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大肠杆菌钼辅因子阴性突变体在厌氧条件下利用柠檬酸盐。

Molybdenum cofactor negative mutants of Escherichia coli use citrate anaerobically.

作者信息

Clark D P

机构信息

Department of Microbiology, Southern Illinois University, Carbondale 62901.

出版信息

FEMS Microbiol Lett. 1990 Feb;55(3):245-9. doi: 10.1016/0378-1097(90)90003-9.

Abstract

Anaerobically, Escherichia coli cannot grow using either glycerol or citrate as sole carbon and energy source. However, it has been reported that a mixture of glycerol and citrate will support growth. We have found that wild-type strains of E. coli K-12 do not grow on glycerol plus citrate anaerobically. However, growth eventually occurs due to the frequent appearance of mutants. We found that such Cit+ mutants were defective in anaerobic respiration with nitrate or trimethylamine-N-oxide and were chlorate resistant (i.e. molybdenum cofactor deficient). Conversely, well characterized mutants in any of chlA, B, D, E, G and N were also able to use citrate anaerobically. No anaerobic growth differences between wild type and chl mutants were observed either with fermentable sugars or with glycerol plus fumarate or glycerol plus tartrate. Citrate lyase was induced anaerobically by citrate and repressed by glucose in both wild type strains and chl mutants. Furthermore, levels of citrate lyase, fumarate reductase, malate dehydrogenase, fumarase and alcohol dehydrogenase were similar in both types of strains under anaerobic conditions. It is conceivable that a functioning molybdenum cofactor prevents use of citrate by keeping citrate lyase in the inactive form.

摘要

在厌氧条件下,大肠杆菌不能以甘油或柠檬酸盐作为唯一的碳源和能源进行生长。然而,据报道甘油和柠檬酸盐的混合物可以支持其生长。我们发现,大肠杆菌K-12的野生型菌株在厌氧条件下不能在甘油加柠檬酸盐的培养基上生长。然而,由于突变体的频繁出现,最终会出现生长现象。我们发现,此类Cit+突变体在以硝酸盐或三甲胺-N-氧化物进行的厌氧呼吸中存在缺陷,并且对氯酸盐具有抗性(即钼辅因子缺陷)。相反,chlA、B、D、E、G和N中任何一个基因的特征明确的突变体也能够在厌氧条件下利用柠檬酸盐。在以可发酵糖、甘油加富马酸盐或甘油加酒石酸盐为培养基时,未观察到野生型和chl突变体之间存在厌氧生长差异。在野生型菌株和chl突变体中,柠檬酸盐都会在厌氧条件下诱导柠檬酸裂解酶的产生,而葡萄糖则会抑制该酶的产生。此外,在厌氧条件下,两种菌株中柠檬酸裂解酶、富马酸还原酶、苹果酸脱氢酶、富马酸酶和乙醇脱氢酶的水平相似。可以想象,一个正常运作的钼辅因子通过使柠檬酸裂解酶保持无活性状态来阻止对柠檬酸盐的利用。

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