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古细菌膜脂的结构。

Structures of archaebacterial membrane lipids.

作者信息

Sprott G D

机构信息

Institute of Biological Sciences, National Research Council, Ottawa, Canada.

出版信息

J Bioenerg Biomembr. 1992 Dec;24(6):555-66. doi: 10.1007/BF00762348.

DOI:10.1007/BF00762348
PMID:1459987
Abstract

Structural data on archaebacterial lipids is presented with emphasis on the ether lipids of the methanogens. These ether lipids normally account for 80-95% of the membrane lipids with the remaining 5-20% of neutral squalenes and other isoprenoids. Genus-specific combinations of various lipid core structures found in methanogens include diether-tetraether, dietherhydroxydiether, or diether-macrocyclic diether-tetraether lipid moieties. Some species have only the standard diether core lipid, but none are known with predominantly tetraether lipids as found in certain sulfur-dependent archaebacteria. The relative proportions of these lipid cores are known to vary in relation to growth conditions in Methanococcus jannaschii and Methanobacterium thermoautotrophicum. Polar headgroups in glycosidic or phosphodiester linkage to the sn-1 or sn-1' carbons of glycerol consist of polyols, carbohydrates, and amino compounds. The available structural data indicate a close similarity among the polar lipids synthesized within the species of the same genus. Detection of lipid molecular ions by mass spectrometry of total polar lipid extracts is a promising technique to provide valuable comparative data. Since these lipid structures are stable within the extreme environments that many archaebacteria inhabit, there may be specific applications for their use in biotechnology.

摘要

本文介绍了古细菌脂质的结构数据,重点是产甲烷菌的醚脂。这些醚脂通常占膜脂的80 - 95%,其余5 - 20%为中性角鲨烯和其他类异戊二烯。在产甲烷菌中发现的各种脂质核心结构的属特异性组合包括二醚 - 四醚、二醚 - 羟基二醚或二醚 - 大环二醚 - 四醚脂质部分。一些物种只有标准的二醚核心脂质,但没有像某些依赖硫的古细菌那样以四醚脂质为主的物种。已知在詹氏甲烷球菌和嗜热自养甲烷杆菌中,这些脂质核心的相对比例会因生长条件而变化。与甘油的sn - 1或sn - 1'碳以糖苷键或磷酸二酯键相连的极性头部基团由多元醇、碳水化合物和氨基化合物组成。现有的结构数据表明,同一属内不同物种合成的极性脂质之间存在密切的相似性。通过对总极性脂质提取物进行质谱分析来检测脂质分子离子,是一种有望提供有价值的比较数据的技术。由于这些脂质结构在许多古细菌所栖息的极端环境中是稳定的,因此它们在生物技术中可能有特定的应用。

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Structural elucidation of a unique macrocyclic membrane lipid from a new, extremely thermophilic, deep-sea hydrothermal vent archaebacterium, Methanococcus jannaschii.
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