[Regulation of citrate synthase in facultative methylotrophic bacteria].

G Müller-Kraft, W Babel
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引用次数: 4

Abstract

Commonly the TCA cycle fulfils an anabolic and a catabolic function in case of aerobic chemoorganoheterotrophic nutrition. In methylotrophic growth the TCA cycle is dispensable as a bioenergetic pathway. This is reflected by properties of citrate synthase in facultative methylotrophic bacteria. Two citrate synthases, a "chemoorganoheterotrophic" one, which is inhibited by NADH (or ATP in Acetobacter MB 58), and a "methylotrophic" one, which is not or less affected by energy indicators, were found in Pseudomonas oleovorans, Pseudomonas MS, Pseudomonas MA, and Acetobacter MB 58. The concentration of these citrate synthases depends on the manner of nutrition. Bacteria with ICL-negative-variant of the serine pathway and with ribulosebisphosphate pathway seem to possess only a "chemoorganoheterotrophic" citrate synthase. Possibly the anabolic function of this citrate synthase can be realized by metabolites.

兼性甲基营养细菌中柠檬酸合酶的调控。
通常,在有氧化学有机异养营养的情况下,TCA循环具有合成代谢和分解代谢功能。在甲基营养生长中,TCA循环作为一种生物能量途径是必不可少的。这反映在兼性甲基营养细菌的柠檬酸合酶特性上。在油酸假单胞菌、假单胞菌MS、假单胞菌MA和醋酸杆菌MB 58中发现了两种柠檬酸合成酶,一种是受NADH(或ATP)抑制的“化学有机异养”合成酶,另一种是不受能量指标影响或影响较小的“甲基化”合成酶。这些柠檬酸合酶的浓度取决于营养的方式。具有丝氨酸途径icl阴性变体和核酮糖二磷酸途径的细菌似乎只具有“化学有机异养”柠檬酸合成酶。可能这种柠檬酸合成酶的合成代谢功能可以通过代谢物来实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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