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ATP 竞争抑制剂如何变构调节包含Src 样调节结构的酪氨酸激酶。

How ATP-Competitive Inhibitors Allosterically Modulate Tyrosine Kinases That Contain a Src-like Regulatory Architecture.

机构信息

Department of Pharmacological Sciences, Stony Brook University, Stony Brook, New York 11794-8651, United States.

出版信息

ACS Chem Biol. 2020 Jul 17;15(7):2005-2016. doi: 10.1021/acschembio.0c00429. Epub 2020 Jun 23.

Abstract

Small molecule kinase inhibitors that stabilize distinct ATP binding site conformations can differentially modulate the global conformation of Src-family kinases (SFKs). However, it is unclear which specific ATP binding site contacts are responsible for modulating the global conformation of SFKs and whether these inhibitor-mediated allosteric effects generalize to other tyrosine kinases. Here, we describe the development of chemical probes that allow us to deconvolute which features in the ATP binding site are responsible for the allosteric modulation of the global conformation of Src. We find that the ability of an inhibitor to modulate the global conformation of Src's regulatory domain-catalytic domain module relies mainly on the influence it has on the conformation of a structural element called helix αC. Furthermore, by developing a set of orthogonal probes that target a drug-sensitized Src variant, we show that stabilizing Src's helix αC in an active conformation is sufficient to promote a Src-mediated, phosphotransferase-independent alteration in cell morphology. Finally, we report that ATP-competitive, conformation-selective inhibitors can influence the global conformation of tyrosine kinases beyond the SFKs, suggesting that the allosteric networks we observe in Src are conserved in kinases that have a similar regulatory architecture. Our study highlights that an ATP-competitive inhibitor's interactions with helix αC can have a major influence on the global conformation of some tyrosine kinases.

摘要

小分子激酶抑制剂可稳定不同的 ATP 结合位点构象,从而差异调节原肌球蛋白受体激酶(Src 家族激酶,SFKs)的整体构象。然而,尚不清楚哪些特定的 ATP 结合位点接触负责调节 SFKs 的整体构象,以及这些抑制剂介导的变构效应是否普遍适用于其他酪氨酸激酶。在这里,我们描述了开发化学探针的方法,这些探针使我们能够剖析 ATP 结合位点中的哪些特征负责变构调节 Src 的整体构象。我们发现,抑制剂调节 Src 调节结构域-催化结构域模块整体构象的能力主要取决于它对称为αC 螺旋的结构元件构象的影响。此外,通过开发一组针对药物敏感型 Src 变体的正交探针,我们表明稳定 Src 的αC 螺旋处于活性构象足以促进Src 介导的、磷酸转移酶非依赖性的细胞形态改变。最后,我们报告说,ATP 竞争性、构象选择性抑制剂可以影响酪氨酸激酶的整体构象,而不仅仅是 SFKs,这表明我们在 Src 中观察到的变构网络在具有相似调节结构的激酶中是保守的。我们的研究强调,ATP 竞争性抑制剂与αC 螺旋的相互作用可能对某些酪氨酸激酶的整体构象产生重大影响。

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