选择性
化学
离解(化学)
焦点粘着
生物物理学
立体化学
调节器
酪氨酸
激酶
磷酸化
生物化学
酪氨酸激酶
受体
生物
基因
物理化学
催化作用
作者
Benedict‐Tilman Berger,Marta Amaral,Daria B. Kokh,Ariane Nunes‐Alves,Djordje Müsil,Timo Heinrich,Martin Schröder,Rebecca Neil,Jing Wang,Iva Navrátilová,Joerg Bomke,Jonathan M. Elkins,Susanne Müller,Matthias Frech,Rebecca C. Wade,Stefan Knapp
标识
DOI:10.1016/j.chembiol.2021.01.003
摘要
There is increasing evidence of a significant correlation between prolonged drug-target residence time and increased drug efficacy. Here, we report a structural rationale for kinetic selectivity between two closely related kinases: focal adhesion kinase (FAK) and proline-rich tyrosine kinase 2 (PYK2). We found that slowly dissociating FAK inhibitors induce helical structure at the DFG motif of FAK but not PYK2. Binding kinetic data, high-resolution structures and mutagenesis data support the role of hydrophobic interactions of inhibitors with the DFG-helical region, providing a structural rationale for slow dissociation rates from FAK and kinetic selectivity over PYK2. Our experimental data correlate well with computed relative residence times from molecular simulations, supporting a feasible strategy for rationally optimizing ligand residence times. We suggest that the interplay between the protein structural mobility and ligand-induced effects is a key regulator of the kinetic selectivity of inhibitors of FAK versus PYK2.
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