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大肠杆菌K12及其衍生物的lrp突变体中氨基酸代谢的改变。

Altered amino acid metabolism in lrp mutants of Escherichia coli K12 and their derivatives.

作者信息

Ambartsoumian G, D'Ari R, Lin R T, Newman E B

机构信息

Biology Department, Concordia University, Montreal, Quebec, Canada.

出版信息

Microbiology (Reading). 1994 Jul;140 ( Pt 7):1737-44. doi: 10.1099/13500872-140-7-1737.

Abstract

An Escherichia coli lrp mutant, lacking the leucine-responsive regulatory protein and the global response it controls, is deregulated in the expression of many genes, but is nevertheless able to grow in glucose-minimal medium at 37 degrees C. In the presence of isoleucine and valine, the growth rate of the lrp mutant at 37 degrees C is significantly increased by exogenous L-serine or L-leucine (or both), suggesting that synthesis of these amino acids is limiting. In the absence of isoleucine and valine, however, growth is severely inhibited by both L-serine and L-leucine. A shift to 42 degrees C or to anaerobiosis makes the lrp mutant auxotrophic for L-serine. Three double mutants carrying lrp and another known mutation, acquire new auxotrophies: lrp relA, lacking the stringent response to amino acid limitation, requires leucine; lrp ssd with numerous metabolic perturbations and antibiotic resistances, requires serine and leucine; and lrp pnt, lacking pyridine nucleotide transhydrogenase, requires glutamate or aspartate (or the corresponding amides). The lrp mutant, although able to achieve balanced growth in some conditions, is clearly on the edge of a metabolic precipice, unable to tolerate many physiological and genetic perturbations which are inocuous to wild-type E. coli.

摘要

一种缺乏亮氨酸应答调节蛋白及其所控制的全局应答的大肠杆菌lrp突变体,在许多基因的表达上失调,但仍能够在37摄氏度的葡萄糖基本培养基中生长。在异亮氨酸和缬氨酸存在的情况下,37摄氏度时lrp突变体的生长速率通过外源性L-丝氨酸或L-亮氨酸(或两者)显著提高,这表明这些氨基酸的合成是受限的。然而,在没有异亮氨酸和缬氨酸的情况下,L-丝氨酸和L-亮氨酸都会严重抑制生长。转移到42摄氏度或厌氧环境会使lrp突变体对L-丝氨酸产生营养缺陷。三个携带lrp和另一个已知突变的双突变体获得了新的营养缺陷:lrp relA缺乏对氨基酸限制的严格应答,需要亮氨酸;lrp ssd有许多代谢紊乱和抗生素抗性,需要丝氨酸和亮氨酸;lrp pnt缺乏吡啶核苷酸转氢酶,需要谷氨酸或天冬氨酸(或相应的酰胺)。lrp突变体虽然在某些条件下能够实现平衡生长,但显然处于代谢悬崖的边缘,无法耐受许多对野生型大肠杆菌无害的生理和遗传扰动。

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