Albertí S, Alvarez D, Merino S, Casado M T, Vivanco F, Tomás J M, Benedí V J
Departamento de Biología Ambiental, Universidad de las Islas Baleares,Palma de Mallorca, Spain.
Infect Immun. 1996 Nov;64(11):4726-32. doi: 10.1128/iai.64.11.4726-4732.1996.
The majority of Klebsiella pneumoniae serum-resistant strains activate complement and bind C3b, the opsonic fragment of C3, without C5b-9 formation and bacterial killing. The mechanisms leading to C3b deposition without cell death were studied, and the results indicate that serum-resistant strains activate principally the alternative pathway and that serum-sensitive strains activate both the alternative and classical pathways. Bacterial molecules implicated in C3b deposition are the outer membrane porin proteins and smooth and rough lipopolysaccharides. Porins activate both complement pathways, and the rough lipopolysaccharide activates the classical pathway, causing deposition of C3b in serum-sensitive strains. The smooth lipopolysaccharide of serum-resistant strains activates only the alternative pathway, impeding the binding of C1q to porins (S. Albertí, G. Marqués, S. Camprubí, S. Merino, J. M. Tomás, F. Vivanco, and V. J. Benedí, Infect. Immun. 61:852-860, 1993; S. Albertí, F. Rodríguez-Quinónes, T. Schirmer, G. Rummel, J. M. Tomás, J. P. Rosenbusch, and V. J. Benedí, Infect. Immun. 63:903-910, 1995) and rough lipopolysaccharide molecules and thereby preventing activation of the classical pathway. After its deposition, C3b is quickly degraded to iC3b on both types of strains, but the higher-level deposition of C3b on serum-sensitive strains, resulting from activation of both the alternative and classical complement pathways, supports further complement activation and killing of serum-sensitive strains.
大多数肺炎克雷伯菌血清抗性菌株激活补体并结合C3b(C3的调理片段),但不形成C5b - 9也不导致细菌死亡。对导致C3b沉积而无细胞死亡的机制进行了研究,结果表明血清抗性菌株主要激活替代途径,而血清敏感菌株同时激活替代途径和经典途径。参与C3b沉积的细菌分子是外膜孔蛋白以及光滑和粗糙的脂多糖。孔蛋白激活两条补体途径,粗糙脂多糖激活经典途径,导致C3b在血清敏感菌株中沉积。血清抗性菌株的光滑脂多糖仅激活替代途径,阻碍C1q与孔蛋白结合(S. Albertí、G. Marqués、S. Camprubí、S. Merino、J. M. Tomás、F. Vivanco和V. J. Benedí,《感染与免疫》61:852 - 860,1993;S. Albertí、F. Rodríguez - Quinónes、T. Schirmer、G. Rummel、J. M. Tomás、J. P. Rosenbusch和V. J. Benedí,《感染与免疫》63:903 - 910,1995)以及粗糙脂多糖分子,从而阻止经典途径的激活。C3b沉积后,在两种菌株上都会迅速降解为iC3b,但由于替代途径和经典补体途径均被激活,血清敏感菌株上C3b的更高水平沉积支持了进一步的补体激活以及血清敏感菌株的杀伤。