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缺乏核糖-5-磷酸差向异构酶活性的大肠杆菌rpe突变体生长受损。

Impaired growth of an Escherichia coli rpe mutant lacking ribulose-5-phosphate epimerase activity.

作者信息

Lyngstadaas A, Sprenger G A, Boye E

机构信息

Department of Cell Biology, Institute for Cancer Research, Montebello, N-0310 Oslo, Norway.

出版信息

Biochim Biophys Acta. 1998 Aug 24;1381(3):319-30. doi: 10.1016/s0304-4165(98)00046-4.

Abstract

We present evidence that ribulose-5-phosphate epimerase, a central metabolic enzyme acting in the non-oxidative branch of the pentose-phosphate pathway, is encoded by a gene in the dam containing operon of Escherichia coli. Enzymatic assays confirm that this gene encodes ribulose-5-phosphate epimerase activity. Disruption of the gene (rpe) causes loss of enzymatic activity and renders the rpe mutant unable to utilize single pentose sugars, indicating that rpe supplies the only ribulose-5-phosphate epimerase activity in E. coli. Growth of the rpe mutant is impaired in complex LB medium and severely impaired in minimal medium containing glycolytic carbon sources or gluconate. Enrichment with casamino acids abolishes or strongly relieves growth suppression in minimal medium. Aspartate counteracts the impaired growth in glycolytic carbon sources but not in gluconate. We suggest that the absence of the Rpe enzyme causes changes in the pentose-phosphate levels which alter the regulation of (a) metabolic enzyme(s) and thereby cause growth suppression and that the severity of growth suppression is related to the internal concentration of pentose-phosphates. Target enzymes for negative regulation may be located in the early parts of the Embden-Meyerhof-Parnas pathway and of the Entner-Doudoroff pathway and/or of carbohydrate transport systems feeding sugars into these sections of central metabolic pathways.

摘要

我们提供的证据表明,核糖-5-磷酸表异构酶是戊糖磷酸途径非氧化分支中的一种核心代谢酶,由大肠杆菌含dam的操纵子中的一个基因编码。酶活性测定证实该基因编码核糖-5-磷酸表异构酶活性。该基因(rpe)的破坏导致酶活性丧失,使rpe突变体无法利用单一戊糖,这表明rpe提供了大肠杆菌中唯一的核糖-5-磷酸表异构酶活性。rpe突变体在复杂的LB培养基中生长受损,在含有糖酵解碳源或葡萄糖酸盐的基本培养基中严重受损。添加酪蛋白氨基酸可消除或显著缓解基本培养基中的生长抑制。天冬氨酸可抵消糖酵解碳源中生长受损的情况,但不能抵消葡萄糖酸盐中的生长受损情况。我们认为,Rpe酶的缺失会导致戊糖磷酸水平发生变化,从而改变一种或多种代谢酶的调节,进而导致生长抑制,并且生长抑制的严重程度与戊糖磷酸的内部浓度有关。负调控的靶酶可能位于糖酵解途径、Entner-Doudoroff途径的早期部分和/或向这些中心代谢途径部分输送糖类的碳水化合物运输系统中。

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