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假单胞菌 A-6-5 的 O-多糖的结构和基因簇及其与铀的结合。

Structure and gene cluster of the O-polysaccharide from Pseudomonas veronii A-6-5 and its uranium bonding.

机构信息

A.N. Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences, Moscow 119071, Russia.

N.D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, Moscow 119991, Russia.

出版信息

Int J Biol Macromol. 2020 Dec 15;165(Pt B):2197-2204. doi: 10.1016/j.ijbiomac.2020.10.038. Epub 2020 Oct 13.

Abstract

A denitrifying bacterium Pseudomonas veronii A-6-5 was isolated from a deep aquifer contaminated with nitrates and uranium. The O-polysaccharide (OPS) was isolated by mild acid degradation of the lipopolysaccharide of P. veronii A-6-5 and studied using sugar analysis and 1D and 2D H and C NMR spectroscopy. The trisaccharide O-repeating unit was found to have the following structure: [Formula: see text] [Formula: see text] where Hb is 3-hydroxybutanoyl. The genome of P. veronii A-6-5 was sequenced and a respective OPS gene cluster was identified. Functions of the proteins encoded in the gene cluster, including the enzymes involved in the O-polysaccharide biosynthesis and glycosyl transferases, were putatively assigned by comparison with available database sequences. Formation of a new coordination bond between uranyl and the O-polysaccharide from P. veronii A-6-5 was demonstrated using FTIR spectroscopy; it may affect uranyl migration in the groundwaters due to its immobilization on microbial biofilms. Applied importance of this work is that the structure of the O-polysaccharide of a strain isolated from uranium-contaminated groundwater was determined and the character of interaction between the polysaccharide and the uranyl ion was established. The data obtained are of importance for development of the biotechnologies for treatment of uranium-contaminated groundwater and activated sludge.

摘要

从受硝酸盐和铀污染的深部含水层中分离出一株反硝化细菌 Pseudomonas veronii A-6-5。通过温和酸降解 P. veronii A-6-5 的脂多糖分离出 O-多糖 (OPS),并使用糖分析和 1D 和 2D H 和 C NMR 光谱进行了研究。三糖 O-重复单元的结构如下:[公式:见文本] [公式:见文本] 其中 Hb 是 3-羟基丁酰基。测序了 P. veronii A-6-5 的基因组,并鉴定了相应的 OPS 基因簇。通过与可用数据库序列进行比较,推测了基因簇中编码蛋白的功能,包括参与 O-多糖生物合成的酶和糖基转移酶。使用傅里叶变换红外 (FTIR) 光谱证明了铀酰与来自 P. veronii A-6-5 的 O-多糖之间形成了新的配位键;由于其固定在微生物生物膜上,可能会影响地下水中铀酰的迁移。这项工作的应用重要性在于确定了从受铀污染地下水分离出的菌株的 O-多糖结构,并确定了多糖与铀酰离子之间的相互作用特性。获得的数据对于开发处理受铀污染地下水和活性污泥的生物技术具有重要意义。

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