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核黄素高产菌株中异柠檬酸裂解酶活性与核黄素形成的相关性

Correlation of isocitrate lyase activity and riboflavin formation in the riboflavin overproducer .

作者信息

Schmidt Georg, Stahmann K-Peter, Kaesler Bruno, Sahm Hermann

机构信息

Institut für Biotechnologie 1, Forschungszentrum Jülich GmbH, D-52425 Jülich, Germany.

Forschung Feinchemikalien, Hauptlabor BASF AG, 67056 Ludwigshafen, Germany.

出版信息

Microbiology (Reading). 1996 Feb;142(2):419-426. doi: 10.1099/13500872-142-2-419.

Abstract

Isocitrate lyase (ICL) was assayed during batch cultivations of on soybean oil or glucose as carbon source. On soybean oil, a correlation between enzyme activity and riboflavin synthesis was observed. On glucose as carbon source, riboflavin overproduction started in the late growth phase when glucose was exhausted. ICL activity appeared in parallel and reached a maximum of 0.41 U (mg protein). This suggested synthesis of vitamin B from the intracellular reserve fat. ICL specific activity correlated with the enzyme concentration detected by specific antibodies. Itaconate, an efficient inhibitor of ICL, was used as an antimetabolite to screen mutants with enhanced ICL activity. Cultivations of an itaconate-resistant mutant on soybean oil revealed a 15% increase in enzyme specific activity and a 25-fold increase in riboflavin yield compared to the wild-type. On the other hand, growth experiments on glucose resulted in an eightfold increase in riboflavin yield but showed a 33% reduction in ICL specific activity compared to the wild-type grown on the same medium. These results support the idea of an ICL bottleneck in the riboflavin overproducer when plant oil is used as the substrate.

摘要

在以大豆油或葡萄糖作为碳源的分批培养过程中,对异柠檬酸裂解酶(ICL)进行了测定。在大豆油上,观察到酶活性与核黄素合成之间存在相关性。在以葡萄糖作为碳源时,当葡萄糖耗尽,核黄素过量生产在生长后期开始。ICL活性同时出现并达到最大值0.41 U(毫克蛋白)。这表明从细胞内储备脂肪合成维生素B。ICL比活性与通过特异性抗体检测到的酶浓度相关。衣康酸是ICL的有效抑制剂,用作抗代谢物来筛选具有增强ICL活性的突变体。与野生型相比,在大豆油上培养衣康酸抗性突变体显示酶比活性增加15%,核黄素产量增加25倍。另一方面,在葡萄糖上进行的生长实验导致核黄素产量增加8倍,但与在相同培养基上生长的野生型相比,ICL比活性降低了33%。这些结果支持了在以植物油作为底物时,核黄素过量生产者中存在ICL瓶颈的观点。

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