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能够进行厌氧氨氧化(anammox)的浮霉菌门的梯烷和其他膜脂的结构鉴定。

Structural identification of ladderane and other membrane lipids of planctomycetes capable of anaerobic ammonium oxidation (anammox).

作者信息

Sinninghe Damsté Jaap S, Rijpstra W Irene C, Geenevasen Jan A J, Strous Marc, Jetten Mike S M

机构信息

Royal Netherlands Institute for Sea Research (NIOZ), Department of Marine Biogeochemistry and Toxicology, Texel, The Netherlands.

出版信息

FEBS J. 2005 Aug;272(16):4270-83. doi: 10.1111/j.1742-4658.2005.04842.x.

Abstract

The membrane lipid composition of planctomycetes capable of the anaerobic oxidation of ammonium (anammox), i.e. Candidatus'Brocadia anammoxidans' and Candidatus'Kuenenia stuttgartiensis', was shown to be composed mainly of so-called ladderane lipids. These lipids are comprised of three to five linearly concatenated cyclobutane moieties with cis ring junctions, which occurred as fatty acids, fatty alcohols, alkyl glycerol monoethers, dialkyl glycerol diethers and mixed glycerol ether/esters. The highly strained ladderane moieties were thermally unstable, which resulted in breakdown during their analysis with GC. This was shown by isolation of a thermal product of these ladderanes and subsequent analysis with two-dimensional NMR techniques. Comprehensive MS and relative retention time data for all the encountered ladderane membrane lipids is reported, allowing the identification of ladderanes in other bacterial cultures and in the environment. The occurrence of ladderane lipids seems to be limited to the specific phylogenetic clade within the Planctomycetales able to perform anammox. This was consistent with their proposed biochemical function, namely as predominant membrane lipids of the so-called anammoxosome, the specific organelle where anammox catabolism takes place in the cell.

摘要

能够进行厌氧氨氧化(anammox)的浮霉菌门细菌,即“厌氧氨氧化布罗卡德氏菌”(Candidatus'Brocadia anammoxidans')和“斯图加特库涅氏菌”(Candidatus'Kuenenia stuttgartiensis'),其膜脂组成主要由所谓的梯形烷脂质构成。这些脂质由三到五个具有顺式环连接的线性串联环丁烷部分组成,它们以脂肪酸、脂肪醇、烷基甘油单醚、二烷基甘油二醚以及混合甘油醚/酯的形式存在。高度应变的梯形烷部分热稳定性差,这导致它们在气相色谱分析过程中分解。通过分离这些梯形烷的热产物并随后用二维核磁共振技术进行分析得以证明。报告了所有遇到的梯形烷膜脂的综合质谱和相对保留时间数据,有助于在其他细菌培养物和环境中鉴定梯形烷。梯形烷脂质的出现似乎仅限于浮霉菌目中能够进行厌氧氨氧化的特定系统发育分支。这与它们推测的生化功能一致,即作为所谓厌氧氨氧化体的主要膜脂,厌氧氨氧化体是细胞中发生厌氧氨氧化分解代谢的特定细胞器。

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