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与致病性相关的解冻永久冻土中假单胞菌 PAMC 28618 菌株的脂 A 成分的化学结构。

Chemical Structure of the Lipid A component of Pseudomonas sp. strain PAMC 28618 from Thawing Permafrost in Relation to Pathogenicity.

机构信息

Department of Chemical Engineering, Soongsil University, Seoul, 06978, Korea.

Department of Biological Engineering, Konkuk University, Seoul, 05029, Korea.

出版信息

Sci Rep. 2017 May 19;7(1):2168. doi: 10.1038/s41598-017-02145-w.

Abstract

Climate change causes permafrost thawing, and we are confronted with the unpredictable risk of newly discovered permafrost microbes that have disease-causing capabilities. Here, we first characterized the detailed chemical structure of the lipid A moiety from a Pseudomonas species that was isolated from thawing arctic permafrost using MALDI-based mass spectrometric approaches (i.e., MALDI-TOF MS and MALDI-QIT-TOF MS). The MALDI multi-stage mass spectrometry (MS) analysis of lipid A extracted from the Pseudomonas sp. strain PAMC 28618 demonstrated that the hexaacyl lipid A ([M-H] at m/z 1616.5) contains a glucosamine (GlcN) disaccharide backbone, two phosphates, four main acyl chains and two branched acyl chains. Moreover, the lipid A molecule-based structural activity relationship with other terrestrial Gram-negative bacteria indicated that strain PAMC 28618 has an identical lipid A structure with the mesophilic Pseudomonas cichorii which can cause rot disease in endive (Cichorium endivia) and that their bacterial toxicities were equivalent. Therefore, the overall lipid A validation process provides a general strategy for characterizing bacteria that have been isolated from arctic permafrost and analyzing their respective pathogenicities.

摘要

气候变化导致永久冻土融化,我们面临着新发现的具有致病能力的永久冻土微生物的不可预测的风险。在这里,我们首次使用基于 MALDI 的质谱分析方法(即 MALDI-TOF MS 和 MALDI-QIT-TOF MS),对从融化的北极永久冻土中分离出的假单胞菌属(Pseudomonas)物种的脂质 A 部分的详细化学结构进行了表征。从假单胞菌 PAMC 28618 菌株中提取的脂质 A 的 MALDI 多阶段质谱 (MS) 分析表明,六酰基脂质 A([M-H] 在 m/z 1616.5 处)含有一个葡糖胺(GlcN)二糖骨架、两个磷酸、四个主酰基链和两个支链酰基链。此外,基于脂质 A 分子的结构-活性关系与其他陆地革兰氏阴性菌表明,PAMC 28618 菌株具有与嗜温假单胞菌(Pseudomonas cichorii)相同的脂质 A 结构,该菌可引起菊苣(Cichorium endivia)的腐烂病,并且它们的细菌毒性相当。因此,整体脂质 A 验证过程为从北极永久冻土中分离出来的细菌的特征分析及其各自的致病性分析提供了一种通用策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8663/5438365/f65fa50078b9/41598_2017_2145_Fig1_HTML.jpg

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