生物结合
计算机科学
范围(计算机科学)
翻译后修饰
计算生物学
泛素
小分子
化学
化学生物学
神经科学
基因组编辑
人机交互
药物发现
靶蛋白
干预(咨询)
纳米技术
作者
Chen Zhang,Hui Ye,Yihua Zhang,Jianbing Wu,Zhangjian Huang
摘要
Protein posttranslational modifications (PTMs) build up the diversity and complexity of the proteome, and their dysregulation is intrinsically linked to various diseases. The study of PTMs has profoundly broadened the scope of therapeutic target discovery. Building upon the success of PROTACs, this heterobifunctional paradigm has expanded beyond ubiquitination to recruit diverse endogenous enzymes for proximity-induced PTM modulation (e.g., PHICS, AceTACs, and DUBTACs). As a powerful complement, direct chemical editing via monovalent small molecules achieves autonomous, enzyme-independent PTM writing by leveraging inherent chemical reactivity and ligand-directed proximity. Crucially, this strategy extends to broader bioconjugation methods, enabling the installation of PTM mimetics and precise editing of the protein backbone. By synthesizing advances in induced proximity and direct chemical writing, this review provides a framework for developing next-generation precision therapeutics that dynamically edit the PTM landscape.
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