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核糖体移码和双靶点抗激活作用限制了群体感应激活的可移动遗传元件的转移。

Ribosomal frameshifting and dual-target antiactivation restrict quorum-sensing-activated transfer of a mobile genetic element.

作者信息

Ramsay Joshua P, Tester Laura G L, Major Anthony S, Sullivan John T, Edgar Christina D, Kleffmann Torsten, Patterson-House Jackson R, Hall Drew A, Tate Warren P, Hynes Michael F, Ronson Clive W

机构信息

Departments of Microbiology and Immunology and Curtin Health Innovation Research Institute Biosciences Precinct, Faculty of Health Sciences, Curtin University, Bentley, WA 6102, Australia; and

Departments of Microbiology and Immunology and.

出版信息

Proc Natl Acad Sci U S A. 2015 Mar 31;112(13):4104-9. doi: 10.1073/pnas.1501574112. Epub 2015 Mar 18.

Abstract

Symbiosis islands are integrative and conjugative mobile genetic elements that convert nonsymbiotic rhizobia into nitrogen-fixing symbionts of leguminous plants. Excision of the Mesorhizobium loti symbiosis island ICEMlSym(R7A) is indirectly activated by quorum sensing through TraR-dependent activation of the excisionase gene rdfS. Here we show that a +1 programmed ribosomal frameshift (PRF) fuses the coding sequences of two TraR-activated genes, msi172 and msi171, producing an activator of rdfS expression named Frameshifted excision activator (FseA). Mass-spectrometry and mutational analyses indicated that the PRF occurred through +1 slippage of the tRNA(phe) from UUU to UUC within a conserved msi172-encoded motif. FseA activated rdfS expression in the absence of ICEMlSym(R7A), suggesting that it directly activated rdfS transcription, despite being unrelated to any characterized DNA-binding proteins. Bacterial two-hybrid and gene-reporter assays demonstrated that FseA was also bound and inhibited by the ICEMlSym(R7A)-encoded quorum-sensing antiactivator QseM. Thus, activation of ICEMlSym(R7A) excision is counteracted by TraR antiactivation, ribosomal frameshifting, and FseA antiactivation. This robust suppression likely dampens the inherent biological noise present in the quorum-sensing autoinduction circuit and ensures that ICEMlSym(R7A) transfer only occurs in a subpopulation of cells in which both qseM expression is repressed and FseA is translated. The architecture of the ICEMlSym(R7A) transfer regulatory system provides an example of how a set of modular components have assembled through evolution to form a robust genetic toggle that regulates gene transcription and translation at both single-cell and cell-population levels.

摘要

共生岛是整合性和接合性的可移动遗传元件,可将非共生根瘤菌转化为豆科植物的固氮共生体。中慢生根瘤菌共生岛ICEMlSym(R7A)的切除通过群体感应间接激活,群体感应通过TraR依赖的切除酶基因rdfS的激活来实现。在这里,我们表明,+1程序性核糖体移码(PRF)融合了两个TraR激活基因msi172和msi171的编码序列,产生了一个rdfS表达激活因子,称为移码切除激活因子(FseA)。质谱和突变分析表明,PRF是通过tRNA(phe)在保守的msi172编码基序内从UUU到UUC的+1滑动而发生的。FseA在没有ICEMlSym(R7A)的情况下激活了rdfS的表达,这表明它直接激活了rdfS的转录,尽管它与任何已鉴定的DNA结合蛋白无关。细菌双杂交和基因报告分析表明,FseA也被ICEMlSym(R7A)编码的群体感应抗激活因子QseM结合并抑制。因此,ICEMlSym(R7A)切除的激活被TraR抗激活、核糖体移码和FseA抗激活所抵消。这种强大的抑制作用可能会抑制群体感应自诱导回路中固有的生物噪声,并确保ICEMlSym(R7A)仅在qseM表达被抑制且FseA被翻译的细胞亚群中发生转移。ICEMlSym(R7A)转移调控系统的结构提供了一个例子,说明一组模块化组件如何通过进化组装形成一个强大的遗传开关,在单细胞和细胞群体水平上调节基因转录和翻译。

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