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1
New regulatory mutation affecting some of the tryptophan genes in Pseudomonas putida.影响恶臭假单胞菌中某些色氨酸基因的新调控突变。
J Bacteriol. 1971 May;106(2):331-8. doi: 10.1128/jb.106.2.331-338.1971.
2
Regulation of the tryptophan synthetic enzymes in Clostridium butyricum.丁酸梭菌中色氨酸合成酶的调控
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3
Repression of 3-deoxy-D-arabinoheptulosonic acid-7-phosphate synthetase (trp) and enzymes of the tryptophan pathway in Escherichia coli K-12.大肠杆菌K-12中3-脱氧-D-阿拉伯庚酮糖酸-7-磷酸合成酶(trp)及色氨酸途径中酶的阻遏作用
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Regulation of tryptophan biosynthetic enzymes in Neurospora crassa.粗糙脉孢菌中色氨酸生物合成酶的调控
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Altered regulatory mechanisms for tryptophan synthesis in fluorotryptophan-resistant mutants of Brevibacterium flavum.黄色短杆菌氟代色氨酸抗性突变体中色氨酸合成调控机制的改变
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Mechanism of 3-methylanthranilic acid derepression of the tryptophan operon in Escherichia coli.大肠杆菌中3-甲基邻氨基苯甲酸解除色氨酸操纵子阻遏的机制。
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Regulation of the Escherichia coli tryptophan operon by early reactions in the aromatic pathway.芳香族途径早期反应对大肠杆菌色氨酸操纵子的调控。
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Enzymes of the tryptophan pathway in Acinetobacter calco-aceticus.醋酸钙不动杆菌中色氨酸途径的酶
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Tryptophan synthetic pathway and its regulation in Chromobacterium violaceum.紫色杆菌中色氨酸合成途径及其调控
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Front Microbiol. 2015 Nov 24;6:1310. doi: 10.3389/fmicb.2015.01310. eCollection 2015.
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The Role of Amino Acid Permeases and Tryptophan Biosynthesis in Cryptococcus neoformans Survival.氨基酸通透酶和色氨酸生物合成在新型隐球菌生存中的作用
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Transcriptome analysis of a phenol-producing Pseudomonas putida S12 construct: genetic and physiological basis for improved production.一株产酚恶臭假单胞菌S12构建体的转录组分析:产量提高的遗传和生理基础
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Effects of mutations in the Pseudomonas putida miaA gene: regulation of the trpE and trpGDC operons in P. putida by attenuation.恶臭假单胞菌miaA基因突变的影响:通过衰减调控恶臭假单胞菌中的trpE和trpGDC操纵子。
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5
Regulation of the tryptophan synthetic enzymes in Clostridium butyricum.丁酸梭菌中色氨酸合成酶的调控
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6
The regulation of tryptophan biosynthesis in Pseudomonas aeruginosa.铜绿假单胞菌中色氨酸生物合成的调控
Mol Gen Genet. 1973 Mar 1;121(2):117-32. doi: 10.1007/BF00277526.
7
Significance of altered carbon flow in aromatic amino acid synthesis: an approach to the isolation of regulatory mutants in Pseudomonas aeruginosa.芳香族氨基酸合成中碳流改变的意义:一种分离铜绿假单胞菌调节突变体的方法。
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8
Evolutionary differences in chromosomal locations of four early genes of the tryptophan pathway in fluorescent pseudomonads: DNA sequences and characterization of Pseudomonas putida trpE and trpGDC.荧光假单胞菌色氨酸途径四个早期基因染色体定位的进化差异:恶臭假单胞菌trpE和trpGDC的DNA序列及特性分析
J Bacteriol. 1990 Feb;172(2):867-83. doi: 10.1128/jb.172.2.867-883.1990.
9
DNA sequences and characterization of four early genes of the tryptophan pathway in Pseudomonas aeruginosa.铜绿假单胞菌色氨酸途径四个早期基因的DNA序列及特征分析
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10
Molecular characterization and expression analysis of the anthranilate synthase gene of Pseudomonas syringae subsp. savastanoi.丁香假单胞菌 savastanoi 亚种邻氨基苯甲酸合酶基因的分子特征及表达分析
J Bacteriol. 1991 Jan;173(2):463-71. doi: 10.1128/jb.173.2.463-471.1991.

