Makowski L
Institute of Molecular Biophysics, Florida State University, Tallahassee 32306.
Gene. 1993 Jun 15;128(1):5-11. doi: 10.1016/0378-1119(93)90146-t.
Strategies for the construction of vehicles for phage display are evaluated here on the basis of structural studies of filamentous bacteriophages. Potential sites for the insertion of foreign peptides into the major coat protein, gp8, of M13 are identified. Currently, the insertion of peptides into gp8 has two basic limitations: all insertion sites that have been used successfully are located within 5 amino acids (aa) of the N terminus, and in virions containing only mutant coat proteins, insertions larger than about 6 aa have not been successfully incorporated. The possible reasons for these limitations are discussed in terms of the structures of gp8 and the minor structural proteins, gp7 and gp9. Potential strategies for overcoming these limitations are outlined. Reasons for the successful incorporation of larger inserts into hybrid phage containing both native and mutant coat proteins are also discussed. The structures of gp6, gp7, and gp9 are described, and it is concluded that insertion sites in these minor proteins are unlikely to have substantial advantages over those currently being used in gp3. The structure of the coat protein of another filamentous phage, Pseudomonas phage Pf1, is also described. Its structure provides a number of clues for the successful design of phage display insertion sites. Because it contains a 7-aa surface loop in the major coat protein, the Pf1 coat protein may have significant advantages over gp8 of M13 as a vehicle for phage display.
本文基于丝状噬菌体的结构研究,对噬菌体展示载体构建策略进行了评估。确定了在M13主要衣壳蛋白gp8中插入外源肽的潜在位点。目前,将肽插入gp8存在两个基本限制:所有已成功使用的插入位点都位于N端的5个氨基酸(aa)范围内,并且在仅含有突变衣壳蛋白的病毒粒子中,大于约6个aa的插入尚未成功整合。根据gp8以及次要结构蛋白gp7和gp9的结构,讨论了这些限制的可能原因。概述了克服这些限制的潜在策略。还讨论了在同时含有天然和突变衣壳蛋白的杂交噬菌体中成功整合更大插入片段的原因。描述了gp6、gp7和gp9的结构,并得出结论,这些次要蛋白中的插入位点不太可能比目前在gp3中使用的位点具有实质性优势。还描述了另一种丝状噬菌体——铜绿假单胞菌噬菌体Pf1的衣壳蛋白结构。其结构为噬菌体展示插入位点的成功设计提供了许多线索。由于Pf1主要衣壳蛋白中含有一个7个氨基酸的表面环,Pf1衣壳蛋白作为噬菌体展示载体可能比M13的gp8具有显著优势。