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首页> 外文期刊>Journal of Molecular Biology >TWO AMINO ACID RESIDUES FROM THE DNA-BINDING DOMAIN OF MALT PLAY A CRUCIAL ROLE IN TRANSCRIPTIONAL ACTIVATION
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TWO AMINO ACID RESIDUES FROM THE DNA-BINDING DOMAIN OF MALT PLAY A CRUCIAL ROLE IN TRANSCRIPTIONAL ACTIVATION

机译:麦芽DNA结合域中的两个氨基酸残基在转录激活中起关键作用

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摘要

MalT is the transcriptional activator of the Escherichia coli maltose regulon. Several lines of evidence suggest that MalT might act by interacting with RNA polymerase. Here, we show that 'MalT, the DNA-binding domain of MalT, activates transcription. In order to identify amino acids of 'MalT playing a specific role in activation, and therefore possibly involved in the putative contact(s) with RNA polymerase, we developed a double screen to isolate mutations of the `malT gene affecting activation by 'MalT without impairing its DNA-binding affinity. The effect of the mutations thus obtained on activation was assessed in vivo. This strategy essentially pointed to serine 834 and glutamine 876 of the MalT amino acid sequence as specifically involved in activation. Various 'MalT derivatives substituted at positions 834 or 876 were purified and tested in vitro for their DNA-binding affinity, as well as for their activation ability. Together, the results obtained clearly show that serine 834 and glutamine 876 are important for activation by 'MalT but not for DNA-binding. We argue that these amino acid residues are possibly solvent-exposed and propose that they act by contacting RNA polymerase. (C) 1996 Academic Press Limited [References: 48]
机译:MalT是大肠杆菌麦芽糖调节剂的转录激活因子。几条证据表明,MalT可能通过与RNA聚合酶相互作用而起作用。在这里,我们显示'MalT,MalT的DNA结合结构域,激活转录。为了鉴定'MalT的氨基酸在激活中起特定作用,并因此可能参与了与RNA聚合酶的假定接触,我们开发了一种双筛选方法,以分离影响'MalT激活的MalT基因突变,损害其DNA结合亲和力。在体内评估了如此获得的突变对活化的影响。该策略本质上指出了MalT氨基酸序列的丝氨酸834和谷氨酰胺876与激活特别相关。纯化在834或876位取代的各种'MalT衍生物,并在体外测试其DNA结合亲和力以及它们的活化能力。在一起,获得的结果清楚地表明,丝氨酸834和谷氨酰胺876对于通过'MalT激活是重要的,但对于DNA结合而言则不重要。我们认为这些氨基酸残基可能是溶剂暴露的,并建议它们通过接触RNA聚合酶起作用。 (C)1996 Academic Press Limited [参考号:48]

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