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由Fis负调控的基因的鉴定:Fis和RpoS共同调节大肠杆菌中生长阶段依赖性基因的表达。

Identification of genes negatively regulated by Fis: Fis and RpoS comodulate growth-phase-dependent gene expression in Escherichia coli.

作者信息

Xu J, Johnson R C

机构信息

Department of Biological Chemistry, UCLA School of Medicine 90024.

出版信息

J Bacteriol. 1995 Feb;177(4):938-47. doi: 10.1128/jb.177.4.938-947.1995.

Abstract

Fis is a nucleoid-associated protein in Escherichia coli that has been shown to regulate recombination, replication, and transcription reactions. It is expressed in a transient manner under batch culturing conditions such that high levels are present during early exponential phase and low levels are present during late exponential phase and stationary phase. We have screened a random collection of transposon-induced lac fusions for those which give decreased expression in the presence of Fis. Thirteen different Fis-repressed genes were identified, including glnQ (glutamine high-affinity transport), mglA (methyl-galactoside transport), xylF (D-xylose-binding protein), sdhA (succinate dehydrogenase flavoprotein subunit), and a newly identified aldehyde dehydrogenase, aldB. The LacZ expression patterns revealed that many of the fusions were maximally expressed at different stages of growth, including early log phase, mid- to late log phase, and stationary phase. The expression of some of the late-exponential- and stationary-phase genes was dependent on the RpoS sigma factor, whereas that of others was affected negatively by RpoS. We conclude that Fis negatively regulates a diverse set of genes and that RpoS can function to both activate and inhibit the expression of specific genes.

摘要

Fis是大肠杆菌中一种与类核相关的蛋白质,已被证明可调节重组、复制和转录反应。在分批培养条件下,它以瞬时方式表达,即在指数生长期早期含量较高,而在指数生长期后期和稳定期含量较低。我们筛选了一组随机的转座子诱导的lac融合体,寻找那些在有Fis存在时表达降低的融合体。鉴定出13个不同的受Fis抑制的基因,包括glnQ(谷氨酰胺高亲和力转运蛋白)、mglA(甲基半乳糖苷转运蛋白)、xylF(D-木糖结合蛋白)、sdhA(琥珀酸脱氢酶黄素蛋白亚基),以及一个新鉴定的醛脱氢酶aldB。LacZ表达模式显示,许多融合体在生长的不同阶段表达最高,包括对数生长期早期、对数生长期中期到后期以及稳定期。一些指数生长期后期和稳定期基因的表达依赖于RpoS σ因子,而其他一些基因的表达则受到RpoS的负影响。我们得出结论,Fis对多种基因起负调节作用,并且RpoS可以起到激活和抑制特定基因表达的作用。

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