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枯草芽孢杆菌中在spoIIG启动子处相互作用的Spo0A和RNA聚合酶σ因子A的表面。

Surfaces of Spo0A and RNA polymerase sigma factor A that interact at the spoIIG promoter in Bacillus subtilis.

作者信息

Kumar Amrita, Buckner Starke Cindy, DeZalia Mark, Moran Charles P

机构信息

Department of Microbiology and Immunology, Emory University School of Medicine, Atlanta, Georgia 30322, USA.

出版信息

J Bacteriol. 2004 Jan;186(1):200-6. doi: 10.1128/JB.186.1.200-206.2004.

Abstract

In Bacillus subtilis, the DNA binding protein Spo0A activates transcription from two classes of promoters, those used by RNA polymerase containing the primary sigma factor, sigma(A) (e.g., spoIIG), and those used by RNA polymerase containing the secondary sigma factor, sigma(H) (e.g., spoIIA). Several single amino acid substitutions in region 4 of sigma(A) define positions in sigma(A) that are specifically required for Spo0A-dependent promoter activation. Similarly, several single amino acid substitutions in Spo0A define positions in Spo0A that are required for sigma(A)-dependent promoter activation but not for other functions of Spo0A. It is unknown whether these amino acids in Spo0A interact directly with those in region 4 of sigma(A) or whether they interact with another subunit of RNA polymerase to effect promoter activation. Here we report the identification of a new amino acid in region 4 of sigma(A), arginine at position 355 (R355), that is involved in Spo0A-dependent promoter activation. To further investigate the role of R355, we used the coordinates of Spo0A and sigma region 4, each in complex with DNA, to build a model for the interaction of sigma(A) and Spo0A at the spoIIG promoter. We tested the model by examining the effects of amino acid substitutions in the putative interacting surfaces of these molecules. As predicted by the model, we found genetic evidence for interaction of R355 of sigma(A) with glutamine at position 221 of Spo0A. These results appear to define the surfaces of Spo0A and sigma(A) that directly interact during activation of the spoIIG promoter.

摘要

在枯草芽孢杆菌中,DNA结合蛋白Spo0A可激活两类启动子的转录,一类是由含有主要σ因子σ(A)的RNA聚合酶所使用的启动子(例如spoIIG),另一类是由含有次要σ因子σ(H)的RNA聚合酶所使用的启动子(例如spoIIA)。σ(A)第4区域中的几个单氨基酸替换确定了σ(A)中对于Spo0A依赖的启动子激活特别必需的位置。同样,Spo0A中的几个单氨基酸替换确定了Spo0A中对于σ(A)依赖的启动子激活所必需但对于Spo0A的其他功能并非必需的位置。尚不清楚Spo0A中的这些氨基酸是否直接与σ(A)第4区域中的氨基酸相互作用,或者它们是否与RNA聚合酶的另一个亚基相互作用以实现启动子激活。在此,我们报告在σ(A)第4区域中鉴定出一个新的氨基酸,即第355位的精氨酸(R355),它参与Spo0A依赖的启动子激活。为了进一步研究R355的作用,我们利用分别与DNA结合的Spo0A和σ区域4的坐标,构建了σ(A)与Spo0A在spoIIG启动子处相互作用的模型。我们通过检查这些分子假定相互作用表面中的氨基酸替换的影响来测试该模型。如模型所预测的,我们发现了σ(A)的R355与Spo0A第221位的谷氨酰胺相互作用的遗传学证据。这些结果似乎确定了在spoIIG启动子激活过程中直接相互作用的Spo0A和σ(A)的表面。

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