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A Caenorhabditis elegans model for ether lipid biosynthesis and function

机译:秀丽隐杆线虫的醚脂质生物合成和功能模型

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摘要

Ether lipids are widespread in nature, and they are structurally and functionally important components of membranes. The roundworm, Caenorhabditis elegans, synthesizes numerous lipid species containing alkyl and alkenyl ether bonds. We isolated C. elegans strains carrying loss-of-function mutations in three genes encoding the proteins required for the initial three steps in the ether lipid biosynthetic pathway, FARD-1/FAR1, ACL-7/GNPAT, and ADS-1/AGPS. Analysis of the mutant strains show that they lack ether lipids, but possess the ability to alter their lipid composition in response to lack of ether lipids. We found that increases in de novo fatty acid synthesis and reduction of stearoyl- and palmitoyl-CoA desaturase activity, processes that are at least partially regulated transcriptionally, mediate the altered lipid composition in ether lipid-deficient mutants. Phenotypic analysis demonstrated the importance of ether lipids for optimal fertility, lifespan, survival at cold temperatures, and resistance to oxidative stress.Caenorhabditis
机译:醚脂质在自然界中很普遍,它们是膜的结构和功能上的重要组成部分。 round虫秀丽隐杆线虫(Caenorhabditis elegans)合成许多含有烷基和烯基醚键的脂质。我们分离了在三个基因中编码功能缺失突变的秀丽隐杆线虫菌株,这些基因编码醚脂质生物合成途径的前三个步骤所需的蛋白质:FARD-1 / FAR1,ACL-7 / GNPAT和ADS-1 / AGPS 。对突变菌株的分析表明它们缺乏醚脂质,但是具有响应于缺乏醚脂质而改变其脂质组成的能力。我们发现,从头脂肪酸合成的增加以及硬脂酰-和棕榈酰-CoA去饱和酶活性的降低(至少部分受转录调控的过程)介导了醚脂质缺陷型突变体中脂质成分的改变。表型分析表明,醚类脂对于保持最佳生育力,寿命,在低温下生存以及抵抗氧化应激的重要性。

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