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存在交替的氨基葡聚糖在鞘硫丝菌的护套。

Presence of alternating glucosaminoglucan in the sheath of Thiothrix nivea.

机构信息

Division of Materials Science and Chemical Engineering, Graduate School of Engineering, Yokohama National University, Hodogaya, Yokohama, Japan.

出版信息

Int J Biol Macromol. 2012 Jan 1;50(1):236-44. doi: 10.1016/j.ijbiomac.2011.10.024. Epub 2011 Nov 6.

Abstract

A sheath-forming sulfa oxidizer, Thiothrix nivea, was mixotrophically cultured in a medium supplemented with acetic acid and sodium disulfide. Its sheath, a microtube-like extracellular supermolecule, was prepared by selectively removing the cells with lysozyme, sodium dodecyl sulfate, and sodium hydroxide. The sheath was not visibly affected by hydrazine treatment, suggesting that it is not a proteinous supermolecule. From the acid hydrolysate of the sheath, glucose and glucosamine were detected in an approximate molar ratio of 1:1. Three other saccharic compounds were detected and recovered by HPLC as fluorescent derivatives prepared by reaction with 4-aminobenzoic acid ethyl ester. Nuclear magnetic resonance (NMR) analysis suggested that one of the derivatives was derived from an unidentified deoxypentose. NMR analysis for the other 2 derivatives showed that they were derived from β-1,4-linked disaccharides and tetrasaccharides, which were composed of glucose and glucosamine. The sheath was readily broken down by weak HCl treatment, releasing an unidentified deoxypentose and polymer. Chemical analysis showed the presence of β-1,4-linked D-Glcp and D-GlcNp in the polymer. NMR analysis revealed that the polymer had a repeating unit of →4)-D-Glcp-(β1→4)-D-GlcNp-(β1→. The solid-state 1D-(13)C NMR spectrum of the polymer in N-acetylated form supported this result. The molecular weight of the polymer was estimated to be 8.2×10(4) by size exclusion chromatography. Based on these results, the sheath of T. nivea is hypothesized to be assembled from alternately β-1,4-linked glucosaminoglucan grafted with unidentified deoxypentose.

摘要

一种鞘形成的磺胺氧化菌,Thiothrix nivea,在添加乙酸和硫代硫酸钠的培养基中进行混养。通过用溶菌酶、十二烷基硫酸钠和氢氧化钠选择性地去除细胞来制备其鞘,一种微管状的细胞外超分子。该鞘不受水合肼处理的影响,表明它不是蛋白质超分子。从鞘的酸水解物中,以大约 1:1 的摩尔比检测到葡萄糖和葡糖胺。通过与 4-氨基苯甲酸乙酯反应制备荧光衍生物,通过 HPLC 检测并回收了另外三种糖基化合物。核磁共振(NMR)分析表明,一种衍生物来自于未鉴定的脱氧戊糖。对另外两种衍生物的 NMR 分析表明,它们是由β-1,4 键合的二糖和四糖衍生而来,由葡萄糖和葡糖胺组成。鞘在弱酸处理下容易分解,释放出未鉴定的脱氧戊糖和聚合物。化学分析表明聚合物中存在β-1,4 键合的 D-Glcp 和 D-GlcNp。NMR 分析表明聚合物的重复单元为→4)-D-Glcp-(β1→4)-D-GlcNp-(β1→。聚合物在 N-乙酰化形式下的固态 1D-(13)C NMR 谱支持了这一结果。通过尺寸排阻色谱法估计聚合物的分子量为 8.2×10(4)。基于这些结果,假设 T. nivea 的鞘是由交替的β-1,4 键合的葡糖胺聚糖与未鉴定的脱氧戊糖接枝组装而成。

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