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Epitope specificities of murine monoclonal and rabbit polyclonal antibodies against enterobacterial lipopolysaccharides of the Re chemotype.

机译:鼠单克隆和兔多克隆抗体针对Re化学型肠杆菌脂多糖的表位特异性。

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摘要

Murine monoclonal and rabbit polyclonal antibodies raised against the lipopolysaccharides (LPS) of Re mutants of Salmonella minnesota, Proteus mirabilis, and Escherichia coli were serologically characterized. Using natural Re LPS and natural and synthetic partial structures thereof, representing the 3-deoxy-D-manno-2-octulosonic acid (KDO) or lipid A region or both, the epitope specificities of four monoclonal antibodies were defined. Clones 20 (immunoglobulin M [IgM]) and 25 (IgG3) recognize a terminal alpha-pyranosidically linked KDO monosaccharide residue and the alpha-2,4-linked KDO disaccharide, respectively, as the immunodominant group. Therefore, these two antibodies are core antibodies which do not require the presence of lipid A constituents for binding. The minimal structure enabling binding of clone 17 (IgG2b) is a pseudotetrasaccharide of the sequence alpha-KDO-(2----4)-alpha-KDO-(2----6)-beta-glucosamine-(1----6)- glucosaminitol with two amide-linked 3-hydroxytetradecanoic acid residues. The smallest structure with which clone 22 (IgG3) reacted was de-O-acylated Re LPS. Therefore, clones 17 and 22 are LPS antibodies requiring both the lipid A and the KDO region for binding. Phosphoryl residues of the lipid A moiety in Re LPS are dispensable for the reaction with clone 17, whereas they are necessary for that with clone 22. These four different antibody types were also detected in polyclonal rabbit antisera and could be distinguished from each other by absorption experiments. It was found that type 20 and 25 antibodies either were not present or were present only in small amounts and that the majority of the antibodies were of types 17 and 22. From these data, we conclude that the immunodominant structures of Re LPS comprise both the KDO and lipid A domains.
机译:针对血清沙门氏菌,奇异变形杆菌和大肠杆菌的Re突变体的脂多糖(LPS)产生的鼠单克隆和兔多克隆抗体已通过血清学鉴定。使用天然的Re LPS及其代表3-脱氧-D-甘露糖-2-辛磺酸(KDO)或脂质A区域或两者的天然和合成部分结构,定义了四种单克隆抗体的表位特异性。克隆20(免疫球蛋白M [IgM])和25(IgG3)分别将末端α-吡喃糖基连接的KDO单糖残基和α-2,4-连接的KDO二糖识别为免疫显性基团。因此,这两种抗体是核心抗体,不需要存在脂质A成分进行结合。允许克隆17(IgG2b)结合的最小结构是序列α-KDO-(2 ---- 4)-α-KDO-(2 ---- 6)-β-葡萄糖胺-(1-的假四糖--- 6)-具有两个酰胺连接的3-羟基十四烷酸残基的氨基葡萄糖醇。与克隆22(IgG3)反应的最小结构是去O-酰化的Re LPS。因此,克隆17和22是需要脂质A和KDO区域两者结合的LPS抗体。 Re LPS中脂质A部分的磷酰基残基对于与克隆17的反应是必不可少的,而对于与克隆22的反应则是必需的。这四种不同的抗体类型也在多克隆兔抗血清中检测到,可以通过吸收来区分实验。已发现不存在或仅少量存在20型和25型抗体,并且大多数抗体为17型和22型。从这些数据,我们得出结论,Re LPS的免疫优势结构包含两种KDO和脂质A结构域。

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