Singh S P, Williams Y U, Klebba P E, Macchia P, Miller S
Biomedical Research and Training Programs, Alabama State University, Montgomery, AL 36101, USA.
Microb Pathog. 2000 Mar;28(3):157-67. doi: 10.1006/mpat.1999.0332.
We investigated the antigenic specificity of the humoral immune response to infection by Salmonella typhimurium, by competitive inhibition enzyme-linked immunosorbent assay and Western immunoblots. A panel of eight murine monoclonal antibodies, raised to OmpC and OmpD porins and lipopolysaccharide (LPS)-O antigens, was used to define the specificity of the polyclonal immune response in mice. The monoclonal antibody panel recognized five distinct epitopes; these were localized to surface-exposed loops of OmpC and OmpD porin, to the "eye-let" forming loop L3 of OmpC/OmpD, and to LPS-O4 and O5 factors. The immune mouse serum raised to infections with S. typhimurium LT-2 strain WB600 (wild-type) competitively inhibited the binding of biotin-labelled monoclonal antibodies to the epitopes that they recognize, indicating that all five epitopes were targets of the host immune response to natural infection. However, only two epitopes, one within a surface-exposed loop of OmpC porin, and the other in the LPS-O4 factor, were immunodominant. Furthermore, the bacterial LPS core and O-antigen structure influenced the immune response to the porins. Surface epitopes of porins were dominant in the rough strain SH5014 (rfa), whereas the immune recognition of LPS epitopes was predominant in mice infected with the smooth, wild-type strain (WB600). Finally, the immune response to LPS epitopes O4 and O5 was more pronounced in mice immunized with heat-killed cells than those infected with live S. typhimurium.
我们通过竞争性抑制酶联免疫吸附测定和Western免疫印迹法,研究了鼠伤寒沙门氏菌感染引起的体液免疫反应的抗原特异性。使用一组针对OmpC和OmpD孔蛋白以及脂多糖(LPS)-O抗原产生的八种鼠单克隆抗体,来确定小鼠多克隆免疫反应的特异性。该单克隆抗体组识别五个不同的表位;这些表位定位于OmpC和OmpD孔蛋白的表面暴露环、OmpC/OmpD形成“小孔”的环L3以及LPS-O4和O5因子。用鼠伤寒沙门氏菌LT-2菌株WB600(野生型)感染产生的免疫小鼠血清竞争性抑制生物素标记的单克隆抗体与其识别的表位的结合,表明所有五个表位都是宿主对自然感染免疫反应的靶标。然而,只有两个表位具有免疫优势,一个在OmpC孔蛋白的表面暴露环内,另一个在LPS-O4因子中。此外,细菌LPS核心和O抗原结构影响了对孔蛋白的免疫反应。孔蛋白的表面表位在粗糙菌株SH5014(rfa)中占主导地位,而LPS表位的免疫识别在感染光滑野生型菌株(WB600)的小鼠中占主导地位。最后,与感染活鼠伤寒沙门氏菌的小鼠相比,用热灭活细胞免疫的小鼠对LPS表位O4和O5的免疫反应更明显。