Brouwer Nannette, Dolman Koert M, van Houdt Michel, Sta Marleen, Roos Dirk, Kuijpers Taco W
Sanquin Research and Landsteiner Laboratory, Amsterdam, The Netherlands.
J Immunol. 2008 Mar 15;180(6):4124-32. doi: 10.4049/jimmunol.180.6.4124.
Mannose-binding lectin (MBL) is a serum protein of the innate immune system. After binding to a microorganism, MBL in complex with MBL-associated serine proteases activates the complement system, resulting in cleavage of complement factor C3. Cleaved C3 on the surface of the microorganism mediates opsonization for clearance, but the impact of MBL on subsequent phagocytosis has not been widely studied. We investigated the role of MBL in complement activation and phagocytosis of various bacteria and yeast species by flow cytometry. We measured both the C3 deposition during serum opsonization of fluorescent-labeled microorganisms as well as subsequent uptake of these microorganisms by human neutrophils. In MBL-deficient sera, a consistently decreased C3 deposition on both zymosan and Candida albicans was found and a reduced phagocytosis by neutrophils that was restored by exogenous MBL. This indicates that the lectin pathway of complement activation is important for the opsonophagocytosis of yeasts. In contrast, the C1q-dependent classical pathway dominated in the opsonization and phagocytosis of Staphylococcus aureus, Streptococcus pneumoniae, and Escherichia coli, whereas no effect of MBL was found. Both the lectin and the classical pathway of complement activation were highly amplified by the alternative route for opsonophagocytosis by neutrophils of yeast as well as microbial species. In summary, our data demonstrate that yeast species are preferentially opsonized and subsequently phagocytosed via activation of the lectin pathway of complement, whereas the uptake of bacterial strains was found to be largely MBL independent.
甘露糖结合凝集素(MBL)是先天性免疫系统的一种血清蛋白。与微生物结合后,MBL与MBL相关丝氨酸蛋白酶形成复合物,激活补体系统,导致补体因子C3裂解。微生物表面裂解的C3介导调理作用以清除病原体,但MBL对随后吞噬作用的影响尚未得到广泛研究。我们通过流式细胞术研究了MBL在各种细菌和酵母补体激活及吞噬作用中的作用。我们测量了荧光标记微生物血清调理过程中的C3沉积以及随后人类中性粒细胞对这些微生物的摄取。在MBL缺陷血清中,发现酵母聚糖和白色念珠菌表面的C3沉积持续减少,中性粒细胞的吞噬作用降低,而外源性MBL可恢复这种作用。这表明补体激活的凝集素途径对酵母的调理吞噬作用很重要。相比之下,C1q依赖的经典途径在金黄色葡萄球菌、肺炎链球菌和大肠杆菌的调理作用和吞噬作用中占主导地位,而未发现MBL有影响。补体激活的凝集素途径和经典途径在酵母及微生物的中性粒细胞调理吞噬作用中均通过替代途径得到高度放大。总之,我们的数据表明,酵母通过补体凝集素途径的激活优先被调理并随后被吞噬,而发现细菌菌株的摄取在很大程度上不依赖MBL。