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体外Fis蛋白对RpoS依赖性proP P2转录的激活作用。

Activation of RpoS-dependent proP P2 transcription by the Fis protein in vitro.

作者信息

Xu J, Johnson R C

机构信息

Department of Biological Chemistry, UCLA School of Medicine, Los Angeles, CA 90095-1737, USA.

出版信息

J Mol Biol. 1997 Jul 18;270(3):346-59. doi: 10.1006/jmbi.1997.1133.

Abstract

The proP gene, encoding a transporter of the osmoprotecting compounds proline and glycine betaine, is expressed from two promoters. Transcription of the P2 promoter occurs at a transient period in late exponential phase and is dependent upon Fis and the RpoS (sigma38) sigma factor. Here we characterize Fis-mediated activation of the P2 promoter in vitro. We find that this promoter displays unusually high specificity for sigma38. Fis strongly activates P2 when bound to site I centered at -41 within the promoter region. There is a complex relationship involving DNA supercoiling and potassium glutamate concentration on Fis activation, but most efficient transcription occurs under high salt conditions when the superhelical density is above -0.03. The major stimulatory effect of DNA supercoiling occurs between superhelical densities of 0 to -0.02 suggesting that, while supercoiling is mechanistically important, it may not be a physiologically relevant controlling factor. However, the stimulation of transcription by high potassium glutamate concentrations may contribute to the osmotic inducibility of the P2 promoter. We show that Fis and E sigma38 bind cooperatively on supercoiled DNA to form a stable complex at P2 that involves promoter melting. Fis also binds to a second site within the proP regulatory region. While binding to this site appears to play no role in Fis activation of the P2 promoter, it functions as a repressor of transcription initiating from the P1 promoter by either sigma70 or sigma38.

摘要

编码渗透保护化合物脯氨酸和甘氨酸甜菜碱转运蛋白的proP基因由两个启动子表达。P2启动子的转录发生在指数后期的一个短暂时期,并且依赖于Fis和RpoS(σ38)σ因子。在此,我们在体外对Fis介导的P2启动子激活进行了表征。我们发现该启动子对σ38显示出异常高的特异性。当Fis结合到启动子区域内以-41为中心的位点I时,它强烈激活P2。在Fis激活方面,存在涉及DNA超螺旋和谷氨酸钾浓度的复杂关系,但当超螺旋密度高于-0.03时,在高盐条件下发生最有效的转录。DNA超螺旋的主要刺激作用发生在超螺旋密度为0至-0.02之间,这表明虽然超螺旋在机制上很重要,但它可能不是生理上相关的控制因素。然而,高谷氨酸钾浓度对转录的刺激可能有助于P2启动子的渗透诱导性。我们表明,Fis和Eσ38在超螺旋DNA上协同结合,在P2处形成一个涉及启动子解链的稳定复合物。Fis还结合到proP调控区域内的第二个位点。虽然结合到该位点似乎在Fis对P2启动子的激活中不起作用,但它作为由σ70或σ38从P1启动子起始转录的阻遏物发挥作用。

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