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氨基醇的微生物代谢。假单胞菌属中1-氨基丙-2-醇和乙醇胺通过丙醛和乙醛的代谢

Microbial metabolism of amino alcohols. 1-Aminopropan-2-ol and ethanolamine metabolism via propionaldehyde and acetaldehyde in a species of Pseudomonas.

作者信息

Jones A, Turner J M

出版信息

Biochem J. 1973 May;134(1):167-82. doi: 10.1042/bj1340167.

Abstract
  1. Growth and manometric experiments showed that a Pseudomonas sp. P6 (N.C.I.B. 10431), formerly known as Achromobacter sp. P6, was capable of growth on both stereoisomers of 1-aminopropan-2-ol, and supported the hypothesis that assimilation involved metabolism to propionaldehyde, propionate and possibly 2-hydroxyglutarate. A number of alternative intermediary metabolites were ruled out. 2. Accumulation of propionaldehyde from 1-aminopropan-2-ol by intact cells occurred only during active growth, was transitory and was accompanied by morphological changes in the pseudomonad. 3. Enzymic and radioactive tracer evidence showed that 1-aminopropan-2-ol O-phosphate was the intermediate between amino alcohol and aldehyde. The operation of an inducibly formed ATP-amino alcohol phosphotransferase was established by measuring substrate disappearance, ADP formation and amino alcohol O-phosphate formation. This novel kinase had two activity peaks at about pH7 and 9. It acted on both l- and d-isomers of 1-aminopropan-2-ol, and also on l-threonine and ethanolamine, but had only low activity towards choline. The enzyme was partially purified by ion-exchange chromatography. 4. An amino alcohol O-phosphate phospho-lyase (deaminating) produced propionaldehyde from dl- and d-1-aminopropan-2-ol O-phosphate, and also formed acetaldehyde less rapidly from ethanolamine O-phosphate. It had optimum activity at about pH8 in Tris-HCl buffers. The enzyme was partially purified and evidence was obtained that a single enzyme was responsible for both activities. Apparent K(m) values for the substrates were determined. Activity was inhibited by dl-threonine O-phosphate, dl-serine O-phosphate, choline O-phosphate and P(i). Enzyme formation was induced by growth with either amino alcohol substrate. 5. Radioactive tracer experiments with dl-1-amino[3-(14)C]propan-2-ol confirmed the operation of the amino alcohol kinase and demonstrated coupling with the phospho-lyase enzyme in vitro to produce [(14)C]-propionaldehyde. 6. An aldehyde dehydrogenase, found in extracts of the pseudomonad after growth on 1-aminopropan-2-ol, was characterized and concluded to be responsible for propionaldehyde and acetaldehyde oxidation. The enzyme was inactive with methylglyoxal. 7. Propionate and acetate were concluded to be metabolized via propionyl-CoA and acetyl-CoA, and studies were made of a CoA ester synthase found in extracts. 8. Studies of a strain of Pseudomonas putida N.C.I.B. 10558 suggested that 1-aminopropan-2-ols were metabolized via their O-phosphates, propionaldehyde and propionate. Amino alcohol kinase activity was detected and extracts contained a phospho-lyase showing higher activity with the 1-aminopropan-2-ol O-phosphate than with ethanolamine O-phosphate.
摘要
  1. 生长和压力测定实验表明,一株假单胞菌属菌株P6(N.C.I.B. 10431,以前称为无色杆菌属菌株P6)能够利用1-氨基丙-2-醇的两种立体异构体生长,这支持了同化作用涉及代谢生成丙醛、丙酸盐以及可能还有2-羟基戊二酸的假说。排除了一些其他的中间代谢产物。2. 完整细胞从1-氨基丙-2-醇积累丙醛仅发生在活跃生长期间,是短暂的,并且伴随着假单胞菌的形态变化。3. 酶学和放射性示踪证据表明,1-氨基丙-2-醇O-磷酸酯是氨基醇和醛之间的中间体。通过测量底物消失、ADP形成和氨基醇O-磷酸酯形成,确定了一种诱导形成的ATP-氨基醇磷酸转移酶的作用。这种新型激酶在约pH7和9时有两个活性峰。它作用于1-氨基丙-2-醇的L-和D-异构体,也作用于L-苏氨酸和乙醇胺,但对胆碱的活性较低。该酶通过离子交换色谱法进行了部分纯化。4. 一种氨基醇O-磷酸磷酸裂合酶(脱氨基)从dl-和d-1-氨基丙-2-醇O-磷酸酯产生丙醛,也从乙醇胺O-磷酸酯较慢地形成乙醛。它在Tris-HCl缓冲液中约pH8时具有最佳活性。该酶进行了部分纯化,并有证据表明单一酶负责这两种活性。测定了底物的表观K(m)值。活性受到dl-苏氨酸O-磷酸酯、dl-丝氨酸O-磷酸酯、胆碱O-磷酸酯和磷酸根离子的抑制。酶的形成由任何一种氨基醇底物生长诱导。5. 用dl-1-氨基[3-(14)C]丙-2-醇进行的放射性示踪实验证实了氨基醇激酶的作用,并证明在体外与磷酸裂合酶偶联产生[(14)C]-丙醛。6. 在以1-氨基丙-2-醇生长后的假单胞菌提取物中发现的一种醛脱氢酶进行了特性鉴定,并得出结论认为它负责丙醛和乙醛的氧化。该酶对甲基乙二醛无活性。7. 得出结论认为丙酸盐和乙酸盐通过丙酰辅酶A和乙酰辅酶A进行代谢,并对提取物中发现的一种辅酶A酯合成酶进行了研究。8. 对恶臭假单胞菌菌株N.C.I.B. 10558的研究表明,1-氨基丙-2-醇通过它们的O-磷酸酯、丙醛和丙酸盐进行代谢。检测到氨基醇激酶活性,提取物中含有一种磷酸裂合酶,其对1-氨基丙-2-醇O-磷酸酯的活性高于对乙醇胺O-磷酸酯的活性。

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