Stanfield Robyn L, Wilson Ian A, Smider Vaughn V
Department of Integrative Structural and Computational Biology, The Scripps Research Institute, La Jolla, California, 92037, USA.
Department of Integrative Structural and Computational Biology, The Scripps Research Institute, La Jolla, California, 92037, USA; Skaggs Institute for Chemical Biology, The Scripps Research Institute, La Jolla, California, 92037, USA.
Sci Immunol. 2016 Jul;1(1). doi: 10.1126/sciimmunol.aaf7962. Epub 2016 Jul 14.
A subset of bovine antibodies have an exceptionally long third heavy-chain complementarity determining region (CDR H3) that is highly variable in sequence and includes multiple cysteines. These long CDR H3s (up to 69 residues) fold into a long stalk atop which sits a knob domain that is located far from the antibody surface. Three new bovine Fab crystal structures have been determined to decipher the conserved and variable features of ultralong CDR H3s that lead to diversity in antigen recognition. Despite high sequence variability, the stalks adopt a conserved β-ribbon structure, while the knob regions share a conserved β-sheet that serves as a scaffold for two connecting loops of variable length and conformation, as well as one conserved disulfide. Variation in patterns and connectivity of the remaining disulfides contribute to the knob structural diversity. The unusual architecture of these ultralong bovine CDR H3s for generating diversity is unique in adaptive immune systems.
一部分牛抗体具有异常长的第三条重链互补决定区(CDR H3),其序列高度可变且包含多个半胱氨酸。这些长的CDR H3(长达69个残基)折叠成一个长柄,柄的顶端是一个球状结构域,该结构域远离抗体表面。已确定三种新的牛Fab晶体结构,以解读超长CDR H3导致抗原识别多样性的保守和可变特征。尽管序列高度可变,但柄部采用保守的β- ribbon结构,而球状区域共享一个保守的β- sheet,该β- sheet作为两个长度和构象可变的连接环以及一个保守二硫键的支架。其余二硫键的模式和连接性变化导致球状结构的多样性。这些超长牛CDR H3产生多样性的异常结构在适应性免疫系统中是独一无二的。