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在不同温度下生长的海洋栖热菌中膜脂分布的变化:醚键连接的魔鬼酸(跨膜)脂生物合成潜在机制的指示。

Changes in the Distribution of Membrane Lipids during Growth of Thermotoga maritima at Different Temperatures: Indications for the Potential Mechanism of Biosynthesis of Ether-Bound Diabolic Acid (Membrane-Spanning) Lipids.

机构信息

Department of Marine Microbiology and Biogeochemistry (MMB), NIOZ Royal Netherlands Institute for Sea Researchgrid.10914.3d, Den Burg, The Netherlands.

Utrecht University, Faculty of Geosciences, Department of Earth Sciences, Utrecht, The Netherlands.

出版信息

Appl Environ Microbiol. 2022 Jan 25;88(2):e0176321. doi: 10.1128/AEM.01763-21. Epub 2021 Nov 3.

Abstract

Membrane-spanning lipids are present in a wide variety of archaea, but they are rarely in bacteria. Nevertheless, the (hyper)thermophilic members of the order harbor tetraester, tetraether, and mixed ether/ester membrane-spanning lipids mostly composed of core lipids derived from diabolic acids, C, C, and C dicarboxylic acids with two adjacent mid-chain methyl substituents. Lipid analysis of Thermotoga maritima across growth phases revealed a decrease of the relative abundance of fatty acids together with an increase of diabolic acids with independence of growth temperature. We also identified isomers of C and C diabolic acids, i.e., dicarboxylic acids with only one methyl group at C-15. Their distribution suggests they are products of the condensation reaction but are preferably produced when the length of the acyl chains is not optimal. Compared with growth at the optimal temperature of 80°C, an increase of glycerol ether-derived lipids was observed at 55°C. Our analysis only detected diabolic acid-containing intact polar lipids with phosphoglycerol (PG) head groups. Considering these findings, we hypothesize a biosynthetic pathway for the synthesis of membrane-spanning lipids based on PG polar lipid formation, suggesting that the protein catalyzing this process is a membrane protein. We also identified, by genomic and protein domain analyses, a gene coding for a putative plasmalogen synthase homologue in T. maritima that is also present in other bacteria producing -1-alkyl ether lipids but not plasmalogens, suggesting it is involved in the conversion of the ester-to-ether bond in the diabolic acids bound in membrane-spanning lipids. Membrane-spanning lipids are unique compounds found in most archaeal membranes, but they are also present in specific bacterial groups like the . The synthesis and physiological role of membrane-spanning lipids in bacteria represent an evolutionary and biochemical open question that points to the differentiation of the membrane lipid composition. Understanding the formation of membrane-spanning lipids is crucial to solving this question and identifying the enzymatic and biochemical mechanism performing this procedure. In the present work, we found changes at the core lipid level, and we propose that the growth phase drives the biosynthesis of these lipids rather than temperature. Our results identified physiological conditions influencing the membrane-spanning lipid biosynthetic process, which can further clarify the pathway leading to the biosynthesis of these compounds.

摘要

膜脂跨越广泛的古菌而存在,但它们在细菌中很少见。然而,该目中的(超)嗜热成员拥有四酯、四醚和混合醚/酯膜脂,这些膜脂主要由衍生自恶魔酸的核心脂质组成,恶魔酸为具有两个相邻中链甲基取代基的 C18、C20 和 C22 二羧酸。Thermotoga maritima 在生长阶段的脂质分析显示,脂肪酸的相对丰度降低,同时与生长温度无关,恶魔酸增加。我们还鉴定了 C18 和 C20 恶魔酸的异构体,即 C-15 位只有一个甲基的二羧酸。它们的分布表明它们是缩合反应的产物,但当酰链长度不是最佳时,它们更易生成。与在 80°C 的最佳生长温度相比,在 55°C 时观察到甘油醚衍生脂质增加。我们的分析仅检测到含有磷酸甘油 (PG) 头基的含恶魔酸完整极性脂质。考虑到这些发现,我们基于 PG 极性脂质形成提出了膜脂生物合成途径的假设,表明催化该过程的蛋白质是一种膜蛋白。我们还通过基因组和蛋白质结构域分析,在 T. maritima 中鉴定出编码假定的质体醇合酶同源物的基因,该基因也存在于产生 1-烷基醚脂质但不是质体醇的其他细菌中,这表明它参与了结合在膜脂中的恶魔酸的酯-醚键的转换。膜脂是大多数古菌膜中发现的独特化合物,但它们也存在于特定的细菌群中,如 。细菌中膜脂的合成和生理作用是一个进化和生化方面的开放性问题,它指向了膜脂组成的分化。了解膜脂的形成对于解决这个问题并确定执行此过程的酶和生化机制至关重要。在本工作中,我们发现了核心脂质水平的变化,并提出生长阶段驱动这些脂质的生物合成,而不是温度。我们的结果确定了影响膜脂生物合成过程的生理条件,这可以进一步阐明导致这些化合物生物合成的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e359/8788747/89bb9a644fe5/aem.01763-21-f001.jpg

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