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Ancestral Reconstruction of a Pre-LUCA Aminoacyl-tRNA Synthetase Ancestor Supports the Late Addition of Trp to the Genetic Code.对一个前最后共同祖先(LUCA)氨酰-tRNA合成酶祖先的祖先重建支持色氨酸在遗传密码中较晚添加。
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本文引用的文献

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Evidence of selection for low cognate amino acid bias in amino acid biosynthetic enzymes.氨基酸生物合成酶中低同源氨基酸偏好性选择的证据。
Mol Microbiol. 2005 May;56(4):1017-34. doi: 10.1111/j.1365-2958.2005.04566.x.
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Transcription by Methanothermobacter thermautotrophicus RNA polymerase in vitro releases archaeal transcription factor B but not TATA-box binding protein from the template DNA.嗜热自养甲烷杆菌RNA聚合酶在体外进行转录时,会从模板DNA上释放古细菌转录因子B,但不会释放TATA框结合蛋白。
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The different roles of tryptophan transfer RNA in regulating trp operon expression in E. coli versus B. subtilis.色氨酸转运RNA在调控大肠杆菌与枯草芽孢杆菌中trp操纵子表达方面的不同作用。
Trends Genet. 2004 Aug;20(8):367-74. doi: 10.1016/j.tig.2004.06.007.
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Transcriptional regulation in Archaea.古菌中的转录调控。
Curr Opin Genet Dev. 2004 Apr;14(2):133-8. doi: 10.1016/j.gde.2004.01.002.
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Transcription by an archaeal RNA polymerase is slowed but not blocked by an archaeal nucleosome.古细菌RNA聚合酶的转录会减慢,但不会被古细菌核小体阻断。
J Bacteriol. 2004 Jun;186(11):3492-8. doi: 10.1128/JB.186.11.3492-3498.2004.
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The Aspergillus fumigatus transcriptional activator CpcA contributes significantly to the virulence of this fungal pathogen.烟曲霉转录激活因子CpcA对这种真菌病原体的毒力有显著贡献。
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Regulation of transcription attenuation and translation initiation by allosteric control of an RNA-binding protein: the Bacillus subtilis TRAP protein.通过RNA结合蛋白的变构控制对转录衰减和翻译起始的调控:枯草芽孢杆菌TRAP蛋白
Curr Opin Microbiol. 2004 Apr;7(2):132-9. doi: 10.1016/j.mib.2004.02.003.
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In vitro transcription assays using components from Methanothermobacter thermautotrophicus.使用嗜热自养甲烷杆菌的成分进行体外转录分析。
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Topography of the euryarchaeal transcription initiation complex.广古菌转录起始复合物的拓扑结构。
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10
Transcription factor B contacts promoter DNA near the transcription start site of the archaeal transcription initiation complex.转录因子B与古细菌转录起始复合物转录起始位点附近的启动子DNA相互作用。
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嗜热自养甲烷杆菌中色氨酸操纵子表达的调控

Regulation of tryptophan operon expression in the archaeon Methanothermobacter thermautotrophicus.

作者信息

Xie Yunwei, Reeve John N

机构信息

Department of Microbiology, Ohio State University, Columbus, Ohio 43210-1292, USA.

出版信息

J Bacteriol. 2005 Sep;187(18):6419-29. doi: 10.1128/JB.187.18.6419-6429.2005.

DOI:10.1128/JB.187.18.6419-6429.2005
PMID:16159776
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1236654/
Abstract

Conserved trp genes encode enzymes that catalyze tryptophan biosynthesis in all three biological domains, and studies of their expression in Bacteria and eukaryotes have revealed a variety of different regulatory mechanisms. The results reported here provide the first detailed description of an archaeal trp gene regulatory system. We have established that the trpEGCFBAD operon in Methanothermobacter thermautotrophicus is transcribed divergently from a gene (designated trpY) that encodes a tryptophan-sensitive transcription regulator. TrpY binds to TRP box sequences (consensus, TGTACA) located in the overlapping promoter regions between trpY and trpE, inhibiting trpY transcription in the absence of tryptophan and both trpY and trpEGCFBAD transcription in the presence of tryptophan. TrpY apparently inhibits trpY transcription by blocking RNA polymerase access to the site of trpY transcription initiation and represses trpEGCFBAD transcription by preventing TATA box binding protein (TBP) binding to the TATA box sequence. Given that residue 2 (W2) is the only tryptophan in TrpY and in TrpY homologues in other Euryarchaea and that there is only one tryptophan codon in the entire trpEGCFBAD operon (trpB encodes W175), expression of the trp operon may also be regulated in vivo by the supply of charged tRNA(Trp) available to translate the second codon of the trpY mRNA.

摘要

保守的色氨酸基因编码的酶可在所有三个生物域中催化色氨酸的生物合成,对其在细菌和真核生物中表达的研究揭示了多种不同的调控机制。本文报道的结果首次详细描述了古细菌色氨酸基因调控系统。我们已经确定,嗜热栖热甲烷杆菌中的trpEGCFBAD操纵子与一个编码色氨酸敏感转录调节因子的基因(命名为trpY)反向转录。TrpY与位于trpY和trpE之间重叠启动子区域的TRP框序列(共有序列,TGTACA)结合,在缺乏色氨酸时抑制trpY转录,在有色氨酸时抑制trpY和trpEGCFBAD转录。TrpY显然通过阻止RNA聚合酶进入trpY转录起始位点来抑制trpY转录,并通过阻止TATA框结合蛋白(TBP)与TATA框序列结合来抑制trpEGCFBAD转录。鉴于第2位残基(W2)是TrpY和其他广古菌中TrpY同源物中唯一的色氨酸,并且在整个trpEGCFBAD操纵子中只有一个色氨酸密码子(trpB编码W175),trp操纵子的表达在体内也可能受可用于翻译trpY mRNA第二个密码子的带电荷tRNA(Trp)供应的调节。