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鉴定一种广泛存在于肠杆菌脂多糖中且能被交叉保护性单克隆抗体WN1 222-5识别的交叉反应性表位。

Identification of a cross-reactive epitope widely present in lipopolysaccharide from enterobacteria and recognized by the cross-protective monoclonal antibody WN1 222-5.

作者信息

Muller-Loennies Sven, Brade Lore, MacKenzie C Roger, Di Padova Franco E, Brade Helmut

机构信息

Research Center Borstel, Center for Medicine and Biosciences, Parkallee 22, D-23845 Borstel, Germany.

出版信息

J Biol Chem. 2003 Jul 11;278(28):25618-27. doi: 10.1074/jbc.M302904200. Epub 2003 Apr 25.

Abstract

Septic shock due to infections with Gram-negative bacteria is a severe disease with a high mortality rate. We report the identification of the antigenic determinants of an epitope that is present in enterobacterial lipopolysaccharide (LPS) and recognized by a cross-reactive monoclonal antibody (mAb WN1 222-5) regarded as a potential means of treatment. Using whole LPS and a panel of neoglycoconjugates containing purified LPS oligosaccharides obtained from Escherichia coli core types R1, R2, R3, and R4, Salmonella enterica, and the mutant strain E. coli J-5, we showed that mAb WN1 222-5 binds to the distal part of the inner core region and recognizes the structural element R1-alpha-d-Glcp-(1-->3)-[l-alpha-d-Hepp-(1-->7)]-l-alpha-d-Hepp 4P-(1-->3)-R2 (where R1 represents additional sugars of the outer core and R2 represents additional sugars of the inner core), which is common to LPS from all E. coli, Salmonella, and Shigella. WN1 222-5 binds poorly to molecules that lack the side chain heptose or lack phosphate at the branched heptose. Also molecules that are substituted with GlcpN at the side chain heptose are poorly bound. Thus, the side chain heptose and the 4-phosphate on the branched heptose are main determinants of the epitope. We have determined the binding kinetics and affinities (KD values) of the monovalent interaction of E. coli core oligosaccharides with WN1 222-5 by surface plasmon resonance and isothermal titration microcalorimetry. Affinity constants (KD values) determined by SPR were in the range of 3.6 x 10-5 to 3.2 x 10-8 m, with the highest affinity being observed for the core oligosaccharide from E. coli F576 (R2 core type) and the lowest KD values for those from E. coli J-5. Affinities of E. coli R1, R3, and R4 oligosaccharides were 5-10-fold lower, and values from the E. coli J-5 mutant were 29-fold lower than the R2 core oligosaccharide. Thus, the outer core sugars had a positive effect on binding.

摘要

革兰氏阴性菌感染所致的脓毒症休克是一种死亡率很高的严重疾病。我们报告了一种表位抗原决定簇的鉴定结果,该表位存在于肠杆菌脂多糖(LPS)中,可被一种具有交叉反应性的单克隆抗体(单克隆抗体WN1 222-5)识别,被视为一种潜在的治疗手段。我们使用完整的LPS以及一组新糖缀合物,这些新糖缀合物包含从大肠杆菌R1、R2、R3和R4核心类型、肠炎沙门氏菌以及突变菌株大肠杆菌J-5中获得的纯化LPS寡糖,结果表明单克隆抗体WN1 222-5与内核区域的远端部分结合,并识别结构元件R1-α-d-葡萄糖-(1→3)-[l-α-d-庚糖-(1→7)]-l-α-d-庚糖4P-(1→3)-R2(其中R1代表外核的额外糖类,R2代表内核的额外糖类),这是所有大肠杆菌、沙门氏菌和志贺氏菌LPS所共有的。WN1 222-5与缺乏侧链庚糖或在分支庚糖处缺乏磷酸的分子结合较差。同样,在侧链庚糖上被GlcpN取代的分子也结合较差。因此,侧链庚糖和分支庚糖上的4-磷酸是该表位的主要决定因素。我们通过表面等离子体共振和等温滴定量热法测定了大肠杆菌核心寡糖与WN1 222-5单价相互作用的结合动力学和亲和力(KD值)。通过表面等离子体共振测定的亲和常数(KD值)在3.6×10-5至3.2×10-8 m范围内,对大肠杆菌F576(R2核心类型)核心寡糖的亲和力最高,对大肠杆菌J-5核心寡糖的KD值最低。大肠杆菌R1、R3和R4寡糖的亲和力低5至10倍,大肠杆菌J-5突变体的值比R2核心寡糖低29倍。因此,外核糖类对结合有积极影响。

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