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协调甲烷丝菌对乙酸盐和二氧化碳的同化作用。

Acetate and CO2 assimilation by Methanothrix concilii.

作者信息

Ekiel I, Sprott G D, Patel G B

出版信息

J Bacteriol. 1985 Jun;162(3):905-8. doi: 10.1128/jb.162.3.905-908.1985.

Abstract

Biosynthetic pathways in Methanothrix concilii, a recently isolated aceticlastic methanogen, were studied by 13C-nuclear magnetic resonance spectroscopy. Labeling patterns of amino acids, lipids, and carbohydrates were determined. Similar to other methanogens, acetate was carboxylated to pyruvate, which was further converted to amino acids by various biosynthetic pathways. The origin of carbon atoms in glutamate, proline, and arginine clearly showed that an incomplete tricarboxylic acid cycle operating in the oxidative direction was used for their biosynthesis. Isoleucine was synthesized via citramalate, which is a typical route for methanogens. As with Methanosarcina barkeri, an extensive exchange of the label between the carboxyl group of acetate and CO2 was observed. Lipids predominantly contained diphytanyl chains, the labeling of which indicated that biosynthesis proceeded through mevalonic acid. Labeling of the C-1,6 of glucose from [2-13C]acetate is consistent with a glucogenic route for carbohydrate biosynthesis. Except for the different origins of the methyl group of methionine, the metabolic properties of Methanothrix concilii are closely related to those of Methanosarcina barkeri.

摘要

利用13C-核磁共振波谱法研究了最近分离出的嗜乙酸产甲烷菌——嗜合甲烷丝菌的生物合成途径。确定了氨基酸、脂质和碳水化合物的标记模式。与其他产甲烷菌类似,乙酸盐被羧化为丙酮酸,丙酮酸再通过各种生物合成途径进一步转化为氨基酸。谷氨酸、脯氨酸和精氨酸中碳原子的来源清楚地表明,一个以氧化方向运行的不完全三羧酸循环被用于它们的生物合成。异亮氨酸是通过柠苹酸合成的,这是产甲烷菌的典型途径。与巴氏甲烷八叠球菌一样,观察到乙酸盐羧基与二氧化碳之间存在广泛的标记交换。脂质主要含有二植烷链,其标记表明生物合成是通过甲羟戊酸进行的。[2-13C]乙酸盐对葡萄糖C-1,6的标记与碳水化合物生物合成的糖异生途径一致。除甲硫氨酸甲基的来源不同外,嗜合甲烷丝菌的代谢特性与巴氏甲烷八叠球菌密切相关。

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