本文引用的文献

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Protein measurement with the Folin phenol reagent.使用福林酚试剂进行蛋白质测定。
J Biol Chem. 1951 Nov;193(1):265-75.
2
ABSENCE OF CLUSTERING OF FUNCTIONALLY RELATED GENES IN PSEUDOMONAS AERUGINOSA.铜绿假单胞菌中功能相关基因无聚类现象。
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STUDIES ON THE REGULATION OF TRYPTOPHAN BIOSYNTHESIS IN ESCHERICHIA COLI.大肠杆菌中色氨酸生物合成调控的研究
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Transduction and recombination study of linkage relationships among the genes controlling tryptophan synthesis in Escherichia coli.大肠杆菌中控制色氨酸合成的基因间连锁关系的转导与重组研究。
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1-(o-Carboxyphenylamino)-1-deoxyribulose. A compound formed by mutant strains of Aerobacter aerogenes and Escherichia coli blocked in the biosynthesis of tryptophan.1-(邻羧基苯氨基)-1-脱氧核糖酮。一种由产气气杆菌和大肠杆菌的色氨酸生物合成受阻的突变菌株形成的化合物。
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[Inhibition of the synthesis of the enzymes participating in the formation of tryptophan in Escherichia coli].[对大肠杆菌中参与色氨酸形成的酶的合成的抑制作用]
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Acetylornithinase of Escherichia coli: partial purification and some properties.大肠杆菌的乙酰鸟氨酸酶:部分纯化及某些性质
J Biol Chem. 1956 Jan;218(1):97-106.
8
Transduction of linked genetic characters of the host by bacteriophage P1.噬菌体P1对宿主连锁遗传性状的转导
Virology. 1955 Jul;1(2):190-206. doi: 10.1016/0042-6822(55)90016-7.
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Autonomous replication of a defective transducing phage in Pseudomonas putida.缺陷转导噬菌体在恶臭假单胞菌中的自主复制。
Virology. 1969 May;38(1):92-104. doi: 10.1016/0042-6822(69)90131-7.
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Fine structure mapping of the tryptophan genes in Pseudomonas putida.恶臭假单胞菌中色氨酸基因的精细结构图谱
Genetics. 1968 Nov;60(3):419-35. doi: 10.1093/genetics/60.3.419.

影响恶臭假单胞菌中某些色氨酸基因的新调控突变。

New regulatory mutation affecting some of the tryptophan genes in Pseudomonas putida.

作者信息

Maurer R, Crawford I P

出版信息

J Bacteriol. 1971 May;106(2):331-8. doi: 10.1128/jb.106.2.331-338.1971.

DOI:10.1128/jb.106.2.331-338.1971
PMID:5573729
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC285101/
Abstract

Three indole analogues, 5-methylindole, 5-fluoroindole, and 7-methylindole, and the tryptophan analogue 5-fluorotryptophan were found to inhibit the growth of wild-type Pseudomonas putida. Mutants resistant to these analogues were obtained. Some of the 5-fluoroindole- and 5-fluorotryptophan-resistant strains exhibit an abnormality in the regulation of certain trp genes. These strains excrete anthranilate when grown in minimal medium in the presence or absence of the inhibitor. In these strains, the trpA, B, and D gene products, the first, second, and fourth enzymes of the tryptophan pathway, are produced in 20-fold excess over the normal wild-type level. The other enzymes of the pathway are unaffected. Exogenous tryptophan is still able to repress the expression of the trpABD cluster somewhat. Similarity between the 5-fluoroindole- and 5-fluorotryptophan-resistant strains suggests that the former compound becomes effective through conversion to the latter. Repression and derepression experiments with two anthranilate-excreting, 5-fluoroindole-resistant strains showed coordinate variation of the affected enzymes. The locus conferring resistance and excretion is not linked by transduction to any of the trp genes.

摘要

三种吲哚类似物,即5-甲基吲哚、5-氟吲哚和7-甲基吲哚,以及色氨酸类似物5-氟色氨酸,被发现可抑制野生型恶臭假单胞菌的生长。获得了对这些类似物具有抗性的突变体。一些对5-氟吲哚和5-氟色氨酸具有抗性的菌株在某些色氨酸基因的调控方面表现出异常。这些菌株在添加或不添加抑制剂的基本培养基中生长时会分泌邻氨基苯甲酸。在这些菌株中,色氨酸途径的第一种、第二种和第四种酶,即trpA、B和D基因产物的产生量比正常野生型水平高出20倍。该途径的其他酶不受影响。外源性色氨酸仍然能够在一定程度上抑制trpABD基因簇的表达。对5-氟吲哚抗性且分泌邻氨基苯甲酸的两个菌株进行的阻遏和去阻遏实验表明,受影响的酶存在协同变化。赋予抗性和分泌能力的基因座通过转导与任何色氨酸基因均不连锁。