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大肠杆菌中Ag43的相变:依赖Dam的甲基化消除OxyR结合及OxyR介导的转录抑制。

Phase variation of Ag43 in Escherichia coli: Dam-dependent methylation abrogates OxyR binding and OxyR-mediated repression of transcription.

作者信息

Haagmans W, van der Woude M

机构信息

Department of Microbiology, University of Pennsylvania, 202A Johnson Pavilion, 3610 Hamilton Walk, Philadelphia, PA 19104, USA.

出版信息

Mol Microbiol. 2000 Feb;35(4):877-87. doi: 10.1046/j.1365-2958.2000.01762.x.

DOI:10.1046/j.1365-2958.2000.01762.x
PMID:10692164
Abstract

It has been shown previously that phase variation of the outer membrane protein Antigen43 (Ag43) of Escherichia coli requires the DNA-methylating enzyme deoxyadenosine methyltransferase (Dam) and the global regulator OxyR. In this study, we analysed the regulation of the Ag43 encoding gene (agn) using isolates containing a fusion of the agn regulatory region to the reporter gene lacZ. Our results indicate that phase variation of Ag43 is regulated at the level of transcription. Repression of agn'-lacZ transcription required OxyR, whereas activation required Dam. The regulatory region of agn contains three GATC sequences, which are target sites for Dam-dependent methylation. In vivo, the methylation state of these GATC sequences correlated with the transcription state of agn'-lacZ. These GATC sequences were not protected from Dam-dependent methylation in an oxyR background, suggesting that OxyR binding results in Dam-dependent methylation protection in OFF cells. In vitro, both oxidized OxyR and OxyR(C199S), which is locked in the reduced conformation, bound to the agn regulatory region, but methylation of the three GATC sequences abrogated this binding. In vivo, OxyR(C199S) was sufficient to repress Ag43 transcription. Our data support a model in which OxyR-mediated repression of transcription is alleviated by methylation of three GATC sequences in its binding site. In addition, we show that, in an oxyR background, Dam was still required for full activation, suggesting that the model concerning the role of Dam in agn regulation is incomplete. These results show that Dam-dependent phase variation in E. coli is not limited to the previously identified regulatory system of the family of pap-like fimbrial operons.

摘要

先前的研究表明,大肠杆菌外膜蛋白抗原43(Ag43)的相变需要DNA甲基化酶脱氧腺苷甲基转移酶(Dam)和全局调节因子OxyR。在本研究中,我们使用含有agn调控区与报告基因lacZ融合的分离株分析了Ag43编码基因(agn)的调控。我们的结果表明,Ag43的相变在转录水平受到调控。agn'-lacZ转录的抑制需要OxyR,而激活则需要Dam。agn的调控区包含三个GATC序列,它们是Dam依赖性甲基化的靶位点。在体内,这些GATC序列的甲基化状态与agn'-lacZ的转录状态相关。在oxyR背景下,这些GATC序列不能免受Dam依赖性甲基化的影响,这表明OxyR结合导致OFF细胞中Dam依赖性甲基化保护。在体外,氧化型OxyR和锁定在还原构象的OxyR(C199S)都与agn调控区结合,但三个GATC序列的甲基化消除了这种结合。在体内,OxyR(C199S)足以抑制Ag43转录。我们的数据支持一种模型,即OxyR介导的转录抑制通过其结合位点中三个GATC序列的甲基化而缓解。此外,我们表明,在oxyR背景下,完全激活仍需要Dam,这表明关于Dam在agn调控中作用的模型是不完整的。这些结果表明,大肠杆菌中Dam依赖性相变不限于先前确定的pap样菌毛操纵子家族的调控系统。

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