Department of Chemical and Biological Engineering, University of Wisconsin-Madison, Madison, WI 53706, USA.
Protein Eng Des Sel. 2010 Jul;23(7):567-77. doi: 10.1093/protein/gzq029. Epub 2010 May 23.
High-throughput generation of antibodies against cellular components is currently a challenge in proteomics, therapeutic development and other biological applications. It is particularly challenging to raise antibodies that target membrane proteins due to their insolubility in aqueous solutions. To address these issues, a yeast display library of human single-chain antibody fragments (scFvs) was efficiently screened directly against detergent-solubilized and biotinylated lysates of a target cell line, thereby avoiding issues with membrane protein insolubility and eliminating the need for heterologous expression or purification of antigens. Antibody clones that specifically bind plasma membrane proteins or intracellular proteins were identified, depending on the biotinylation method applied. Antibodies against a predetermined target could also be identified using cell lysate as an antigen source as demonstrated by selecting an scFv against the transferrin receptor (TfR). When secreted from yeast and purified, the selected scFvs are active under physiological conditions in the absence of detergents. In addition, this method allows facile characterization of target antigens because it is compatible with yeast display immunoprecipitation. We expect that this method will prove useful for multiplex affinity reagent generation and in targeted antibody screens.
高通量生成针对细胞成分的抗体目前是蛋白质组学、治疗开发和其他生物应用中的一个挑战。由于其在水溶液中的不溶性,针对膜蛋白的抗体的产生尤其具有挑战性。为了解决这些问题,我们通过酵母展示文库直接针对目标细胞系的去污剂溶解和生物素化裂解物进行了高效筛选,从而避免了膜蛋白不溶性的问题,并消除了对异源表达或抗原纯化的需求。根据所应用的生物素化方法,鉴定了特异性结合质膜蛋白或细胞内蛋白的抗体克隆。如通过选择针对转铁蛋白受体 (TfR) 的 scFv 所示,也可以使用细胞裂解物作为抗原来源来鉴定针对预定靶标的抗体。当从酵母中分泌并纯化时,所选 scFv 在没有去污剂的生理条件下保持活性。此外,该方法允许轻松表征靶抗原,因为它与酵母展示免疫沉淀兼容。我们预计该方法将有助于高通量亲和试剂的生成和靶向抗体筛选。