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识别来自明尼苏达沙门氏菌R595和泡囊假单胞菌JCM1477的脂多糖的Re核心或脂多糖A结构的抗体对施瓦茨曼诱导活性的中和作用。

Neutralization of Shwartzman-inducing activity by antibodies recognizing the Re core or lipid A structures of lipopolysaccharide from Salmonella minnesota R595 and Pseudomonas vesicularis JCM1477.

作者信息

Mashimo J, Mizutani T, Mita A, Kasai N

机构信息

Department of Microbial Chemistry, School of Pharmaceutical Sciences, Showa University, Tokyo.

出版信息

Microbiol Immunol. 1991;35(6):423-34. doi: 10.1111/j.1348-0421.1991.tb01573.x.

Abstract

Antibodies recognizing the Re core or lipid A structures of lipopolysaccharide (LPS) derived from Salmonella minnesota R595 and Pseudomonas vesicularis JCM1477 were tested for the ability to neutralize the preparatory activity of endotoxin using the local Shwartzman reaction. Shwartzman-inducing activity of R595 LPS (Re-form) was strongly suppressed when the LPS was incubated with the rabbit anti-R595 antiserum or the purified IgG antibody which recognizes core region of the LPS. The antiserum also suppressed the preparatory activity of LPS from S. typhimurium SL1102 (Re) and Escherichia coli F515 (Re), but not that of either S. typhimurium LT-2 (S) LPS or R595 lipid A. Moreover, it was found that the murine monoclonal antibody (MAb), SmRe100G (IgG2a) which recognizes the core region of R595 LPS, significantly suppressed the preparatory activity of R595 LPS. Both conventional antibodies specific to R595 lipid A, which contains a 1,4'-bisphosphorylated beta-D-glucosaminyl-alpha-D-glucosamine disaccharide structure, and JCM1477 lipid A, which contains a monophosphorylated 3-amino-D-glucosamine disaccharide structure, neutralized the preparatory activity of homologous and a closely related lipid A, but not that of LPS. In addition, it was observed that MAb Sm5G (IgG2b) specific to enterobacterial lipid A preparations (especially R595 lipid A) neutralized the preparatory activity of R595 lipid A, although the effect was somewhat weak as compared with that of rabbit antiserum. These results suggest that anti-Re LPS antibody binding to the core of Re LPS is involved in suppressing the endotoxic activity of Re LPS, and that the direct binding of anti-lipid A antibody to some specific epitopes of lipid A is important in neutralizing the endotoxic activity.

摘要

利用局部施瓦茨曼反应,检测了识别源自明尼苏达沙门氏菌R595和泡囊假单胞菌JCM1477的脂多糖(LPS)的Re核心或脂质A结构的抗体对内毒素制备活性的中和能力。当R595 LPS(Re型)与兔抗R595抗血清或识别LPS核心区域的纯化IgG抗体孵育时,其施瓦茨曼诱导活性受到强烈抑制。该抗血清还抑制了鼠伤寒沙门氏菌SL1102(Re)和大肠杆菌F515(Re)LPS的制备活性,但不抑制鼠伤寒沙门氏菌LT-2(S)LPS或R595脂质A的制备活性。此外,发现识别R595 LPS核心区域的鼠单克隆抗体(MAb)SmRe100G(IgG2a)显著抑制了R595 LPS的制备活性。两种对R595脂质A特异的传统抗体(R595脂质A含有1,4'-双磷酸化的β-D-葡糖胺基-α-D-葡糖胺二糖结构)和对JCM1477脂质A特异的传统抗体(JCM1477脂质A含有单磷酸化的3-氨基-D-葡糖胺二糖结构),中和了同源和密切相关脂质A的制备活性,但未中和LPS的制备活性。此外,观察到对肠杆菌脂质A制剂(特别是R595脂质A)特异的MAb Sm5G(IgG2b)中和了R595脂质A的制备活性,尽管与兔抗血清相比效果稍弱。这些结果表明,抗Re LPS抗体与Re LPS核心的结合参与抑制Re LPS的内毒素活性,抗脂质A抗体与脂质A某些特定表位的直接结合在中和内毒素活性方面很重要。

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