Merino S, Nogueras M M, Aguilar A, Rubires X, Albertí S, Benedí V J, Tomás J M
Departamento de Microbiología, Facultad de Biología, Universidad de Barcelona, 08071 Barcelona, Spain.
Infect Immun. 1998 Aug;66(8):3825-31. doi: 10.1128/IAI.66.8.3825-3831.1998.
The mechanism of killing of Aeromonas hydrophila serum-sensitive strains in nonimmune serum by the complement classical pathway has been studied. The bacterial cell surface component that binds C1q more efficiently was identified as a major outer membrane protein of 39 kDa, presumably the porin II described by D. Jeanteur, N. Gletsu, F. Pattus, and J. T. Buckley (Mol. Microbiol. 6:3355-3363, 1992), of these microorganisms. We have demonstrated that the purified form of porin II binds C1q and activates the classical pathway in an antibody-independent manner, with the subsequent consumption of C4 and reduction of the serum total hemolytic activity. Activation of the classical pathway has been observed in human nonimmune serum and agammaglobulinemic serum (both depleted of factor D). Binding of C1q to other components of the bacterial outer membrane, in particular to rough lipopolysaccharide, could not be demonstrated. Activation of the classical pathway by this lipopolysaccharide was also much less efficient than activation by the outer membrane protein. The strains possessing O-antigen lipopolysaccharide bind less C1q than the serum-sensitive strains, because the outer membrane protein is less accessible, and are resistant to complement-mediated killing. Finally, a similar or identical outer membrane protein (presumably porin II) that binds C1q was shown to be present in strains from the most common mesophilic Aeromonas O serogroups.
已对补体经典途径在非免疫血清中杀死嗜水气单胞菌血清敏感菌株的机制进行了研究。更有效地结合C1q的细菌细胞表面成分被鉴定为一种39 kDa的主要外膜蛋白,推测是D. Jeanteur、N. Gletsu、F. Pattus和J. T. Buckley(《分子微生物学》6:3355 - 3363,1992年)所描述的这些微生物的孔蛋白II。我们已证明,纯化形式的孔蛋白II以抗体非依赖的方式结合C1q并激活经典途径,随后消耗C4并降低血清总溶血活性。在人非免疫血清和无丙种球蛋白血症血清(均不含因子D)中均观察到经典途径的激活。未证明C1q与细菌外膜的其他成分,特别是粗糙脂多糖的结合。这种脂多糖对经典途径的激活效率也远低于外膜蛋白。具有O抗原脂多糖的菌株比血清敏感菌株结合的C1q更少,因为外膜蛋白更难接近,并且对补体介导的杀伤具有抗性。最后,在最常见的嗜温气单胞菌O血清群的菌株中,显示存在一种结合C1q的相似或相同的外膜蛋白(推测为孔蛋白II)。