Kinoshita H, Ipposhi H, Okamoto S, Nakano H, Nihira T, Yamada Y
Department of Biotechnology, Graduate School of Engineering, Osaka University, Suita, Japan.
J Bacteriol. 1997 Nov;179(22):6986-93. doi: 10.1128/jb.179.22.6986-6993.1997.
BarA of Streptomyces virginiae is a specific receptor protein for virginiae butanolides (VBs), a member of the butyrolactone autoregulators of Streptomyces species. Sequencing around the barA gene revealed two novel open reading frames: one upstream, barX, encoding a homolog of AfsA of Streptomyces griseus and another downstream, barB. Northern (RNA) blot analysis for S. virginiae demonstrated that the addition of VB during cultivation switched on the expression of barB. An in vivo expression system in Streptomyces lividans with the use of the xylE reporter gene indicated that BarA in conjunction with VB controlled the barB promoter. Furthermore, the DNA binding ability of BarA was demonstrated in vitro for the first time by means of surface plasmon resonance and a gel-shift assay. Complex formation with VB in vitro resulted in the dissociation of BarA from DNA, thus suggesting that the VB receptor, BarA, is a transcriptional regulator and that the VB signal is transduced to the next step in the signal transduction pathway by modification of the DNA binding ability of BarA.
弗吉尼亚链霉菌的BarA是弗吉尼亚丁内酯(VBs)的特异性受体蛋白,VBs是链霉菌属丁内酯自调控因子的成员之一。对barA基因周围进行测序发现了两个新的开放阅读框:一个在barA基因上游,为barX,编码灰色链霉菌AfsA的同源物;另一个在barA基因下游,为barB。对弗吉尼亚链霉菌进行的Northern(RNA)印迹分析表明,在培养过程中添加VB可开启barB的表达。利用木糖操纵子报告基因在变铅青链霉菌中建立的体内表达系统表明,BarA与VB共同控制barB启动子。此外,首次通过表面等离子体共振和凝胶迁移试验在体外证明了BarA的DNA结合能力。BarA在体外与VB形成复合物会导致其与DNA解离,因此表明VB受体BarA是一种转录调节因子,并且VB信号通过改变BarA的DNA结合能力被转导至信号转导途径的下一步。