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抗体介导的补体经典途径激活可能弥补甘露糖结合凝集素缺陷。

Antibody-mediated activation of the classical pathway of complement may compensate for mannose-binding lectin deficiency.

作者信息

Roos Anja, Garred Peter, Wildenberg Manon E, Lynch Nicholas J, Munoz Jeric R, Zuiverloon Tahlita C M, Bouwman Lee H, Schlagwein Nicole, Fallaux van den Houten Francien C, Faber-Krol Maria C, Madsen Hans O, Schwaeble Wilhelm J, Matsushita Misao, Fujita Teizo, Daha Mohamed R

机构信息

Leiden University Medical Center, Department of Nephrology, Leiden, The Netherlands.

出版信息

Eur J Immunol. 2004 Sep;34(9):2589-98. doi: 10.1002/eji.200324401.

Abstract

Deficiency of mannose-binding lectin (MBL), a recognition molecule of the lectin pathway of complement, is associated with increased susceptibility to infections. The high frequency of MBL deficiency suggests that defective MBL-mediated innate immunity can be compensated by alternative defense strategies. To examine this hypothesis, complement activation by MBL-binding ligands was studied. The results show that the prototypic MBL ligand mannan can induce complement activation via both the lectin pathway and the classical pathway. Furthermore, antibody binding to mannan restored complement activation in MBL-deficient serum in a C1q-dependent manner. Cooperation between the classical pathway and the lectin pathway was also observed for complement activation by protein 60 from Listeria monocytogenes. MBL pathway analysis at the levels of C4 and C5b-9 in the presence of classical pathway inhibition revealed a large variation of MBL pathway activity, depending on mbl2 gene polymorphisms. MBL pathway dysfunction in variant allele carriers is associated with reduced MBL ligand binding and a relative increase of low-molecular-mass MBL. These findings indicate that antibody-mediated classical pathway activation can compensate for impaired target opsonization via the MBL pathway in MBL-deficient individuals, and imply that MBL deficiency may become clinically relevant in absence of a concomitant adaptive immune response.

摘要

甘露糖结合凝集素(MBL)是补体凝集素途径的一种识别分子,其缺乏与感染易感性增加有关。MBL缺乏的高频率表明,MBL介导的先天性免疫缺陷可通过替代防御策略得到补偿。为了验证这一假设,研究了MBL结合配体激活补体的情况。结果表明,典型的MBL配体甘露聚糖可通过凝集素途径和经典途径诱导补体激活。此外,抗体与甘露聚糖的结合以C1q依赖的方式恢复了MBL缺陷血清中的补体激活。对于单核细胞增生李斯特菌的蛋白60激活补体,也观察到了经典途径与凝集素途径之间的协同作用。在存在经典途径抑制的情况下,在C4和C5b-9水平进行的MBL途径分析显示,MBL途径活性存在很大差异,这取决于mbl2基因多态性。变异等位基因携带者中的MBL途径功能障碍与MBL配体结合减少以及低分子量MBL的相对增加有关。这些发现表明,抗体介导的经典途径激活可以补偿MBL缺陷个体中通过MBL途径受损的靶标调理作用,并暗示在缺乏伴随的适应性免疫反应时,MBL缺乏可能具有临床相关性。

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