McFadden B A, Howes W V
Department of Chemistry, Washington State University, Pullman, Washington.
J Bacteriol. 1962 Jul;84(1):72-6. doi: 10.1128/jb.84.1.72-76.1962.
McFadden, Bruce A. (Washington State University, Pullman, Wash.) and William V. Howes. Oxidative metabolism and the glyoxylate cycle in Pseudomonas indigofera. J. Bacteriol. 84:72-76. 1962.-Oxidative patterns of Pseudomonas indigofera have been investigated. Intact cells oxidize acetate, ethanol, fumarate, glyoxylate, alpha-ketoglutarate, malate, oxaloacetate, pyruvate, and succinate to greater than 35% of completion. Isocitrate is oxidized to 21% of completion. Citrate is not oxidized by whole cells but is oxidized by cell-free preparations, as are fumarate, isocitrate, malate, and succinate. These patterns are suggestive of the operation of the tricarboxylic acid cycle. Investigations of levels of isocitrate lyase and malate synthase as functions of growth substrate have been conducted. Assays for these enzymes in "soluble" preparations were performed under ostensibly optimal conditions for catalysis. Growth substrates used at 0.3% were: (i) ethanol, (ii) glucose, (iii) succinic acid, and (iv) yeast extract. Specific activities of isocitrate lyase were: for (i) 3.80, (ii) 0.61, (iii) 1.47, and (iv) 1.33; activities of malate synthase were: for (i) 0.18, (ii) 0.032, (iii) 0.021, and (iv) 0.029. Additionally, the isocitrate lyase level from butyrate-grown cells was similar to that for ethanol-grown cells; the specific activity of malate synthase was about 60% as high. Specific activities of these enzymes were reproducible when conditions of sonic disruption were standardized. Longer durations of disruption decreased both activities.
麦克法登,布鲁斯·A.(华盛顿州立大学,普尔曼,华盛顿)和威廉·V.豪斯。产靛假单胞菌中的氧化代谢和乙醛酸循环。《细菌学杂志》84:72 - 76。1962年。——对产靛假单胞菌的氧化模式进行了研究。完整细胞将乙酸盐、乙醇、富马酸盐、乙醛酸盐、α - 酮戊二酸、苹果酸盐、草酰乙酸盐、丙酮酸盐和琥珀酸盐氧化至超过35%的完成度。异柠檬酸氧化至21%的完成度。柠檬酸盐不被完整细胞氧化,但被无细胞制剂氧化,富马酸盐、异柠檬酸、苹果酸盐和琥珀酸盐也是如此。这些模式提示三羧酸循环在起作用。已对异柠檬酸裂解酶和苹果酸合酶水平作为生长底物的函数进行了研究。在表面上最适合催化的条件下,对“可溶性”制剂中的这些酶进行了测定。以0.3%使用的生长底物为:(i)乙醇,(ii)葡萄糖,(iii)琥珀酸,和(iv)酵母提取物。异柠檬酸裂解酶的比活性分别为:(i)3.80,(ii)0.61,(iii)1.47,和(iv)1.33;苹果酸合酶的活性分别为:(i)0.18,(ii)0.032,(iii)0.021,和(iv)0.029。此外,丁酸生长细胞的异柠檬酸裂解酶水平与乙醇生长细胞的相似;苹果酸合酶的比活性约为其60%。当超声破碎条件标准化时,这些酶的比活性是可重复的。破碎时间延长会降低两种酶的活性。