化学
荧光
单体
高分子
聚合
聚合物
亲缘关系
生物物理学
肽
绿色荧光蛋白
蛋白质-蛋白质相互作用
荧光蛋白
组合化学
化学生物学
选择性
小分子
结合亲和力
生物化学
血浆蛋白结合
蛋白质结构
分子识别
荧光标记
天然产物
分子
结合位点
靶蛋白
化学改性
蛋白质工程
作者
Darwin C. Gomez,Swarnadeep Seth,Ronnie Mondal,Stephen J. Koehler,Jared G. Baker,Charles Plate,Ian C. Anderson,Mikayla R Smith,Joey Gloriod,Morgan Gunter,Valerie V Welborn,Sanket A Deshmukh,C Adrian Figg
标识
DOI:10.1002/anie.202520032
摘要
Abstract Molecular definition is usually regarded as a prerequisite to achieve protein recognition and functional modulation, particularly for macromolecular interactions. Herein, we report that polymers with specific combinations of monomers arranged into random sequences [random hetero oligomers (RHOs)] can selectively bind to a model protein. Using green fluorescent protein (GFP) as a target, polyacrylates were developed that bound with nanomolar affinity and enhanced fluorescence by >100%. Purification of the polymerization product revealed subpopulations of compositions with distinct affinities and selectivity for GFP over a competing protein. Experimental and computational binding analyses confirmed that there are distinct RHO–GFP interactions, which are influenced by RHO chemical composition. These findings show that sequence‐defined structures are not a prerequisite for selective protein recognition. Synthetic polymers can instead serve as scalable, tunable platforms for molecular recognition—representing a significant leap towards next‐generation sensing, therapeutic, responsive, and catalytic materials in domains previously dominated by biologics or complex peptide scaffolds.
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