首页> 外文OA文献 >Isolation of monoclonal antibodies reacting with the core component of lipopolysaccharide from Rhizobium leguminosarum strain 3841 and mutant derivatives.
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Isolation of monoclonal antibodies reacting with the core component of lipopolysaccharide from Rhizobium leguminosarum strain 3841 and mutant derivatives.

机译:分离与豆根瘤菌3841菌株和突变体衍生物的脂多糖核心成分反应的单克隆抗体。

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摘要

Monoclonal antibodies reacting with the core oligosaccharide or lipid A component of Rhizobium lipopolysaccharide (LPS) could be useful for the elucidation of the structure and biosynthesis of this group of macromolecules. Mutant derivatives of Rhizobium leguminosarum 3841 with LPS structures lacking the major O-antigen moiety were used as immunogens, and eight antibodies were selected for further study. All the antibodies reacted with the fast-migrating species known as LPS-2 following gel electrophoresis of Rhizobium cell extracts. For four of these antibodies, reactivity with affinity-purified LPS was lost after mild acid hydrolysis, indicating that they probably recognized the core oligosaccharide component. The four other antibodies still reacted with acid-treated LPS and may recognize the lipid A moiety, which is stable to mild acid hydrolysis. The pattern of antibody staining after gel electrophoresis revealed differences in LPS-2 epitope structure between each of the mutants and the wild type. Furthermore, for each of the mutants the antibodies crossreacted with a minor band that migrated more slowly than LPS-2; we have termed this more slowly migrating form LPS-3. The majority of the antibodies also reacted with LPS from strain CE109, a derivative of Rhizobium etli CE3, confirming that the LPS core antigens can be relatively conserved between strains of different Rhizobium species. One of the antibodies isolated in this study (JIM 32) was unusual because it appeared to react with all forms of LPS from strain 3841 (namely, LPS-1, LPS-2, and LPS-3). Furthermore, JIM 32 reacted positively with the LPS from many strains of Rhizobium tested (excluding the Rhizobium meliloti subgroup). JIM 32 did not react with representative strains from Bradyrhizobium, Azorhizobium or other related bacterial species.
机译:与核心寡糖或根瘤菌脂多糖(LPS)的脂质A成分反应的单克隆抗体可用于阐明这组大分子的结构和生物合成。豆科植物根瘤菌3841的突变体衍生物具有缺乏主要的O-抗原部分的LPS结构,被用作免疫原,并选择了八种抗体用于进一步研究。根瘤菌细胞提取物的凝胶电泳后,所有抗体均与称为LPS-2的快速迁移物种发生反应。对于其中的四种抗体,温和的酸水解后与亲和纯化的LPS的反应性丧失,表明它们可能识别了核心寡糖成分。其他四种抗体仍与酸处理的LPS反应,并且可以识别对轻度酸水解稳定的脂质A部分。凝胶电泳后抗体染色的模式揭示了每个突变体和野生型之间LPS-2表位结构的差异。此外,对于每个突变体,抗体均以一条比LPS-2迁移慢的次要条带交叉反应。我们称这种形式从LPS-3迁移的速度较慢。大多数抗体还与来自根瘤菌CE3的衍生物CE109的LPS反应,证实在不同根瘤菌属的菌株之间,LPS核心抗原可以相对保守。该研究中分离出的一种抗体(JIM 32)是不寻常的,因为它似乎与菌株3841的所有形式的LPS(即LPS-1,LPS-2和LPS-3)反应。此外,JIM 32与许多测试的根瘤菌菌株(不包括根瘤菌亚组)的LPS呈阳性反应。 JIM 32不与Bradyrhizobium,Azorhizobium或其他相关细菌物种的代表性菌株反应。

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