古代脂质。

IF 14 1区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Progress in lipid research Pub Date : 2023-07-01 DOI:10.1016/j.plipres.2023.101237
Tomáš Řezanka , Lucie Kyselová , Denis J. Murphy
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引用次数: 2

摘要

主要的古菌膜甘油酯与细菌和真核生物的膜甘油酯的区别在于其甘油主链的立体化学对比,以及使用醚连接的类异戊二烯基烷基链而不是酯连接的脂肪酰基链作为其疏水部分。这些迷人的化合物在许多物种的极端微生物生活方式中发挥着重要作用,但也存在于最近发现的越来越多的中温古菌中。在过去的十年里,我们对古菌,特别是其脂质的理解取得了重大进展。许多新信息来自于通过环境宏基因组学筛选大型微生物种群的能力,这彻底改变了我们对古菌生物多样性程度的理解,同时严格保护了它们的膜脂成分。新的培养和分析技术取得了显著的额外进展,这些技术逐渐使古菌生理学和生物化学能够实时研究。这些研究开始揭示了备受讨论但仍有争议的真核生物发生过程,这可能涉及细菌和古菌的祖先。令人困惑的是,尽管真核生物保留了其假定的古菌祖先的许多特征,但它们的脂质成分只反映了它们的细菌祖先。最后,对古菌脂质及其代谢途径的阐明揭示了潜在的有趣应用,为这些生物的生物技术开发开辟了新的前沿。本文综述了古菌脂质及其相关代谢途径的分析、结构、功能、进化和生物技术。
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Archaeal lipids

The major archaeal membrane glycerolipids are distinguished from those of bacteria and eukaryotes by the contrasting stereochemistry of their glycerol backbones, and by the use of ether-linked isoprenoid-based alkyl chains rather than ester-linked fatty acyl chains for their hydrophobic moieties. These fascinating compounds play important roles in the extremophile lifestyles of many species, but are also present in the growing numbers of recently discovered mesophilic archaea. The past decade has witnessed significant advances in our understanding of archaea in general and their lipids in particular. Much of the new information has come from the ability to screen large microbial populations via environmental metagenomics, which has revolutionised our understanding of the extent of archaeal biodiversity that is coupled with a strict conservation of their membrane lipid compositions. Significant additional progress has come from new culturing and analytical techniques that are gradually enabling archaeal physiology and biochemistry to be studied in real time. These studies are beginning to shed light on the much-discussed and still-controversial process of eukaryogenesis, which probably involved both bacterial and archaeal progenitors. Puzzlingly, although eukaryotes retain many attributes of their putative archaeal ancestors, their lipid compositions only reflect their bacterial progenitors. Finally, elucidation of archaeal lipids and their metabolic pathways have revealed potentially interesting applications that have opened up new frontiers for biotechnological exploitation of these organisms. This review is concerned with the analysis, structure, function, evolution and biotechnology of archaeal lipids and their associated metabolic pathways.

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来源期刊
Progress in lipid research
Progress in lipid research 生物-生化与分子生物学
CiteScore
24.50
自引率
2.20%
发文量
37
审稿时长
14.6 weeks
期刊介绍: The significance of lipids as a fundamental category of biological compounds has been widely acknowledged. The utilization of our understanding in the fields of biochemistry, chemistry, and physiology of lipids has continued to grow in biotechnology, the fats and oils industry, and medicine. Moreover, new aspects such as lipid biophysics, particularly related to membranes and lipoproteins, as well as basic research and applications of liposomes, have emerged. To keep up with these advancements, there is a need for a journal that can evaluate recent progress in specific areas and provide a historical perspective on current research. Progress in Lipid Research serves this purpose.
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