Bos Martine P, Kao David, Hogan Daniel M, Grant Christopher C R, Belland Robert J
Laboratory of Human Bacterial Pathogenesis, Rocky Mountain Laboratories, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Hamilton, Montana 59840, USA.
Infect Immun. 2002 Apr;70(4):1715-23. doi: 10.1128/IAI.70.4.1715-1723.2002.
Neisserial Opa proteins function as a family of adhesins that bind heparan sulfate proteoglycan (HSPG) or carcinoembryonic antigen family (CEACAM) receptors on human host cells. In order to define the CEACAM binding domain on Opa proteins, we tested the binding properties of a series of gonococcal (strain MS11) recombinants producing mutant and chimeric Opa proteins with alterations in one or more of the four surface-exposed loops. Mutagenesis demonstrated that the semivariable domain, present in the first loop, was completely dispensable for CEACAM binding. In contrast, the two hypervariable (HV) regions present in the second and third loops were essential for binding; deletion of either domain resulted in loss of receptor recognition. Deletion of the fourth loop resulted in a severe decrease in Opa expression at the cell surface and could therefore not be tested for CEACAM binding. Chimeric Opa variants, containing combinations of HV regions derived from different CEACAM binding Opa proteins, lost most of their receptor binding activity. Some chimeric variants gained HSPG binding activity. Together, our results indicate that full recognition of CEACAM receptors by Opa proteins requires a highly coordinate interplay between both HV regions. Furthermore, shuffling of HV regions may result in novel HSPG receptor binding activity.
奈瑟氏菌Opa蛋白作为一类粘附素发挥作用,可与人宿主细胞上的硫酸乙酰肝素蛋白聚糖(HSPG)或癌胚抗原家族(CEACAM)受体结合。为了确定Opa蛋白上的CEACAM结合结构域,我们测试了一系列淋病奈瑟菌(菌株MS11)重组体的结合特性,这些重组体产生的突变型和嵌合型Opa蛋白在四个表面暴露环中的一个或多个环上存在改变。诱变表明,存在于第一个环中的半可变结构域对于CEACAM结合是完全不必要的。相反,存在于第二个和第三个环中的两个高变(HV)区域对于结合至关重要;任何一个结构域的缺失都会导致受体识别丧失。第四个环的缺失导致细胞表面Opa表达严重下降,因此无法测试其与CEACAM的结合。含有源自不同CEACAM结合Opa蛋白的HV区域组合的嵌合Opa变体失去了大部分受体结合活性。一些嵌合变体获得了HSPG结合活性。总之,我们的结果表明,Opa蛋白对CEACAM受体的完全识别需要两个HV区域之间高度协调的相互作用。此外,HV区域的改组可能导致新的HSPG受体结合活性。