Department of Microbiology and Immunology, Albert Einstein College of Medicine, Bronx, NY 10461, USA.
J Immunol. 2013 Jan 1;190(1):317-23. doi: 10.4049/jimmunol.1202324. Epub 2012 Dec 10.
Abs to microbial capsules are critical for host defense against encapsulated pathogens, but very little is known about the effects of Ab binding on the capsule, apart from producing qualitative capsular reactions ("quellung" effects). A problem in studying Ab-capsule interactions is the lack of experimental methodology, given that capsules are fragile, highly hydrated structures. In this study, we pioneered the use of optical tweezers microscopy to study Ab-capsule interactions. Binding of protective mAbs to the capsule of the fungal pathogen Cryptococcus neoformans impaired yeast budding by trapping newly emerging buds inside the parental capsule. This effect is due to profound mAb-mediated changes in capsular mechanical properties, demonstrated by a concentration-dependent increase in capsule stiffness. This increase involved mAb-mediated cross-linking of capsular polysaccharide molecules. These results provide new insights into Ab-mediated immunity, while suggesting a new nonclassical mechanism of Ab function, which may apply to other encapsulated pathogens. Our findings add to the growing body of evidence that Abs have direct antimicrobial functions independent of other components of the immune system.
荚膜对宿主防御有荚膜的病原体至关重要,但除了产生定性荚膜反应(“抑制”效应)外,人们对 Ab 结合荚膜的影响知之甚少。研究 Ab-荚膜相互作用的一个问题是缺乏实验方法,因为荚膜是脆弱的、高度水合的结构。在这项研究中,我们率先使用光学镊子显微镜研究 Ab-荚膜相互作用。保护性 mAb 与真菌病原体新型隐球菌荚膜的结合通过将新出现的芽困在亲代荚膜内,阻碍酵母出芽。这种效应是由于 mAb 介导的荚膜机械性能的深刻变化所致,表现为荚膜硬度随浓度依赖性增加。这种增加涉及 mAb 介导的荚膜多糖分子交联。这些结果为 Ab 介导的免疫提供了新的见解,同时提示 Ab 功能的一种新的非经典机制,可能适用于其他有荚膜的病原体。我们的发现增加了越来越多的证据表明,Abs 具有独立于免疫系统其他成分的直接抗菌功能。