Gilgunn Sarah, Millán Martín Silvia, Wormald Mark R, Zapatero-Rodríguez Julia, Conroy Paul J, O'Kennedy Richard J, Rudd Pauline M, Saldova Radka
School of Biotechnology, Dublin City University, Dublin 9, Ireland.
Biomedical Diagnostics Institute, National Centre for Sensor Research, Dublin City University, Dublin 9, Ireland.
PLoS One. 2016 Jul 26;11(7):e0159859. doi: 10.1371/journal.pone.0159859. eCollection 2016.
Recent exploitation of the avian immune system has highlighted its suitability for the generation of high-quality, high-affinity antibodies to a wide range of antigens for a number of therapeutic and biotechnological applications. The glycosylation profile of potential immunoglobulin therapeutics is species specific and is heavily influenced by the cell-line/culture conditions used for production. Hence, knowledge of the carbohydrate moieties present on immunoglobulins is essential as certain glycan structures can adversely impact their physicochemical and biological properties. This study describes the detailed N-glycan profile of IgY polyclonal antibodies from the serum of leghorn chickens using a fully quantitative high-throughput N-glycan analysis approach, based on ultra-performance liquid chromatography (UPLC) separation of released glycans. Structural assignments revealed serum IgY to contain complex bi-, tri- and tetra-antennary glycans with or without core fucose and bisects, hybrid and high mannose glycans. High sialic acid content was also observed, with the presence of rare sialic acid structures, likely polysialic acids. It is concluded that IgY is heavily decorated with complex glycans; however, no known non-human or immunogenic glycans were identified. Thus, IgY is a potentially promising candidate for immunoglobulin-based therapies for the treatment of various infectious diseases.
最近对禽类免疫系统的开发突出了其适用于为多种治疗和生物技术应用生成针对广泛抗原的高质量、高亲和力抗体。潜在免疫球蛋白疗法的糖基化谱具有物种特异性,并受到用于生产的细胞系/培养条件的严重影响。因此,了解免疫球蛋白上存在的碳水化合物部分至关重要,因为某些聚糖结构可能会对其物理化学和生物学性质产生不利影响。本研究使用基于超高效液相色谱(UPLC)分离释放聚糖的全定量高通量N-聚糖分析方法,描述了来航鸡血清中IgY多克隆抗体的详细N-聚糖谱。结构分析表明血清IgY含有复杂的双天线、三天线和四天线聚糖,有或没有核心岩藻糖和平分结构,以及杂合型和高甘露糖型聚糖。还观察到高唾液酸含量,以及罕见的唾液酸结构,可能是多唾液酸。得出的结论是,IgY被复杂聚糖大量修饰;然而,未鉴定出已知的非人或免疫原性聚糖。因此,IgY是用于治疗各种传染病的基于免疫球蛋白疗法的潜在有前景的候选物。