共价键
化学
生物化学
化学生物学
氨基酸
共价结合
蛋白质亚单位
组合化学
立体化学
谷氨酸
膜
化学改性
血浆蛋白结合
生物结合
跨膜蛋白
亲核细胞
结合位点
HEK 293细胞
部分
靶蛋白
肽序列
生物物理学
蛋白质结构
伴侣(临床)
串扰
预酸化
天冬氨酸
五聚体
膜蛋白
作者
R. Zhang,Jie Liu,Raphael Gasper,Anke Unger,Farnusch Kaschani,Markus Kaiser,Petra Janning,H. Waldmann
标识
DOI:10.1038/s41467-026-68999-9
摘要
For targeted covalent protein modification at low-reactivity aspartates and glutamates, new methods are in high demand. We report a technique inspired by the HaloTag technology, which employs nucleophilic substitution at chloroalkane-functionalised ligands by a specific aspartate residue. Embedding of alkyl bromide warheads into non-covalent inhibitors enables covalent modification of a glutamate in the lipoprotein binding chaperone - phosphodiesterase of retinal rod subunit delta (PDEδ), which shuttles prenylated lipoproteins between cellular membranes and thereby mediates their activity. Its hydrophobic ligand-binding pocket contains p.E88 as the only accessible nucleophile for covalent targeting. We show that a covalent inhibitor, termed DeltaTag, overcomes limitations of non-covalent inhibitors. DeltaTag labels PDEδ at its p.E88 under biologically relevant conditions, modulates mammalian target of rapamycin (mTOR) signalling by disrupting the PDEδ-Rheb (Ras homologue enriched in brain)-mTORC1 (mTOR complex 1) axis and inhibits cancer cell proliferation. This proof-of-concept study demonstrates that the design strategy holds promise for the covalent modification of proteins with lipophilic binding sites that lack accessible reactive amino acids but contain specific carboxylates.
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