结合位点
受体-配体动力学
化学
激酶
动力学
血浆蛋白结合
生物物理学
MAPK/ERK通路
嘧啶
生物化学
立体化学
生物
受体
量子力学
物理
作者
A. Chaikuad,Eliana MC Tacconi,J. Zimmer,Yanke Liang,Nathanael S. Gray,Madalena Tarsounas,Stefan Knapp
标识
DOI:10.1038/nchembio.1629
摘要
Crystallographic analysis depicting the interaction of the kinase inhibitor SCH772984 with ERK1/2 reveals a unique binding pocket distinct from off-targets such as haspin and is associated with slow binding kinetics and prolonged inhibitory activity. Activation of the ERK pathway is a hallmark of cancer, and targeting of upstream signaling partners led to the development of approved drugs. Recently, SCH772984 has been shown to be a selective and potent ERK1/2 inhibitor. Here we report the structural mechanism for its remarkable selectivity. In ERK1/2, SCH772984 induces a so-far-unknown binding pocket that accommodates the piperazine-phenyl-pyrimidine decoration. This new binding pocket was created by an inactive conformation of the phosphate-binding loop and an outward tilt of helix αC. In contrast, structure determination of SCH772984 with the off-target haspin and JNK1 revealed two canonical but distinct type I binding modes. Notably, the new binding mode with ERK1/2 was associated with slow binding kinetics in vitro as well as in cell-based assay systems. The described binding mode of SCH772984 with ERK1/2 enables the design of a new type of specific kinase inhibitors with prolonged on-target activity.
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