Dasch James R, Dasch Amy L
Cold Spring Harb Protoc. 2017 Sep 1;2017(9):pdb.prot093864. doi: 10.1101/pdb.prot093864.
A variety of phage display technologies have been developed since the approach was first described for antibodies. The most widely used approaches incorporate antibody sequences into the minor coat protein pIII of the nonlytic filamentous phage fd or M13. Libraries of variable gene sequences, encoding either scFv or Fab fragments, are made by incorporating sequences into phagemid vectors. The phagemid is packaged into phage particles with the assistance of a helper phage to produce the antibody display phage. This protocol describes a method for creating a phagemid library. The multiple cloning site (MCS) of the pBluescript KS(-) phagemid vector is replaced by digestion with the restriction enzyme BssHII, followed by the insertion of four overlapping oligonucleotides to create a new MCS within the vector. Next, the 3' portion of gene III (from M13mp18) is amplified and combined with an antibody sequence using overlap extension PCR. This product is inserted into the phagemid vector to create pPDS. Two helper plasmids are also created from the modified pBluescript vector: pLINK provides the linker between the heavy and light chains, and pFABC provides the CH1 domain of the heavy chain. An antibody cDNA library is constructed from the RNA of interest and ligated into pPDS. The phagemid library is electroporated into cells along with the VCS-M13 helper phage.
自从首次描述用于抗体的噬菌体展示技术以来,已经开发了多种噬菌体展示技术。最广泛使用的方法是将抗体序列整合到非裂解性丝状噬菌体fd或M13的次要外壳蛋白pIII中。通过将序列整合到噬菌粒载体中来构建编码单链抗体片段(scFv)或Fab片段的可变基因序列文库。噬菌粒在辅助噬菌体的帮助下包装成噬菌体颗粒,以产生抗体展示噬菌体。本方案描述了一种创建噬菌粒文库的方法。用限制性内切酶BssHII消化pBluescript KS(-)噬菌粒载体的多克隆位点(MCS),然后插入四个重叠的寡核苷酸,在载体中创建一个新的MCS。接下来,扩增基因III(来自M13mp18)的3'部分,并使用重叠延伸PCR与抗体序列结合。将该产物插入噬菌粒载体中以创建pPDS。还从修饰的pBluescript载体创建了两个辅助质粒:pLINK提供重链和轻链之间的连接子,pFABC提供重链的CH1结构域。从感兴趣的RNA构建抗体cDNA文库,并将其连接到pPDS中。将噬菌粒文库与VCS-M13辅助噬菌体一起电穿孔导入细胞。