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Ler 结构域间连接子对于肠道致病性大肠杆菌中的抗沉默活性至关重要。

Ler interdomain linker is essential for anti-silencing activity in enteropathogenic Escherichia coli.

作者信息

Mellies Jay L, Larabee Fredrick J, Zarr Melissa A, Horback Katy L, Lorenzen Emily, Mavor David

机构信息

Biology Department, Reed College, Portland, OR 97202, USA.

University of Illinois Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

Microbiology (Reading). 2008 Dec;154(Pt 12):3624-3638. doi: 10.1099/mic.0.2008/023382-0.

Abstract

Enteropathogenic Escherichia coli (EPEC) expresses a type III secretion system (T3SS) required for pathogenesis. Regulation of the genes encoding the T3SS is complex; two major regulators control transcription, the silencer H-NS, and the related H-NS-like protein Ler. Our laboratory is interested in understanding the molecular differences that distinguish the anti-silencer Ler from H-NS, and how Ler differentially regulates EPEC virulence genes. Here, we demonstrate that mutated Ler proteins either containing H-NS alpha-helices 1 and 2, missing from Ler, or truncated for the 11 aa C-terminal extension compared with the related H-NS protein, did not appreciably alter Ler function. In contrast, mutating the proline at position 92 of Ler, in the conserved C-terminal DNA binding motif, eliminated Ler activity. Inserting 11 H-NS-specific amino acids, 11 alanines or 6 alanines into the Ler linker severely impaired the ability of Ler to increase LEE5 transcription. To extend our analysis, we constructed six chimeric proteins containing the N terminus, linker region or C terminus of Ler in different combinations with the complementary domains of H-NS, and monitored their in vivo activities. Replacing the Ler linker domain with that of H-NS, or replacing the Ler C-terminal, DNA binding domain with that of H-NS eliminated the ability of Ler to increase transcription at the LEE5 promoter. Thus, the linker and C-terminal domains of Ler and H-NS are not functionally equivalent. Conversely, replacing the H-NS linker region with that of Ler caused increased transcription at LEE5 in a strain deleted for hns. In summary, the interdomain linker specific to Ler is necessary for anti-silencing activity in EPEC.

摘要

肠致病性大肠杆菌(EPEC)表达一种致病所需的III型分泌系统(T3SS)。编码T3SS的基因调控很复杂;两个主要调节因子控制转录,即沉默子H-NS和相关的类H-NS蛋白Ler。我们实验室感兴趣的是了解区分抗沉默子Ler与H-NS的分子差异,以及Ler如何差异调节EPEC毒力基因。在这里,我们证明,与相关的H-NS蛋白相比,含有Ler缺失的H-NSα螺旋1和2或C末端延伸缺失11个氨基酸的突变Ler蛋白,并未明显改变Ler的功能。相反,在保守的C末端DNA结合基序中,将Ler第92位的脯氨酸突变会消除Ler活性。在Ler连接区插入11个H-NS特异性氨基酸、11个丙氨酸或6个丙氨酸会严重损害Ler增加LEE5转录的能力。为了扩展我们的分析,我们构建了六种嵌合蛋白,它们包含Ler的N末端、连接区或C末端与H-NS互补结构域的不同组合,并监测它们的体内活性。用H-NS的连接区替换Ler的连接区,或用H-NS的C末端DNA结合结构域替换Ler的C末端DNA结合结构域,会消除Ler增加LEE5启动子转录的能力。因此,Ler和H-NS的连接区和C末端结构域在功能上并不等同。相反,用Ler的连接区替换H-NS的连接区会导致在缺失hns的菌株中LEE5处转录增加。总之,Ler特有的结构域间连接区对于EPEC中的抗沉默活性是必需的。

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