Department of Chemistry and Biotechnology, Graduate School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-8656, Japan.
Laboratory of Cell Vaccine, Center for Vaccine and Adjuvant Research (CVAR), National Institutes of Biomedical Innovation, Health and Nutrition (NIBIOHN), 7-6-8 Saito-Asagi, Ibaraki-shi, Osaka, 567-0085, Japan.
Sci Rep. 2021 Jun 3;11(1):11758. doi: 10.1038/s41598-021-91287-z.
Chimeric proteins have been widely used to evaluate intracellular protein-protein interactions (PPIs) in living cells with various readouts. By combining an interleukin-3-dependent murine cells and chimeric proteins containing a receptor tyrosine kinase c-kit, we previously established a c-kit-based PPI screening (KIPPIS) system to evaluate and select protein binders. In the KIPPIS components, proteins of interest are connected with a chemically inducible helper module and the intracellular domain of the growth-signaling receptor c-kit, which detects PPIs based on cell proliferation as a readout. In this system, proteins of interest can be incorporated into chimeric proteins without any scaffold proteins, which would be advantageous for evaluating interaction between small peptides/domains. To prove this superiority, we apply KIPPIS to 6 peptide aptamer-polypeptide pairs, which are derived from endogenous, synthetic, and viral proteins. Consequently, all of the 6 peptide aptamer-polypeptide interactions are successfully detected by cell proliferation. The detection sensitivity can be modulated in a helper ligand-dependent manner. The assay results of KIPPIS correlate with the activation levels of Src, which is located downstream of c-kit-mediated signal transduction. Control experiments reveal that KIPPIS clearly discriminates interacting aptamers from non-interacting ones. Thus, KIPPIS proves to be a versatile platform for evaluating the binding properties of peptide aptamers.
嵌合蛋白已被广泛用于通过各种读出方式评估活细胞内的蛋白质-蛋白质相互作用 (PPIs)。通过将依赖白细胞介素-3 的小鼠细胞与包含受体酪氨酸激酶 c-kit 的嵌合蛋白相结合,我们之前建立了基于 c-kit 的 PPI 筛选 (KIPPIS) 系统,用于评估和选择蛋白质结合物。在 KIPPIS 组件中,感兴趣的蛋白与化学诱导的辅助模块和生长信号受体 c-kit 的细胞内域相连,该受体通过细胞增殖作为读出值来检测 PPI。在该系统中,感兴趣的蛋白可以不使用任何支架蛋白被整合到嵌合蛋白中,这对于评估小肽/结构域之间的相互作用是有利的。为了证明这种优越性,我们将 KIPPIS 应用于 6 个肽适体-多肽对,这些肽适体来源于内源性、合成和病毒蛋白。结果,所有 6 个肽适体-多肽相互作用都通过细胞增殖成功检测到。检测灵敏度可以通过辅助配体依赖的方式进行调节。KIPPIS 的检测结果与位于 c-kit 介导的信号转导下游的 Src 的激活水平相关。对照实验表明,KIPPIS 可以清楚地区分相互作用的适体和非相互作用的适体。因此,KIPPIS 被证明是评估肽适体结合特性的多功能平台。