He Qindi, Wang Zhijie, Wang Rongrong, Lu Tao, Chen Yadong, Lu Shuai
School of Science, China Pharmaceutical University, Nanjing 211198 China.
Shenzhen Key Laboratory of Viral Oncology, Ministry of Science and Innovation, Shenzhen Hospital, Southern Medical University, Shenzhen 518100 China.
Drug Discov Today. 2025 Feb;30(2):104307. doi: 10.1016/j.drudis.2025.104307. Epub 2025 Feb 1.
Phosphorylation is an important form of protein post-translational modification (PTM) in cells. Dysregulation of phosphorylation is closely associated with many diseases. Because the regulation of proteins of interest (POIs) by chemically induced proximity (CIP) strategies has been widely validated, regulating the phosphorylation status of POIs by phosphorylation-regulating bifunctional molecules (PBMs) emerges as an alternative paradigm. PBMs promote the spatial proximity of POIs to kinases/phosphatases, and thus alter the phosphorylation state of POIs. Herein, we describe the history and current status of PBMs, analyze in detail the general design principles and specific applications of PBMs, assess their current advantages, possible challenges and limitations, and propose future directions for PBMs, which will stimulate interest in PBM research.
磷酸化是细胞中蛋白质翻译后修饰(PTM)的一种重要形式。磷酸化失调与许多疾病密切相关。由于化学诱导邻近效应(CIP)策略对目标蛋白(POI)的调控已得到广泛验证,因此通过磷酸化调节双功能分子(PBM)来调节POI的磷酸化状态成为一种替代模式。PBM促进POI与激酶/磷酸酶的空间邻近性,从而改变POI的磷酸化状态。在此,我们描述了PBM的历史和现状,详细分析了PBM的一般设计原则和具体应用,评估了它们目前的优势、可能面临的挑战和局限性,并提出了PBM的未来发展方向,这将激发人们对PBM研究的兴趣。