Kolářová Lucie, Zahradník Jiří, Huličiak Maroš, Mikulecký Pavel, Peleg Yoav, Shemesh Maya, Schreiber Gideon, Schneider Bohdan
Institute of Biotechnology of the Czech Academy of Sciences, BIOCEV, Vestec, Czech Republic.
Department of Biomolecular Sciences, Weizmann Institute of Science, Rehovot, Israel.
FEBS J. 2022 May;289(9):2672-2684. doi: 10.1111/febs.16300. Epub 2021 Dec 7.
We hereby describe the process of design and selection of nonantibody protein binders mimicking cytokine signaling. We chose to mimic signaling of IFN-λ1, type 3 interferon (also known as IL-29) for its novelty and the importance of its biological functions. All four known interferons λ signal through binding to the extracellular domains of IL-28 receptor 1 (IL-28R1) and IL-10 receptor 2 (IL-10R2). Our binders were therefore trained to bind both receptors simultaneously. The bifunctional binder molecules were developed by yeast display, a method of directed evolution. The signaling capacity of the bivalent binders was tested by measuring phosphorylation of the JAK/STAT signaling pathway and production of mRNA of six selected genes naturally induced by IFN- λ1 in human cell lines. The newly developed bivalent binders offer opportunities to study cytokine-related biological functions and modulation of the cell behavior by receptor activation on the cell surfaces alternative to the use of natural IFN-λ.
我们在此描述了模拟细胞因子信号传导的非抗体蛋白结合物的设计和选择过程。我们选择模拟3型干扰素IFN-λ1(也称为IL-29)的信号传导,因其新颖性及其生物学功能的重要性。所有四种已知的干扰素λ通过与IL-28受体1(IL-28R1)和IL-10受体2(IL-10R2)的细胞外结构域结合来信号传导。因此,我们的结合物经过训练可同时结合这两种受体。双功能结合物分子是通过酵母展示技术开发的,这是一种定向进化方法。通过测量人细胞系中JAK/STAT信号通路的磷酸化以及IFN-λ1天然诱导的六个选定基因的mRNA产生,测试了二价结合物的信号传导能力。新开发的二价结合物为研究细胞因子相关的生物学功能以及通过细胞表面受体激活来调节细胞行为提供了机会,这是使用天然IFN-λ之外的另一种选择。