Merritt Justin, Qi Fengxia, Shi Wenyuan
UCLA Molecular Biology Institute, 10833 Le Conte Avenue, Los Angeles, CA 90025, USA.
UCLA School of Dentistry, 10833 Le Conte Avenue, Los Angeles, CA 90025, USA.
Microbiology (Reading). 2005 Jan;151(Pt 1):157-166. doi: 10.1099/mic.0.27554-0.
Many Gram-positive and Gram-negative bacteria possess natural competence mechanisms for DNA capture and internalization. In Bacillus subtilis, natural competence is absolutely dependent upon the presence of a seven-gene operon known as the comG operon (comGA-G). In species of Streptococcus, this function has been described for a four-gene operon (comYA-D in Streptococcus gordonii and cglA-D in Streptococcus pneumoniae). In this study, a nine-orf operon (named comYA-I) required for natural competence in Streptococcus mutans was identified and characterized. Orf analysis of this operon indicates that the first four Orfs (ComYA-D) share strong homology with ComYA-D of S. gordonii and CglA-D of S. pneumoniae, the fifth to seventh Orfs (ComYE-G) match conserved hypothetical proteins from various species of Streptococcus with ComYF possessing a predicted ComGF domain, the eighth Orf (ComYH) shows a strong homology to numerous DNA methyltransferases from restriction/modification systems, and the ninth Orf (ComYI) is homologous to acetate kinase (AckA). RT-PCR analysis of the orf junctions confirmed that all nine orfs were present in a single transcript, while real-time RT-PCR analysis demonstrated that these orfs were expressed at a level very similar to that of the first orf in the operon. Mutations were constructed in all nine putative orfs. The first seven genes (comYA-G) were found to be essential for natural competence, while comYH and comYI had reduced and normal natural competence ability, respectively. Analyses of S. mutans comY-luciferase reporter fusions indicated that comY expression is growth-phase dependent, with maximal expression at an OD(600) of about 0.2, while mutations in ciaH, comC and luxS reduced the level of comY expression. In addition, comY operon expression appears to be correlated with natural competence ability.
许多革兰氏阳性菌和革兰氏阴性菌都具有捕获和内化DNA的天然感受态机制。在枯草芽孢杆菌中,天然感受态绝对依赖于一个名为comG操纵子(comGA - G)的七基因操纵子的存在。在链球菌属中,这种功能已在一个四基因操纵子中得到描述(戈登氏链球菌中的comYA - D和肺炎链球菌中的cglA - D)。在本研究中,鉴定并表征了变形链球菌天然感受态所需的一个九开放阅读框操纵子(命名为comYA - I)。对该操纵子的开放阅读框分析表明,前四个开放阅读框(ComYA - D)与戈登氏链球菌的ComYA - D和肺炎链球菌的CglA - D具有高度同源性,第五至第七个开放阅读框(ComYE - G)与来自各种链球菌属的保守假定蛋白匹配,其中ComYF具有预测的ComGF结构域,第八个开放阅读框(ComYH)与限制/修饰系统中的众多DNA甲基转移酶具有高度同源性,第九个开放阅读框(ComYI)与乙酸激酶(AckA)同源。对开放阅读框连接处的RT - PCR分析证实,所有九个开放阅读框都存在于一个单一转录本中,而实时RT - PCR分析表明,这些开放阅读框的表达水平与操纵子中的第一个开放阅读框非常相似。在所有九个假定的开放阅读框中构建了突变体。发现前七个基因(comYA - G)对天然感受态至关重要,而comYH和comYI分别具有降低和正常的天然感受态能力。对变形链球菌comY - 荧光素酶报告基因融合体的分析表明,comY表达依赖于生长阶段,在OD(600)约为0.2时表达最高,而ciaH、comC和luxS中的突变降低了comY表达水平。此外,comY操纵子表达似乎与天然感受态能力相关。