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苯氧乙醇对大肠杆菌NCTC 5933中某些呼吸和脱氢酶系统的抑制作用。

Inhibition of some respiration and dehydrogenase enzyme systems in Escherichia coli NCTC 5933 by phenoxyethanol.

作者信息

Gilbert P, Beveridge E G, Crone P B

出版信息

Microbios. 1977;20(79):29-37.

PMID:362131
Abstract

Low concentrations (less than 0.2% w/v) of phenoxyethanol stimulated both the rate of respiration and total oxygen uptakes of Escherichia coli NCTC 5933 suspensions with glucose and other substrates, whilst higher concentrations (0.2--0.6% w/v) although still below those showing significant bactericidal activity, produced progressive levels of inhibition. The degree of respiratory inhibition varied with different substrates in the order malate less than succinate less than pyruvate less than or equal to glucose less than lactate, and suggested appreciable inhibition at a point after malate in the tricarboxylic acid cycle. This suggestion was supported by the use of tetrazolium salts as alternative electron acceptors, and by cytochrome difference spectra, which together implicated malate dehydrogenase as the most likely site of action. Isolated dehydrogenase enzymes of the tricarboxylic acid cycle in cell-free preparations were unaffected by high concentrations of phenoxyethanol (0.8% w/v) with the exception of malate dehydrogenase which was inhibited in extracts to extents similar to those of malate oxidation by intact bacteria. Lineweaver-Burke plots for malate dehydrogenase activity in the presence of phenoxyethanol suggested a competitive inhibition of the oxaloacetic acid-limited reaction and a non-competitive inhibition of the NADH-limited reaction. Accordingly, Ki values were found to be low when the rate of reaction was limited by oxaloacetic acid concentration yet relatively high when NADH was rate limiting.

摘要

低浓度(低于0.2% w/v)的苯氧乙醇能刺激大肠杆菌NCTC 5933悬浮液利用葡萄糖和其他底物时的呼吸速率和总氧气摄取量,而较高浓度(0.2 - 0.6% w/v)虽然仍低于显示出显著杀菌活性的浓度,但会产生逐渐增强的抑制作用。呼吸抑制程度因不同底物而异,顺序为苹果酸<琥珀酸<丙酮酸≤葡萄糖<乳酸,这表明在三羧酸循环中苹果酸之后的某个点存在明显抑制。使用四氮唑盐作为替代电子受体以及细胞色素差异光谱支持了这一推测,它们共同表明苹果酸脱氢酶是最可能的作用位点。除了苹果酸脱氢酶在提取物中受到的抑制程度与完整细菌对苹果酸氧化的抑制程度相似外,无细胞制剂中三羧酸循环的分离脱氢酶不受高浓度(0.8% w/v)苯氧乙醇的影响。苯氧乙醇存在时苹果酸脱氢酶活性的Lineweaver - Burke图表明,对草酰乙酸限制反应存在竞争性抑制,对NADH限制反应存在非竞争性抑制。因此,当反应速率受草酰乙酸浓度限制时,发现Ki值较低,而当NADH为速率限制因素时,Ki值相对较高。

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