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Interactions between extracellular Borrelia burgdorferi proteins and non-Borrelia-directed immunoglobulin M antibodies.

机译:细胞外疏螺旋体伯氏疏螺旋体蛋白与非疏螺旋体定向的免疫球蛋白M抗体之间的相互作用。

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摘要

Previous work showed that outer surface protein A (OspA) and OspB of Borrelia burgdorferi may occur within an extracellular multiprotein complex, which was resolved by electrophoresis as an 83-kDa major extracellular protein band. To characterize the 83-kDa band, we sequenced the N terminus of the predominant peptide in the band and examined the interaction between the associated proteins. Peptide sequence and amino acid composition comparisons showed identity with the heavy chain of immunoglobulin M (IgM). Reduction sensitivity experiments and the recognition of the band by antibodies specific for rabbit mu chain indicated that the multiprotein complex contained pentameric IgM. Immunoelectron microscopy showed that anti-mu chain antibodies and monoclonal antibodies to OspA and OspB bound to extracellular amorphous material surrounding cells. Furthermore, the Osps coprecipitated with either nonspecific polyclonal rabbit IgM antibodies or with murine monoclonal anti-human serum albumin IgM antibodies, using insoluble anti-mu chain antibody conjugates. Although the apparent 83-kDa complex was stable under conditions of chelation and concentrated salts, it was disrupted by treatment with neuraminidase. These results indicate that extracellular B. burgdorferi proteins, including OspA and OspB, interact with IgM. The association is apparently not a classic antibody-antigen interaction but may result from other mechanisms.
机译:先前的工作表明,博氏疏螺旋体的外表面蛋白A(OspA)和OspB可能在细胞外多蛋白复合物中发生,该复合物通过电泳被解析为一个83 kDa的主要细胞外蛋白带。为了表征83 kDa条带,我们对条带中主要肽段的N末端进行了测序,并检查了相关蛋白之间的相互作用。肽序列和氨基酸组成的比较显示与免疫球蛋白M(IgM)的重链相同。还原敏感性实验和对兔μ链特异的抗体对条带的识别表明多蛋白复合物含有五聚体IgM。免疫电子显微镜检查显示,针对OspA和OspB的抗mu链抗体和单克隆抗体与细胞周围的细胞外无定形物质结合。此外,Osps使用不溶性抗mu链抗体偶联物与非特异性多克隆兔IgM抗体或与鼠类单克隆抗人血清白蛋白IgM抗体共沉淀。尽管表观的83-kDa复合物在螯合和浓盐条件下是稳定的,但通过神经氨酸酶处理却被破坏了。这些结果表明,包括OspA和OspB在内的胞外B. burgdorferi蛋白与IgM相互作用。该关联显然不是经典的抗体-抗原相互作用,但可能是由其他机制引起的。

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