Suppr超能文献

细菌中两种功能不同的二氢乳清酸脱氢酶。

Two functionally different dihydroorotic dehydrogenases in bacteria.

作者信息

Taylor W H, Taylor M L, Eames D F

出版信息

J Bacteriol. 1966 Jun;91(6):2251-6. doi: 10.1128/jb.91.6.2251-2256.1966.

Abstract

Taylor, W. H. (Portland State College, Portland, Ore.), M. L. Taylor, and D. F. Eames. Two functionally different dihydroorotic dehydrogenases in bacteria. J. Bacteriol. 91:2251-2256. 1966.-We have investigated the relationship between the two kinds of dihydroorotic dehydrogenases produced by bacteria. A pseudomonad, capable of growth on a salts medium with glucose, aspartate, glycerol, or orotate as the carbon source, was isolated from lake bank mud. A particle-bound dihydroorotic dehydrogenase, similar to the biosynthetic enzyme in Escherichia coli, was formed by the pseudomonad when the carbon source was orotate, glucose, glycerol, or aspartate. A soluble, degradative nicotinamide adenine dinucleotide phosphate-linked dihydroorotic dehydrogenase, as well as the particle-bound biosynthetic enzyme, was formed when the pseudomonad was cultivated on orotate. The biosynthetic enzyme links to oxygen or ferricyanide, but not to pyridine nucleotides. Zymobacterium oroticum, when cultivated on glucose, contained only the biosynthetic type of dihydroorotic dehydrogenase. The presence of two functionally different dihydroorotic dehydrogenases in the pseudomonad was suggested on the basis of the following observations: (i) the two enzyme activities were separated by centrifugation; (ii) the pyridine nucleotide-linked activity was formed only when orotate was present in the growth medium; and (iii) the biosynthetic enzyme was stable to storage at -20 C for 4 months, whereas the degradative enzyme activity was destroyed by storage under these conditions.

摘要

泰勒,W.H.(俄勒冈州波特兰州立学院),M.L.泰勒,以及D.F.埃姆斯。细菌中两种功能不同的二氢乳清酸脱氢酶。《细菌学杂志》91:2251 - 2256。1966年。——我们研究了细菌产生的两种二氢乳清酸脱氢酶之间的关系。从湖岸泥中分离出一种假单胞菌,它能够在以葡萄糖、天冬氨酸、甘油或乳清酸作为碳源的盐培养基上生长。当碳源为乳清酸、葡萄糖、甘油或天冬氨酸时,这种假单胞菌会形成一种与大肠杆菌中的生物合成酶相似的颗粒结合型二氢乳清酸脱氢酶。当这种假单胞菌在乳清酸上培养时,会形成一种可溶性的、降解型的烟酰胺腺嘌呤二核苷酸磷酸连接的二氢乳清酸脱氢酶以及颗粒结合型生物合成酶。生物合成酶与氧气或铁氰化物相连,但不与吡啶核苷酸相连。发酵乳杆菌在葡萄糖上培养时,只含有生物合成型的二氢乳清酸脱氢酶。基于以下观察结果,提示假单胞菌中存在两种功能不同的二氢乳清酸脱氢酶:(i)通过离心可分离出两种酶活性;(ii)只有当生长培养基中存在乳清酸时才会形成吡啶核苷酸连接的活性;(iii)生物合成酶在-20℃储存4个月仍稳定,而降解酶活性在这些条件下储存会被破坏。

相似文献

7
Control of pyrimidine nucleotide formation in Pseudomonas aurantiaca.橙色假单胞菌嘧啶核苷酸形成的控制。
Arch Microbiol. 2020 Aug;202(6):1551-1557. doi: 10.1007/s00203-020-01842-x. Epub 2020 Mar 3.
9
Factors affecting the pathways of glucose catabolism and the tricarboxylic acid cycle in Pseudomonas natriegens.影响嗜盐栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖热栖
J Bacteriol. 1967 Mar;93(3):866-73. doi: 10.1128/jb.93.3.866-873.1967.

引用本文的文献

5
Control of pyrimidine biosynthesis in Pseudomonas aeruginosa.铜绿假单胞菌中嘧啶生物合成的调控
J Bacteriol. 1968 Nov;96(5):1732-41. doi: 10.1128/jb.96.5.1732-1741.1968.
6
Pyrimidine metabolism in microorganisms.微生物中的嘧啶代谢
Bacteriol Rev. 1970 Sep;34(3):278-343. doi: 10.1128/br.34.3.278-343.1970.
8
Two distinct isocitrate lyases from a pseudomonas species.
J Bacteriol. 1975 May;122(2):557-64. doi: 10.1128/jb.122.2.557-564.1975.
9
Degradation of purines and pyrimidines by microorganisms.微生物对嘌呤和嘧啶的降解
Bacteriol Rev. 1976 Jun;40(2):403-68. doi: 10.1128/br.40.2.403-468.1976.

本文引用的文献

2
The metabolism of orotic acid in aerobic bacteria.需氧菌中乳清酸的代谢
J Bacteriol. 1955 Mar;69(3):250-5. doi: 10.1128/jb.69.3.250-255.1955.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验