整合酶
抗原
计算生物学
细胞内
噬菌体展示
生物
抗体
化学
分子生物学
细胞生物学
生物化学
DNA
遗传学
作者
Mireille Pellis,Els Pardon,Kourosh Zolghadr,Ulrich Rothbauer,Cécile Vincke,Jöerg Kinne,Inge Dierynck,Kurt Hertogs,Heinrich Leonhardt,Joris Messens,Serge Muyldermans,Katja Conrath
标识
DOI:10.1016/j.abb.2012.04.023
摘要
Camel single-domain antibody fragments or Nanobodies, are practical in a wide range of applications. Their unique biochemical and biophysical properties permit an intracellular expression and antigen targeting. The availability of an efficient intracellular selection step would immediately identify the best intracellularly performing functional antibody fragments. Therefore, we assessed a bacterial-two-hybrid system to retrieve such Nanobodies. With GFP as an antigen we demonstrate that antigen-specific Nanobodies of sub-micromolar affinity and stability above 30 kJ/mol, at a titer of 10(-4) can be retrieved in a single-step selection. This was further proven practically by the successful recovery from an 'immune' library of multiple stable, antigen-specific Nanobodies of good affinity for HIV-1 integrase or nucleoside hydrolase. The sequence diversity, intrinsic domain stability, antigen-specificity and affinity of these binders compare favorably to those that were retrieved in parallel by phage display pannings.
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