ACS Synth Biol. 2020 Jul 17;9(7):1882-1896. doi: 10.1021/acssynbio.0c00242. Epub 2020 Jun 23.
Protein-protein interactions govern many cellular processes, and identifying binding interaction sites on proteins can facilitate the discovery of inhibitors to block such interactions. Here we identify peptides from a randomly fragmented plasmid encoding the β-lactamase inhibitory protein (BLIP) and the Lac repressor (LacI) that represent regions of protein-protein interactions. We utilized a Jun-Fos-assisted phage display system that has previously been used to screen cDNA and genomic libraries to identify antibody antigens. Affinity selection with polyclonal antibodies against LacI or BLIP resulted in the rapid enrichment of in-frame peptides from various regions of the proteins. Further, affinity selection with β-lactamase enriched peptides that encompass regions of BLIP previously shown to contribute strongly to the binding energy of the BLIP/β-lactamase interaction, , hotspot residues. Further, one of the regions enriched by affinity selection encompassed a disulfide-constrained region of BLIP that forms part of the BLIP interaction surface in the native complex that we show also binds to β-lactamase as a disulfide-constrained macrocycle peptide with a of ∼1 μM. Fragmented open reading frame (ORF) libraries may efficiently identify such naturally constrained peptides at protein-protein interaction interfaces. With sufficiently deep coverage of ORFs by peptide-coding inserts, phage display and deep sequencing can provide detailed information on the domains or peptides that contribute to an interaction. Such information should enable the design of potentially therapeutic macrocycles or peptidomimetics that block the interaction.
蛋白质-蛋白质相互作用控制着许多细胞过程,而鉴定蛋白质上的结合相互作用位点可以促进发现抑制剂来阻断这种相互作用。在这里,我们从一个随机断裂的质粒中鉴定出编码β-内酰胺酶抑制蛋白(BLIP)和 Lac 阻遏物(LacI)的肽,这些肽代表蛋白质-蛋白质相互作用的区域。我们利用 Jun-Fos 辅助噬菌体展示系统,该系统以前曾用于筛选 cDNA 和基因组文库以鉴定抗体抗原。针对 LacI 或 BLIP 的多克隆抗体的亲和选择导致来自蛋白质各个区域的框内肽的快速富集。此外,用包含先前显示对 BLIP/β-内酰胺酶相互作用结合能有强烈贡献的区域的β-内酰胺酶富集肽进行亲和选择,鉴定出热点残基。此外,亲和选择富集的一个区域包含 BLIP 的一个二硫键约束区域,该区域形成了我们显示也与β-内酰胺酶结合的天然复合物中 BLIP 相互作用表面的一部分,作为一个二硫键约束的大环肽,其结合常数为约 1 μM。碎片化的开放阅读框(ORF)文库可以有效地在蛋白质-蛋白质相互作用界面识别这种自然约束肽。通过肽编码插入物对 ORF 进行足够深的覆盖,噬菌体展示和深度测序可以提供关于对相互作用有贡献的结构域或肽的详细信息。这些信息应该能够设计出潜在的治疗性大环或肽模拟物来阻断相互作用。