聚糖
细胞毒性
同种类的
抗体
碎片结晶区
化学
免疫球蛋白G
抗体依赖性细胞介导的细胞毒性
免疫球蛋白Fc片段
免疫球蛋白Fab片段
免疫学
体外
生物化学
生物
糖蛋白
单克隆抗体
物理
热力学
互补决定区
作者
Chia-Lin Chen,Jen-Chi Hsu,Chin‐Wei Lin,Chia‐Hung Wang,Ming–Hung Tsai,Chung‐Yi Wu,Chi‐Huey Wong,Che Ma
标识
DOI:10.1021/acschembio.7b00140
摘要
N-glycosylation on IgG modulates Fc conformation and effector functions. An IgG-Fc contains a human sialo-complex type (hSCT) glycan of biantennary structure with two α2,6-sialylations and without core-fucosylation is an optimized glycoform developed to enhance the antibody dependent cellular cytotoxicity (ADCC). hSCT modification not only enhances the binding affinity to Fc receptors in the presence of antigen but also in some cases provides gain-of-function effector activity. We used enzymatic glyco-engineering to prepare an IgG-Fc with homogeneous hSCT attached to each CH2 domain and solved its crystal structure. A compact form and an open form were observed in an asymmetric unit in the crystal. In the compact structure, the double glycan latches from the two hSCT chains stabilize the CH2 domains in a closed conformation. In the open structure, the terminal sialic acid (N-acetylneuraminic acid or NeuNAc) residue interacts through water-mediated hydrogen bonds with the D249-L251 helix, to modulate the pivot region of the CH2-CH3 interface. The double glycan latches and the sialic acid modulation may be mutually exclusive. This is the first crystal structure of glyco-engineered Fc with enhanced effector activities. This work provides insights into the relationship between the structural stability and effector functions affected by hSCT modification and the development of better antibodies for therapeutic applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI