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在缺磷条件下,百脉根中生根瘤菌新型糖脂和鸟氨酸脂的积累

Accumulation of novel glycolipids and ornithine lipids in Mesorhizobium loti under phosphate deprivation.

作者信息

Diercks Hannah, Semeniuk Adrian, Gisch Nicolas, Moll Hermann, Duda Katarzyna A, Hölzl Georg

机构信息

Institute of Molecular Physiology and Biotechnology of Plants, University of Bonn, Bonn, Germany.

Division of Bioanalytical Chemistry, Research Center Borstel, Leibniz Center for Medicine and Biosciences, Borstel, Germany.

出版信息

J Bacteriol. 2015 Feb;197(3):497-509. doi: 10.1128/JB.02004-14. Epub 2014 Nov 17.

DOI:10.1128/JB.02004-14
PMID:25404698
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4285991/
Abstract

Glycolipids are found mainly in photosynthetic organisms (plants, algae, and cyanobacteria), Gram-positive bacteria, and a few other bacterial phyla. They serve as membrane lipids and play a role under phosphate deprivation as surrogates for phospholipids. Mesorhizobium loti accumulates different di- and triglycosyl diacylglycerols, synthesized by the processive glycosyltransferase Pgt-Ml, and two so far unknown glycolipids, which were identified in this study by mass spectrometry (MS) and nuclear magnetic resonance (NMR) spectroscopy as O-methyl-digalactosyl diacylglycerol (Me-DGD) and glucuronosyl diacylglycerol (GlcAD). Me-DGD is a novel glycolipid, whose synthesis depends on Pgt-Ml activity and the involvement of an unknown methyltransferase, while GlcAD is formed by a novel glycosyltransferase encoded by the open reading frame (ORF) mlr2668, using UDP-glucuronic acid as a sugar donor. Deletion mutants lacking GlcAD are not impaired in growth. Our data suggest that the different glycolipids in Mesorhizobium can mutually replace each other. This may be an adaptation mechanism to enhance the competitiveness in natural environments. A further nonphospholipid in Mesorhizobium was identified as a hydroxylated form of an ornithine lipid with the additional hydroxy group linked to the amide-bound fatty acid, introduced by the hydroxylase OlsD. The presence of this lipid has not been reported for rhizobia yet. The hydroxy group is placed on the C-2 position of the acyl chain as determined by NMR spectroscopy. Furthermore, the isolated ornithine lipids contained up to 80 to 90% d-configured ornithine, a stereoform so far undescribed in bacteria.

摘要

糖脂主要存在于光合生物(植物、藻类和蓝细菌)、革兰氏阳性菌以及其他一些细菌门类中。它们作为膜脂,在磷酸盐缺乏时作为磷脂的替代物发挥作用。百脉根中生根瘤菌积累了由持续性糖基转移酶Pgt-Ml合成的不同二糖基和三糖基二酰基甘油,以及两种目前未知的糖脂,本研究通过质谱(MS)和核磁共振(NMR)光谱鉴定为O-甲基二半乳糖基二酰基甘油(Me-DGD)和葡萄糖醛酸基二酰基甘油(GlcAD)。Me-DGD是一种新型糖脂,其合成依赖于Pgt-Ml的活性以及一种未知甲基转移酶的参与,而GlcAD由开放阅读框(ORF)mlr2668编码的新型糖基转移酶形成,使用UDP-葡萄糖醛酸作为糖供体。缺乏GlcAD的缺失突变体在生长方面没有受损。我们的数据表明,中生根瘤菌中的不同糖脂可以相互替代。这可能是一种在自然环境中增强竞争力的适应机制。中生根瘤菌中的另一种非磷脂被鉴定为鸟氨酸脂的羟基化形式,额外的羟基连接到酰胺结合的脂肪酸上,由羟化酶OlsD引入。根瘤菌中尚未报道这种脂质的存在。通过NMR光谱确定,羟基位于酰基链的C-2位置。此外,分离出的鸟氨酸脂含有高达80%至90%的d-构型鸟氨酸,这是一种迄今为止在细菌中未描述的立体构型。

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本文引用的文献

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The dioxygenase-encoding olsD gene from Burkholderia cenocepacia causes the hydroxylation of the amide-linked fatty acyl moiety of ornithine-containing membrane lipids.伯克霍尔德氏菌的 olsD 基因编码的加双氧酶导致含鸟氨酸的膜脂中酰胺连接的脂肪酰部分的羟化。
Biochemistry. 2011 Jul 26;50(29):6396-408. doi: 10.1021/bi200706v. Epub 2011 Jul 5.
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