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碳同位素标记实验表明,厌氧氨氧化细菌的梯形烷脂质是通过一种以前未描述的新途径合成的。

Carbon isotope-labelling experiments indicate that ladderane lipids of anammox bacteria are synthesized by a previously undescribed, novel pathway.

作者信息

Rattray Jayne E, Geenevasen Jan A J, van Niftrik Laura, Rijpstra W Irene C, Hopmans Ellen C, Strous Marc, Schouten Stefan, Jetten Mike S M, Sinninghe Damsté Jaap S

机构信息

Department of Marine Organic Biogeochemistry, NIOZ Royal Netherlands Institute for Sea Research, Texel, The Netherlands.

出版信息

FEMS Microbiol Lett. 2009 Mar;292(1):115-22. doi: 10.1111/j.1574-6968.2008.01483.x. Epub 2009 Jan 17.

Abstract

Ladderane lipids are unusual membrane lipids of bacteria that anaerobically oxidize ammonium to dinitrogen gas (anammox). Ladderane lipids contain linearly concatenated cyclobutane rings for which the pathway of biosynthesis is currently unknown. To investigate the possible biosynthetic routes of these lipids, 2-(13)C-labelled acetate was added to a culture of the anammox bacterium Candidatus Brocadia fulgida. Labelling patterns obtained by high-field (13)C nuclear magnetic resonance spectroscopy of isolated lipids indicated that C. Brocadia fulgida synthesizes C(16:0) and isoC(16:0) fatty acids according to the known pathway of type II fatty acid biosynthesis. The (13)C-labelling pattern of the C(8) alkyl chain of the C(20) [3] ladderane monoether also indicated the use of this route. However, carbon atoms in the cyclobutane rings and the cyclohexane ring were nonspecifically labelled and did not correspond to known patterns of fatty acid synthesis. Taken together, our results indicate that it is unlikely that ladderane lipids are formed from the cyclization of polyunsaturated fatty acids as hypothesized previously and suggest an alternative, although as yet unknown, pathway of biosynthesis.

摘要

梯形烷脂质是细菌中一种特殊的膜脂,可将铵厌氧氧化为氮气(厌氧氨氧化)。梯形烷脂质含有线性连接的环丁烷环,其生物合成途径目前尚不清楚。为了研究这些脂质可能的生物合成途径,将2-(13)C标记的乙酸盐添加到厌氧氨氧化细菌“andidatus Brocadia fulgida”的培养物中。通过对分离出的脂质进行高场(13)C核磁共振光谱获得的标记模式表明,“Brocadia fulgida”根据已知的II型脂肪酸生物合成途径合成C(16:0)和异C(16:0)脂肪酸。C(20)[3]梯形烷单醚的C(8)烷基链的(13)C标记模式也表明使用了该途径。然而,环丁烷环和环己烷环中的碳原子被非特异性标记,与已知的脂肪酸合成模式不符。综上所述,我们的结果表明,梯形烷脂质不太可能如先前假设的那样由多不饱和脂肪酸环化形成,并暗示了一种替代的、尽管目前尚不清楚的生物合成途径。

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