Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
Protein Eng Des Sel. 2010 Apr;23(4):211-9. doi: 10.1093/protein/gzp083. Epub 2010 Jan 12.
The design of combinatorial libraries for molecular recognition requires extensive diversity to provide high affinity binding to myriad epitopes while maintaining a high degree of functionality to enable inclusion of binders in the limited screenable library size. In the current work, we directly compare minimal and maximal amino acid diversity libraries in the context of the 10th type III domain of human fibronectin. Libraries with either serine/tyrosine or full 20 amino acid diversity were created, pooled and screened for binding to rabbit and goat immunoglobulin G (IgG), and affinity matured by directed evolution. Multiple picomolar binders to rabbit IgG and nanomolar binders to goat IgG were engineered with peak affinities of 51 +/- 4 pM and 1.2 +/- 0.4 nM, respectively. Sequence analysis reveals that 93% of the selected BC and FG loops, including those from the highest affinity clones, originate from the full diversity library. Thus, with a modest initial library size (approximately 1 x 10(8)) and an efficient affinity maturation scheme, more extensive diversity is superior to a binary serine/tyrosine code for the generation of picomolar to low nanomolar binders in the fibronectin domain. The highest affinity binders demonstrated utility in affinity purification of IgG from serum and as detection reagents in flow cytometry.
组合文库的设计用于分子识别,需要广泛的多样性以提供对众多表位的高亲和力结合,同时保持高度的功能,以便在有限的可筛选文库大小中包含结合物。在当前的工作中,我们直接比较了人纤连蛋白第 10 型 III 结构域中最小和最大氨基酸多样性文库。创建了具有丝氨酸/酪氨酸或完整 20 种氨基酸多样性的文库,将其汇集并筛选与兔和山羊免疫球蛋白 G(IgG)的结合,然后通过定向进化进行亲和力成熟。设计了多个皮摩尔级结合兔 IgG 和纳摩尔级结合山羊 IgG 的结合物,其峰值亲和力分别为 51 +/- 4 pM 和 1.2 +/- 0.4 nM。序列分析表明,93%的选择的 BC 和 FG 环,包括来自最高亲和力克隆的环,源自全多样性文库。因此,在适度的初始文库大小(约 1 x 10(8))和高效的亲和力成熟方案下,更广泛的多样性优于二进制丝氨酸/酪氨酸代码,可用于在纤连蛋白结构域中生成皮摩尔至低纳摩尔亲和力的结合物。最高亲和力的结合物在从血清中亲和纯化 IgG 以及在流式细胞术中作为检测试剂方面具有实用性。