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CD66 receptor specificity exhibited by neisserial Opa variants is controlled by protein determinants in CD66 N-domains

机译:奈瑟球菌Opa变体表现出的CD66受体特异性受CD66 N结构域中蛋白质决定簇的控制

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摘要

Neisseria gonorrhoeae strain MS11 is able to express 11 different opacity (Opa) proteins on its outer surface. A number of these Opa proteins have been shown to function as adhesins through binding of CD66 receptors present on human cells. CD66 antigens, or carcinoembryonic antigen family members, constitute a family of glycoproteins belonging to the immunoglobulin superfamily. Opa variants recognize this class of receptors in a differential manner such that certain Opa variants recognize up to four different CD66 receptors (CD66a, -c, -d, and -e), whereas others recognize only two (CD66a and -e) or none. We explored the basis for this receptor tropism in the present study. Our data show that glycoforms of CD66e and deglycosylated CD66e are recognized by gonococci in an Opa-specific manner. Binding by Opa variants of recombinant N-terminal domains of CD66 receptors expressed in Escherichia coli reflected the adherence specificities of Opa variants to HeLa cells expressing native CD66 molecules. These data indicate that recognition of CD66 receptors by Opa variants is mediated by the protein backbone of the CD66 N-domains. Furthermore, by using chimeric constructs between different CD66 N-domains we identified distinct binding regions on the CD66e N-domain for specific groups of Opa variants, suggesting that the differential recognition of CD66 receptors by Opa variants is dictated by the presence of specific binding regions on the N-domain of the receptor.
机译:淋病奈瑟氏球菌菌株MS11能够在其外表面表达11种不同的不透明(Opa)蛋白。已显示许多这些Opa蛋白通过结合人类细胞上存在的CD66受体而起粘附素的作用。 CD66抗原或癌胚抗原家族成员构成了属于免疫球蛋白超家族的糖蛋白家族。 Opa变体以不同的方式识别此类受体,因此某些Opa变体最多识别四个不同的CD66受体(CD66a,-c,-d和-e),而其他仅识别两个(CD66a和-e)或不识别。我们在本研究中探索了这种受体向性的基础。我们的数据表明,淋球菌以Opa特异性方式识别CD66e和去糖基化CD66e的糖型。通过在大肠杆菌中表达的CD66受体的重组N末端结构域的Opa变体结合,反映了Opa变体对表达天然CD66分子的HeLa细胞的粘附特异性。这些数据表明,Opa变体对CD66受体的识别是由CD66 N域的蛋白骨架介导的。此外,通过使用不同CD66 N结构域之间的嵌合构建体,我们在Op66变体的特定组中鉴定了CD66e N结构域上的独特结合区,这表明Opa变体对CD66受体的差异识别是由特异性结合区的存在决定的。在受体的N结构域上。

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