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影响大肠杆菌K-12中异亮氨酸-缬氨酸生物合成的遗传调控突变的抑制因子。

Suppressors of a genetic regulatory mutation affecting isoleucine-valine biosynthesis in Escherichia coli K-12.

作者信息

Hahn J E, Calhoun D H

出版信息

J Bacteriol. 1978 Oct;136(1):117-24. doi: 10.1128/jb.136.1.117-124.1978.

Abstract

Escherichia coli K-12 mutant PS187 carries a mutation, ilvA538, in the structural gene for the biosynthetic L-threonine deaminase that leads to a leucine-sensitive growth phenotype, an isoleucine- and leucine-hypersensitive L-threonine deaminase, and pleiotropic effects resulting in abnormally low and invariant expression of some of the isoleucine-valine biosynthetic enzymes. Fifty-eight derivatives of strain PS187 were isolated as resistant to growth inhibition by leucine, by valine, or by valine plus glycly-valine and were biochemically, genetically, and physiologically characterized. All of these derivatives produced the feedback-hypersensitive L-threonine deaminase, and thus presumably possess the ilvA538 allele of the parent strain. Elevated synthesis of L-threonine deaminase was observed in 41 of the 58 isolates. Among 18 strains analyzed genetically, only those with mutations linked to the ilv gene clusters at 83 min produced elevated levels of L-threonine deaminase. One of the strains, MSR91, isolated as resistant to valine plus glycyl-valine, was chosen for more detailed study. The locus in strain MSR91 conferring resistance was located in four factor crosses between ilvE and rbs, and is in or near the ilvO gene postulated to be a site controlling the expression of the ilvEDA genes. Synthesis of the ilvEDA gene products in strain MSR91 is constitutive and derepressed approximately 200-fold relative to the parent strain, indicating that the genetic regulatory effects of the ilvA538 allele have been suppressed. Strain MSR91 should be suitable for use in purification of the ilvA538 gene product, since enzyme synthesis is fully derepressed and the suppressor mutation is clearly not located within the ilvA gene.

摘要

大肠杆菌K-12突变体PS187在生物合成型L-苏氨酸脱氨酶的结构基因中携带ilvA538突变,该突变导致亮氨酸敏感的生长表型、异亮氨酸和亮氨酸超敏的L-苏氨酸脱氨酶,以及多效性效应,致使一些异亮氨酸-缬氨酸生物合成酶的表达异常低且恒定。分离出58株PS187菌株的衍生物,它们对亮氨酸、缬氨酸或缬氨酸加甘氨酰-缬氨酸的生长抑制具有抗性,并对其进行了生化、遗传和生理特性分析。所有这些衍生物都产生反馈超敏的L-苏氨酸脱氨酶,因此推测具有亲本菌株的ilvA538等位基因。在58个分离株中的41个中观察到L-苏氨酸脱氨酶的合成增加。在18株进行遗传分析的菌株中,只有那些在83分钟时与ilv基因簇连锁的突变菌株产生了高水平的L-苏氨酸脱氨酶。其中一株MSR91菌株,是作为对缬氨酸加甘氨酰-缬氨酸具有抗性而分离出来的,被选作更详细的研究对象。MSR91菌株中赋予抗性的位点位于ilvE和rbs之间的四因子杂交中,并且位于假定为控制ilvEDA基因表达的位点的ilvO基因内或附近。MSR91菌株中ilvEDA基因产物的合成是组成型的,相对于亲本菌株去阻遏约200倍,这表明ilvA538等位基因的遗传调控作用已被抑制。MSR91菌株应该适合用于纯化ilvA538基因产物,因为酶的合成已完全去阻遏,并且抑制突变显然不在ilvA基因内。

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引用本文的文献

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J Bacteriol. 1974 Dec;120(3):1058-67. doi: 10.1128/jb.120.3.1058-1067.1974.

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