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专性甲基营养菌假单胞菌W6中NAD⁺和NADP⁺连接的异柠檬酸脱氢酶的调控

Regulation of NAD+- and NADP+-linked isocitrate dehydrogenase in the obligate methylotrophic bacterium Pseudomonas W6.

作者信息

Hofmann K H, Babel W

出版信息

Z Allg Mikrobiol. 1980;20(6):399-404. doi: 10.1002/jobm.3630200606.

Abstract

Cell-free extracts of the obligate methanol-utilizing bacterium Pseudomonas W6 catalyze the oxydation of isocitrate to alpha-ketoglutarate in the presence of NAD+ and NADP+. After electro-focusing of the crude extract of Pseudomonas W6 actually two distinct bands each of NAD+-linked isocitrate dehydrogenase (NAD+-IDH) and of NADP+-linked isocitrate dehydrogenase (NADP+-IDH) could be observed. The NAD+-IDH was completely separated from the NADP+-IDH by employing DEAE ion exchange chromatography and further purified by affinity chromatography using Cibacron blue F 3G-A. The NAD+-IDH was inhibited by a high energy charge, whereas the NADP+-IDH was found to be independent of energy charge. Consequently the NAD+-IDH showed the control behaviour of an enzyme of an energy-generating sequence which, however, equally fulfils a catabolic and an anabolic function. With respect to the inhibition by reduced pyridine nucleotides and alpha-ketoglutarate differences between NAD+-IDH and NADP+-IDH were also found. Only the NADP+-linked enzyme exhibited a feedback inhibition by its reaction products alpha-ketoglutarate and NADPH. This control behaviour gives evidence for the biosynthetic function of the NADP+-IDH. These results confer an amphibolic character to the sequence from citrate to alpha-ketoglutarate in the incomplete citric-acid cycle of Pseudomonas W6.

摘要

专性利用甲醇的细菌假单胞菌W6的无细胞提取物在NAD⁺和NADP⁺存在的情况下催化异柠檬酸氧化为α-酮戊二酸。对假单胞菌W6的粗提取物进行等电聚焦后,实际上可以观察到两条不同的条带,分别对应NAD⁺连接的异柠檬酸脱氢酶(NAD⁺-IDH)和NADP⁺连接的异柠檬酸脱氢酶(NADP⁺-IDH)。通过使用DEAE离子交换色谱法将NAD⁺-IDH与NADP⁺-IDH完全分离,并使用Cibacron blue F 3G-A通过亲和色谱法进一步纯化。NAD⁺-IDH受到高能荷的抑制,而NADP⁺-IDH则不受能荷的影响。因此,NAD⁺-IDH表现出能量产生序列中一种酶的控制行为,然而,它同样履行分解代谢和合成代谢功能。关于还原型吡啶核苷酸和α-酮戊二酸的抑制作用,在NAD⁺-IDH和NADP⁺-IDH之间也发现了差异。只有NADP⁺连接的酶受到其反应产物α-酮戊二酸和NADPH的反馈抑制。这种控制行为证明了NADP⁺-IDH的生物合成功能。这些结果赋予了假单胞菌W6不完全柠檬酸循环中从柠檬酸到α-酮戊二酸序列的兼性特征。

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