首页> 美国卫生研究院文献>Journal of Bacteriology >Purification and Characterization of Sa-Lrp a DNA-Binding Protein from the Extreme Thermoacidophilic Archaeon Sulfolobus acidocaldarius Homologous to the Bacterial Global Transcriptional Regulator Lrp
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Purification and Characterization of Sa-Lrp a DNA-Binding Protein from the Extreme Thermoacidophilic Archaeon Sulfolobus acidocaldarius Homologous to the Bacterial Global Transcriptional Regulator Lrp

机译:Sa-Lrp的纯化和表征这是一种与细菌全局转录调节因子Lrp同源的极端嗜热古细菌Sulfolobus acidocaldarius的DNA结合蛋白。

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摘要

Archaea, constituting the third primary domain of life, harbor a basal transcription apparatus of the eukaryotic type, whereas curiously, a large fraction of the potential transcription regulation factors appear to be of the bacterial type. To date, little information is available on these predicted regulators and on the intriguing interplay that necessarily has to occur with the transcription machinery. Here, we focus on Sa-lrp of the extremely thermoacidophilic crenarchaeote Sulfolobus acidocaldarius, encoding an archaeal homologue of the Escherichia coli leucine-responsive regulatory protein Lrp, a global transcriptional regulator and genome organizer. Sa-lrp was shown to produce a monocistronic mRNA that was more abundant in the stationary-growth phase and produced in smaller amounts in complex medium, this down regulation being leucine independent. We report on Sa-Lrp protein purification from S. acidocaldarius and from recombinant E. coli, both identified by N-terminal amino acid sequence determination. Recombinant Sa-Lrp was shown to be homotetrameric and to bind to its own control region; this binding proved to be leucine independent and was stimulated at high temperatures. Interference binding experiments suggested an important role for minor groove recognition in the Sa-Lrp–DNA complex formation, and mutant analysis indicated the importance for DNA binding of the potential helix-turn-helix motif present at the N terminus of Sa-Lrp. The DNA-binding capacity of purified Sa-Lrp was found to be more resistant to irreversible heat inactivation in the presence of l-leucine, suggesting a potential physiological role of the amino acid as a cofactor.
机译:古细菌,构成生命的第三主要域,具有真核类型的基础转录装置,而奇怪的是,很大一部分潜在的转录调控因子似乎是细菌类型的。迄今为止,关于这些预测的调节子以及转录机制必定必须发生的有趣相互作用的信息很少。在这里,我们专注于极热嗜酸的Crenarchaeote Sulfolobus acidocaldarius的Sa-lrp,它编码大肠杆菌亮氨酸反应性调节蛋白Lrp(一种全球转录调节剂和基因组组织者)的古菌同源物。已显示Sa-lrp会产生单顺反子mRNA,该mRNA在平稳生长阶段更为丰富,而在复杂培养基中的产量则更低,这种下调与亮氨酸无关。我们报告了从S. acidocaldarius和重组大肠杆菌中纯化的Sa-Lrp蛋白,两者均通过N端氨基酸序列确定。重组Sa-Lrp被证明是同四聚体,并与其自身的控制区结合。该结合被证明是亮氨酸非依赖性的,并且在高温下被刺激。干扰结合实验表明,小沟识别在Sa-Lrp-DNA复合体形成中起重要作用,突变分析表明,对Sa-Lrp N端存在的潜在螺旋-转-螺旋基序的DNA结合很重要。发现纯化的Sa-Lrp的DNA结合能力在1-亮氨酸存在下对不可逆的热失活具有更强的抵抗力,表明氨基酸作为辅助因子的潜在生理作用。

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