Department of Microbiology, University of Iowa, Iowa City, IA, USA.
J Bacteriol. 2010 Jul;192(14):3597-607. doi: 10.1128/JB.00129-10. Epub 2010 May 7.
ExsA is a member of the AraC family of transcriptional activators and is required for expression of the Pseudomonas aeruginosa type III secretion system (T3SS). ExsA-dependent promoters consist of two binding sites for monomeric ExsA located approximately 50 bp upstream of the transcription start sites. Binding to both sites is required for recruitment of sigma(70)-RNA polymerase (RNAP) to the promoter. ExsA-dependent promoters also contain putative -35 hexamers that closely match the sigma(70) consensus but are atypically spaced 21 or 22 bp from the -10 hexamer. Because several nucleotides located within the putative -35 region are required for ExsA binding, it is unclear whether the putative -35 region makes an additional contribution to transcription initiation. In the present study we demonstrate that the putative -35 hexamer is dispensable for ExsA-independent transcription from the P(exsC) promoter and that deletion of sigma(70) region 4.2, which contacts the -35 hexamer, has no effect on ExsA-independent transcription from P(exsC). Region 4.2 of sigma(70), however, is required for ExsA-dependent activation of the P(exsC) and P(exsD) promoters. Genetic data suggest that ExsA directly contacts region 4.2 of sigma(70), and several amino acids were found to contribute to the interaction. In vitro transcription assays demonstrate that an extended -10 element located in the P(exsC) promoter is important for overall promoter activity. Our collective data suggest a model in which ExsA compensates for the lack of a -35 hexamer by interacting with region 4.2 of sigma(70) to recruit RNAP to the promoter.
ExsA 是 AraC 家族转录激活因子的成员,是铜绿假单胞菌 III 型分泌系统 (T3SS) 表达所必需的。ExsA 依赖性启动子由位于转录起始位点上游约 50bp 的两个单体 ExsA 结合位点组成。两个位点的结合对于 sigma(70)-RNA 聚合酶 (RNAP) 募集到启动子是必需的。ExsA 依赖性启动子还包含假定的 -35 六聚体,其与 sigma(70)的保守序列非常匹配,但与 -10 六聚体的间隔为 21 或 22bp,这是不典型的。由于假定的 -35 区域内的几个核苷酸对于 ExsA 结合是必需的,因此尚不清楚假定的 -35 区域是否对转录起始有额外的贡献。在本研究中,我们证明了假定的 -35 六聚体对于 ExsA 非依赖性转录从 P(exsC)启动子是可有可无的,并且删除与 -35 六聚体接触的 sigma(70)区域 4.2 对 ExsA 非依赖性转录从 P(exsC)没有影响。然而,sigma(70)的区域 4.2 对于 ExsA 依赖性激活 P(exsC)和 P(exsD)启动子是必需的。遗传数据表明,ExsA 直接与 sigma(70)的区域 4.2 接触,并且发现几个氨基酸有助于相互作用。体外转录实验表明,位于 P(exsC)启动子中的扩展 -10 元件对于整体启动子活性很重要。我们的集体数据表明了一种模型,即 ExsA 通过与 sigma(70)的区域 4.2 相互作用来补偿 -35 六聚体的缺失,从而将 RNAP 募集到启动子。