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H-NS可响应多种环境信号控制大肠杆菌中pap和daa菌毛的转录。

H-NS controls pap and daa fimbrial transcription in Escherichia coli in response to multiple environmental cues.

作者信息

White-Ziegler C A, Villapakkam A, Ronaszeki K, Young S

机构信息

Department of Biological Sciences, Smith College, Northampton, Massachusetts 01063, USA.

出版信息

J Bacteriol. 2000 Nov;182(22):6391-400. doi: 10.1128/JB.182.22.6391-6400.2000.

Abstract

A comparative study was completed to determine the influence of various environmental stimuli on the transcription of three different fimbrial operons in Escherichia coli and to determine the role of the histone-like protein H-NS in this environmental regulation. The fimbrial operons studied included the pap operon, which encodes pyelonephritis-associated pili (P pili), the daa operon, which encodes F1845 fimbriae, and the fan operon, which encodes K99 fimbriae. Using lacZYA transcriptional fusions within each of the fimbrial operons, we tested temperature, osmolarity, carbon source, rich medium, oxygen levels, pH, amino acids, solid medium, and iron concentration for their effects on fimbrial gene expression. Low temperature, high osmolarity, glucose as a carbon source, and rich medium repressed transcription of all three operons. High iron did not alter transcription of any of the operons tested, whereas the remaining stimuli had effects on individual operons. For the pap and daa operons, introduction of the hns651 mutation relieved the repression, either fully or partially, due to low temperature, glucose as a carbon source, rich medium, and high osmolarity. Taken together, these data indicate that there are common environmental cues that regulate fimbrial transcription in E. coli and that H-NS is an important environmental regulator for fimbrial transcription in response to several stimuli.

摘要

完成了一项比较研究,以确定各种环境刺激对大肠杆菌中三种不同菌毛操纵子转录的影响,并确定类组蛋白H-NS在这种环境调节中的作用。所研究的菌毛操纵子包括编码肾盂肾炎相关菌毛(P菌毛)的pap操纵子、编码F1845菌毛的daa操纵子以及编码K99菌毛的fan操纵子。利用每个菌毛操纵子内的lacZYA转录融合体,我们测试了温度、渗透压、碳源、丰富培养基、氧气水平、pH值、氨基酸、固体培养基和铁浓度对菌毛基因表达的影响。低温、高渗透压、以葡萄糖作为碳源以及丰富培养基会抑制所有这三个操纵子的转录。高铁不会改变所测试的任何操纵子的转录,而其余刺激因素对个别操纵子有影响。对于pap和daa操纵子,引入hns651突变可完全或部分缓解由于低温、以葡萄糖作为碳源、丰富培养基和高渗透压所导致的抑制作用。综上所述,这些数据表明存在共同的环境信号调节大肠杆菌中的菌毛转录,并且H-NS是响应多种刺激时菌毛转录的重要环境调节因子。

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