Target protein identification in live cells and organisms with a non-diffusive proximity tagging system

Yingjie Sun, Changheng Li, Xiaofei Deng, Wenjie Li, Xiaoyi Deng, Weiqi Ge, Miaoyuan Shi, Ying Guo, Yanxun V. Yu, Hai-bing Zhou, Youngnam N Jin
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Abstract

Identifying target proteins for bioactive molecules is essential for understanding their mechanisms, developing improved derivatives, and minimizing off-target effects. Despite advances in target identification (target-ID) technologies, significant challenges remain, impeding drug development. Most target-ID methods use cell lysates, but maintaining an intact cellular context is vital for capturing specific drug-protein interactions, such as those with transient protein complexes and membrane-associated proteins. To address these limitations, we developed POST-IT (Pup-On-target for Small molecule Target Identification Technology), a non-diffusive proximity tagging system for live cells, orthogonal to the eukaryotic system. POST-IT utilizes an engineered fusion of proteasomal accessory factor A (PafA) and HaloTag to transfer Pup to proximal proteins upon directly binding to the small molecule. After significant optimization to eliminate self-pupylation and polypupylation, minimize depupylation, and optimize chemical linkers, POST-IT successfully identified known targets and discovered a new binder, SEPHS2, for dasatinib, and VPS37C as a new target for hydroxychloroquine, enhancing our understanding these drugs’ mechanisms of action. Furthermore, we demonstrated the application of POST-IT in live zebrafish embryos, highlighting its potential for broad biological research and drug development.
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利用非扩散性近距离标记系统识别活细胞和生物体中的目标蛋白质
识别生物活性分子的靶蛋白对于了解其作用机制、开发改良的衍生物以及最大限度地减少脱靶效应至关重要。尽管靶标识别(target-ID)技术不断进步,但仍然存在重大挑战,阻碍了药物开发。大多数靶点识别方法使用细胞裂解液,但保持完整的细胞环境对于捕捉特定的药物-蛋白质相互作用至关重要,例如与瞬时蛋白复合物和膜相关蛋白的相互作用。为了解决这些局限性,我们开发了 POST-IT(小分子靶标识别技术),这是一种用于活细胞的非扩散性近距离标记系统,与真核系统正交。POST-IT 利用蛋白酶体辅助因子 A(PafA)和 HaloTag 的工程化融合,在与小分子直接结合后将 Pup 转移到近端蛋白上。经过大量优化以消除自upupylation和多upupylation、最小化去upupylation和优化化学连接体,POST-IT成功鉴定了已知靶点,并发现了达沙替尼的新结合体SEPHS2和羟氯喹的新靶点VPS37C,加深了我们对这些药物作用机制的理解。此外,我们还展示了 POST-IT 在活体斑马鱼胚胎中的应用,凸显了它在广泛的生物学研究和药物开发方面的潜力。
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