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首页> 外文期刊>Journal of bacteriology >DNA-binding properties of the BetI repressor protein of Escherichia coli: the inducer choline stimulates BetI-DNA complex formation.
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DNA-binding properties of the BetI repressor protein of Escherichia coli: the inducer choline stimulates BetI-DNA complex formation.

机译:大肠埃希菌BetI阻遏蛋白的DNA结合特性:诱导胆碱刺激BetI-DNA复合物的形成。

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The betT and betIBA genes govern glycine betaine synthesis from choline in Escherichia coli. In an accompanying paper we report that the betT and betI promoters are divergently organized and partially overlapping and that both are negatively regulated by BetI in response to choline. (T. Lamark, T.P. Rokenes, J. McDougall, and A.R. Strom, J. Bacteriol. 178:1655-1662, 1996). In this paper, we report that the in vivo synthesis rate of the BetI protein constituted only 10% of that of BetA and BetB dehydrogenase proteins, indicating the existence of a posttranscriptional control of the betIBA operon. A genetically modified BetI protein called BetI*, which carries 7 extra N-terminal amino acids, was purified as a glutathione S-transferase fusion protein. Gel mobility shift assays showed that BetI* formed a complex with a 41-bp DNA fragment containing the -10 and -35 regions of both promoters. Only one stable complex was detected with the 41-bp fragment and all larger promoter-containing fragments tested. In DNase I footprinting, BetI* protected a region of 21 nucleotides covering both the -35 boxes. Choline stimulated complex formation but did not change the binding site of BetI*. We conclude that in vivo BetI is bound to its operator in both repressed and induced cells and that BetI represents a new type of repressor.
机译:betT和betIBA基因控制大肠杆菌中胆碱的甘氨酸甜菜碱合成。在随附的论文中,我们报道betT和betI启动子的组织不同且部分重叠,并且它们均受胆碱的影响而受到BetI的负调控。 (T.Lamark,T.P。Rokenes,J.McDougall,和A.R.Strom,J.Bacteriol.178:1655-1662,1996)。在本文中,我们报道BetI蛋白的体内合成率仅占BetA和BetB脱氢酶蛋白的体内合成率的10%,表明存在对betIBA操纵子的转录后控制。经过遗传修饰的BetI蛋白称为BetI *,它带有7个额外的N端氨基酸,被纯化为谷胱甘肽S-转移酶融合蛋白。凝胶迁移率迁移分析表明BetI *与包含两个启动子的-10和-35区的41 bp DNA片段形成了复合物。仅检测到具有41 bp片段的稳定复合物,并且测试了所有更大的含启动子的片段。在DNase I足迹中,BetI *保护了覆盖两个-35盒的21个核苷酸区域。胆碱刺激复合物形成,但不改变BetI *的结合位点。我们得出的结论是,体内BetI在阻遏和诱导细胞中均与其操纵子结合,并且BetI代表了新型的阻遏物。

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