Nguyen Kieu T H, Adamkiewicz Marta A, Hebert Lauren E, Zygiel Emily M, Boyle Holly R, Martone Christina M, Meléndez-Ríos Carola B, Noren Karen A, Noren Christopher J, Hall Marilena Fitzsimons
Department of Chemistry, Stonehill College, 320 Washington Street, Easton, MA 02357, USA.
New England Biolabs, Inc., 240 County Road, Ipswich, MA 01938, USA.
Anal Biochem. 2014 Oct 1;462:35-43. doi: 10.1016/j.ab.2014.06.007. Epub 2014 Jun 19.
A target-unrelated peptide (TUP) can arise in phage display selection experiments as a result of a propagation advantage exhibited by the phage clone displaying the peptide. We previously characterized HAIYPRH, from the M13-based Ph.D.-7 phage display library, as a propagation-related TUP resulting from a G→A mutation in the Shine-Dalgarno sequence of gene II. This mutant was shown to propagate in Escherichia coli at a dramatically faster rate than phage bearing the wild-type Shine-Dalgarno sequence. We now report 27 additional fast-propagating clones displaying 24 different peptides and carrying 14 unique mutations. Most of these mutations are found either in or upstream of the gene II Shine-Dalgarno sequence, but still within the mRNA transcript of gene II. All 27 clones propagate at significantly higher rates than normal library phage, most within experimental error of wild-type M13 propagation, suggesting that mutations arise to compensate for the reduced virulence caused by the insertion of a lacZα cassette proximal to the replication origin of the phage used to construct the library. We also describe an efficient and convenient assay to diagnose propagation-related TUPS among peptide sequences selected by phage display.
在噬菌体展示筛选实验中,由于展示肽的噬菌体克隆表现出繁殖优势,可能会出现与靶标无关的肽(TUP)。我们之前从基于M13的Ph.D.-7噬菌体展示文库中鉴定出HAIYPRH,它是一种与繁殖相关的TUP,由基因II的Shine-Dalgarno序列中的G→A突变产生。该突变体在大肠杆菌中的繁殖速度比携带野生型Shine-Dalgarno序列的噬菌体快得多。我们现在报告另外27个快速繁殖的克隆,它们展示24种不同的肽并携带14个独特的突变。这些突变大多位于基因II的Shine-Dalgarno序列内或其上游,但仍在基因II的mRNA转录本范围内。所有27个克隆的繁殖速度都明显高于正常文库噬菌体,大多数在野生型M13繁殖的实验误差范围内,这表明出现突变是为了补偿因在用于构建文库的噬菌体复制起点附近插入lacZα盒而导致的毒力降低。我们还描述了一种高效便捷的检测方法,用于诊断在噬菌体展示筛选的肽序列中与繁殖相关的TUP。