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需氧及兼性厌氧菌中游离辅酶A和辅酶A硫酯细胞内池大小及组成的变化

Changes in the size and composition of intracellular pools of nonesterified coenzyme A and coenzyme A thioesters in aerobic and facultatively anaerobic bacteria.

作者信息

Chohnan S, Furukawa H, Fujio T, Nishihara H, Takamura Y

机构信息

Department of Bioresource Sciences, School of Agriculture, Ibaraki University, Japan.

出版信息

Appl Environ Microbiol. 1997 Feb;63(2):553-60. doi: 10.1128/aem.63.2.553-560.1997.

Abstract

Intracellular levels of three coenzyme A (CoA) molecular species, i.e., nonesterified CoA (CoASH), acetyl-CoA, and malonyl-CoA, in a variety of aerobic and facultatively anaerobic bacteria were analyzed by the acyl-CoA cycling method developed by us. It was demonstrated that there was an intrinsic difference between aerobes and facultative anaerobes in the changes in the size and composition of CoA pools. The CoA pools in the aerobic bacteria hardly changed and were significantly smaller than those of the facultatively anaerobic bacteria. On the other hand, in the facultatively anaerobic bacteria, the size and composition of the CoA pool drastically changed within minutes in response to the carbon and energy source provided. Acetyl-CoA was the major component of the CoA pool in the facultative anaerobes grown on sufficient glucose, although CoASH was dominant in the aerobes. Therefore, the acetyl-CoA/CoASH ratios in facultatively anaerobic bacteria were 10 times higher than those in aerobic bacteria. In Escherichia coli K-12 cells, the addition of reagents to inhibit the respiratory system led to a rapid decrease in the amount of acetyl-CoA with a concomitant increase in the amount of CoASH, whereas the addition of cerulenin, a specific inhibitor of fatty acid synthase, triggered the intracellular accumulation of malonyl-CoA. The acylation and deacylation of the three CoA molecular species coordinated with the energy-yielding systems and the restriction of the fatty acid-synthesizing system of cells. These data suggest that neither the accumulation of acetyl-CoA nor that of malonyl-CoA exerts negative feedback on pyruvate dehydrogenase and acetyl-CoA carboxylase, respectively.

摘要

我们运用自行开发的酰基辅酶A循环法,分析了多种需氧菌和兼性厌氧菌中三种辅酶A(CoA)分子形式,即非酯化辅酶A(CoASH)、乙酰辅酶A和丙二酰辅酶A的细胞内水平。结果表明,需氧菌和兼性厌氧菌在CoA库的大小和组成变化方面存在本质差异。需氧菌中的CoA库几乎没有变化,且明显小于兼性厌氧菌的CoA库。另一方面,在兼性厌氧菌中,CoA库的大小和组成会在数分钟内根据所提供的碳源和能源而急剧变化。在以充足葡萄糖生长的兼性厌氧菌中,乙酰辅酶A是CoA库的主要成分,而在需氧菌中CoASH占主导地位。因此,兼性厌氧菌中的乙酰辅酶A/CoASH比值比需氧菌中的高10倍。在大肠杆菌K-12细胞中,添加抑制呼吸系统的试剂会导致乙酰辅酶A量迅速减少,同时CoASH量增加,而添加脂肪酸合酶的特异性抑制剂浅蓝菌素会引发丙二酰辅酶A在细胞内积累。三种CoA分子形式的酰化和去酰化与细胞的能量产生系统以及脂肪酸合成系统的限制相互协调。这些数据表明,乙酰辅酶A和丙二酰辅酶A的积累分别不会对丙酮酸脱氢酶和乙酰辅酶A羧化酶产生负反馈作用。

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