计算生物学
酵母
药物发现
化学
细胞生物学
纳米技术
生物
生物化学
材料科学
作者
Conor McMahon,Alexander S. Baier,Roberta Pascolutti,Marcin Wegrecki,Sanduo Zheng,Janice X. Ong,Sarah C. Erlandson,Daniel Hilger,Søren G. F. Rasmussen,Aaron M. Ring,Aashish Manglik,Andrew C. Kruse
标识
DOI:10.1038/s41594-018-0028-6
摘要
Camelid single-domain antibody fragments (‘nanobodies’) provide the remarkable specificity of antibodies within a single 15-kDa immunoglobulin VHH domain. This unique feature has enabled applications ranging from use as biochemical tools to therapeutic agents. Nanobodies have emerged as especially useful tools in protein structural biology, facilitating studies of conformationally dynamic proteins such as G-protein-coupled receptors (GPCRs). Nearly all nanobodies available to date have been obtained by animal immunization, a bottleneck restricting many applications of this technology. To solve this problem, we report a fully in vitro platform for nanobody discovery based on yeast surface display. We provide a blueprint for identifying nanobodies, demonstrate the utility of the library by crystallizing a nanobody with its antigen, and most importantly, we utilize the platform to discover conformationally selective nanobodies to two distinct human GPCRs. To facilitate broad deployment of this platform, the library and associated protocols are freely available for nonprofit research. Yeast surface display platform allows nanobody discovery within two to three weeks. Examples include nanobodies for crystallographic applications, targeting nonpurified antigen or conformationally selective nanobodies to two distinct human GPCRs.
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