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用于噬菌体展示肽N端选择性环化的含2-氰基嘧啶分子

2-Cyanopyrimidine-Containing Molecules for N-Terminal Selective Cyclization of Phage-Displayed Peptides.

作者信息

Hampton J Trae, Dobie Connor R, Coleman Demonta D, Cherif Moulay I, Das Sukant, Liu Wenshe Ray

机构信息

Texas A&M Drug Discovery Center, Department of Chemistry, Texas A&M University, College Station, Texas 77843, United States.

Institute of Biosciences and Technology and Department of Translational Medical Sciences, College of Medicine, Texas A&M University, Houston, Texas 77030, United States.

出版信息

ACS Chem Biol. 2025 Jan 17;20(1):219-228. doi: 10.1021/acschembio.4c00725. Epub 2025 Jan 7.

Abstract

Current methods for the macrocyclization of phage-displayed peptides often rely on small molecule linkers that nonspecifically react with targeted amino acid residues. To expand tool kits for more regioselective macrocyclization of phage-displayed peptides, this study explores the unique condensation reaction between an N-terminal cysteine and nitrile along with the reactivity of an internal cysteine. Five 2-cyanopyrimidine derivatives were synthesized for this purpose and evaluated for their selective macrocyclization of a protein-fused model peptide. Among these, two novel linkers, 2-chloro--(2-cyanopyrimidin-5-yl)acetamide (pCAmCP) and 2-chloro--(2-cyanopyrimidin-4-yl)acetamide (mCAmCP), emerged as efficient molecules and were demonstrated to macrocyclize phage-displayed peptide libraries flanked by an N-terminal and an internal cysteine. Using these linkers to generate macrocyclic peptide libraries displayed on phages, peptide ligands for the ZNRF3 extracellular domain were successfully identified. One of the identified peptides, Z27S1, exhibited potent binding to ZNRF3 with a value of 360 nM. Notably, the selection results revealed distinct peptide enrichment patterns depending on whether mCAmCP or pCAmCP was used, underscoring the significant impact of linker choice on macrocyclic peptide identification. Overall, this study validates the development of two novel regioselective, small molecule linkers for phage display of macrocyclic peptides and highlights the benefits of employing multiple linkers during phage selections.

摘要

目前用于噬菌体展示肽大环化的方法通常依赖于与目标氨基酸残基发生非特异性反应的小分子连接子。为了扩展用于噬菌体展示肽更区域选择性大环化的工具包,本研究探索了N端半胱氨酸与腈之间独特的缩合反应以及内部半胱氨酸的反应性。为此合成了五种2-氰基嘧啶衍生物,并评估了它们对蛋白质融合模型肽的选择性大环化作用。其中,两种新型连接子,即2-氯-(2-氰基嘧啶-5-基)乙酰胺(pCAmCP)和2-氯-(2-氰基嘧啶-4-基)乙酰胺(mCAmCP),成为了有效的分子,并被证明可使由N端和内部半胱氨酸侧翼的噬菌体展示肽文库大环化。使用这些连接子生成噬菌体展示的大环肽文库,成功鉴定出了锌指蛋白3(ZNRF3)细胞外结构域的肽配体。其中一个鉴定出的肽Z27S1对ZNRF3表现出强效结合,解离常数为360 nM。值得注意的是,筛选结果显示,根据使用的是mCAmCP还是pCAmCP,肽富集模式明显不同,这突出了连接子选择对大环肽鉴定的重大影响。总体而言,本研究验证了用于大环肽噬菌体展示的两种新型区域选择性小分子连接子的开发,并强调了在噬菌体筛选过程中使用多种连接子的好处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc8c/11744668/9a251ffaadac/cb4c00725_0001.jpg

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