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大肠杆菌icd突变体中柠檬酸合酶缺陷的筛选。

Selection for citrate synthase deficiency in icd mutants of Escherichia coli.

作者信息

Lakshmi T M, Helling R B

出版信息

J Bacteriol. 1976 Jul;127(1):76-83. doi: 10.1128/jb.127.1.76-83.1976.

Abstract

Cultures of isocitrate dehydrogenase-deficient (icd) mutants were overgrown by double mutants (icd glt) lacking citrate synthase activity also. The icd mutants grew more slowly than wild-type cells or the double mutants because they accumulated an inhibitory metabolite (possibly citrate). Intracellular citrate levels were several hundred-fold higher in icd cells than in wild-type or icd glt cells. Final growth yields of the wild type and the icd mutant on limiting glucose were equivalent and greater than the growth yield of icd glt double mutants. The icd gene mapped between 60 and 74 min. icd mutants were resistant to nalidixic acid, but glt and icd glt mutants and wild-type cells were sensitive, indicating that resistance results from accumulation of isocitrate, citrate, or a derivative of these compounds.

摘要

异柠檬酸脱氢酶缺陷(icd)突变体的培养物也被缺乏柠檬酸合酶活性的双突变体(icd glt)过度生长。icd突变体比野生型细胞或双突变体生长得更慢,因为它们积累了一种抑制性代谢物(可能是柠檬酸)。icd细胞内的柠檬酸水平比野生型或icd glt细胞高数百倍。在有限葡萄糖条件下,野生型和icd突变体的最终生长产量相当,且高于icd glt双突变体的生长产量。icd基因定位于60至74分钟之间。icd突变体对萘啶酸有抗性,但glt和icd glt突变体以及野生型细胞敏感,这表明抗性是由异柠檬酸、柠檬酸或这些化合物的衍生物积累导致的。

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