Lisowska Małgorzata, Lickiss Fiona, Gil-Mir Maria, Huart Anne-Sophie, Trybala Zuzanna, Way Luke, Hernychova Lenka, Krejci Adam, Muller Petr, Krejcir Radovan, Zhukow Igor, Jurczak Przemyslaw, Rodziewicz-Motowidło Sylwia, Ball Kathryn, Vojtesek Borivoj, Hupp Ted, Kalathiya Umesh
International Centre for Cancer Vaccine Science, University of Gdańsk, Gdańsk, Poland.
University of Edinburgh, Institute of Genetics and Molecular Medicine, Edinburgh, United Kingdom.
Front Microbiol. 2022 Dec 2;13:875556. doi: 10.3389/fmicb.2022.875556. eCollection 2022.
Defining dynamic protein-protein interactions in the ubiquitin conjugation reaction is a challenging research area. Generating peptide aptamers that target components such as ubiquitin itself, E1, E2, or E3 could provide tools to dissect novel features of the enzymatic cascade. Next-generation deep sequencing platforms were used to identify peptide sequences isolated from phage-peptide libraries screened against Ubiquitin and its ortholog NEDD8. In over three rounds of selection under differing wash criteria, over 13,000 peptides were acquired targeting ubiquitin, while over 10,000 peptides were selected against NEDD8. The overlap in peptides against these two proteins was less than 5% suggesting a high degree in specificity of Ubiquitin or NEDD8 toward linear peptide motifs. Two of these ubiquitin-binding peptides were identified that inhibit both E3 ubiquitin ligases MDM2 and CHIP. NMR analysis highlighted distinct modes of binding of the two different peptide aptamers. These data highlight the utility of using next-generation sequencing of combinatorial phage-peptide libraries to isolate peptide aptamers toward a protein target that can be used as a chemical tool in a complex multi-enzyme reaction.
定义泛素结合反应中的动态蛋白质-蛋白质相互作用是一个具有挑战性的研究领域。生成靶向泛素本身、E1、E2或E3等成分的肽适配体可以提供剖析酶级联反应新特征的工具。利用下一代深度测序平台来鉴定从针对泛素及其直系同源物NEDD8筛选的噬菌体-肽库中分离出的肽序列。在不同洗涤标准下进行的三轮以上筛选中,获得了超过13,000个靶向泛素的肽,同时针对NEDD8筛选出了超过10,000个肽。针对这两种蛋白质的肽重叠率不到5%,这表明泛素或NEDD8对线性肽基序具有高度特异性。鉴定出其中两种泛素结合肽可抑制E3泛素连接酶MDM2和CHIP。核磁共振分析突出了两种不同肽适配体的不同结合模式。这些数据突出了利用组合噬菌体-肽库的下一代测序来分离针对蛋白质靶点的肽适配体的实用性,这些肽适配体可用作复杂多酶反应中的化学工具。