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信使核糖核酸干扰酶RelE通过条件协同作用控制relBE转录。

Messenger RNA interferase RelE controls relBE transcription by conditional cooperativity.

作者信息

Overgaard Martin, Borch Jonas, Jørgensen Mikkel G, Gerdes Kenn

机构信息

Department of Biochemistry and Molecular Biology, University of Southern Denmark, Campusvej 55, DK-5230 Odense M, Denmark.

出版信息

Mol Microbiol. 2008 Aug;69(4):841-57. doi: 10.1111/j.1365-2958.2008.06313.x. Epub 2008 Jun 4.

Abstract

Prokaryotic toxin-antitoxin (TA) loci consist of two genes in an operon that encodes a metabolically stable toxin and an unstable antitoxin. The antitoxin neutralizes its cognate toxin by forming a tight complex with it. In all cases known, the antitoxin autoregulates TA operon transcription by binding to one or more operators in the promoter region while the toxin functions as a co-repressor of transcription. Interestingly, the toxin can also stimulate TA operon transcription. Here we analyse mechanistic aspects of how RelE of Escherichia coli can function both as a co-repressor and as a derepressor of relBE transcription. When RelB was in excess to RelE, two trimeric RelB(2)*RelE complexes bound cooperatively to two adjacent operator sites in the relBE promoter region and repressed transcription. In contrast, RelE in excess stimulated relBE transcription and released the RelB(2)*RelE complex from operator DNA. A mutational analysis of the operator sites showed that RelE in excess counteracted cooperative binding of the RelB(2)*RelE complexes to the operator sites. Thus, RelE controls relBE transcription by conditional cooperativity.

摘要

原核生物毒素 - 抗毒素(TA)基因座由操纵子中的两个基因组成,该操纵子编码一种代谢稳定的毒素和一种不稳定的抗毒素。抗毒素通过与同源毒素形成紧密复合物来中和该毒素。在所有已知情况下,抗毒素通过结合启动子区域中的一个或多个操纵子来自动调节TA操纵子转录,而毒素则作为转录的共抑制因子发挥作用。有趣的是,毒素也可以刺激TA操纵子转录。在这里,我们分析了大肠杆菌的RelE如何同时作为relBE转录的共抑制因子和去抑制因子的机制方面。当RelB相对于RelE过量时,两个三聚体RelB(2)*RelE复合物协同结合到relBE启动子区域的两个相邻操纵子位点并抑制转录。相反,过量的RelE刺激relBE转录并使RelB(2)*RelE复合物从操纵子DNA上释放。对操纵子位点的突变分析表明,过量的RelE抵消了RelB(2)*RelE复合物与操纵子位点的协同结合。因此,RelE通过条件协同作用控制relBE转录。

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