋白质缺失,同时还有一些其他微小变化。对yrbA孢子的电子显微镜检查揭示了芽孢衣的变化,包括外层密度和厚度的降低以及在芽孢衣外部出现类似内层芽孢衣的结构。在yrbA突变体发育中的前芽孢外部也观察到了这种异常的芽孢衣结构。这些结果表明,YrbA参与了一些芽孢衣蛋白的组装,这些蛋白在孢子对溶菌酶的抗性和萌发中都起作用。