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A 环相互作用在 Mer 酪氨酸激酶中产生具有两步机制和结合长驻留时间的抑制剂。

A-loop interactions in Mer tyrosine kinase give rise to inhibitors with two-step mechanism and long residence time of binding.

机构信息

Structure, Biophysics and Fragment-Based Lead Generation, Discovery Sciences, R&D, AstraZeneca, Cambridge, U.K.

Oncology R&D, AstraZeneca, Cambridge, U.K.

出版信息

Biochem J. 2020 Nov 27;477(22):4443-4452. doi: 10.1042/BCJ20200735.

Abstract

The activation loop (A-loop) plays a key role in regulating the catalytic activity of protein kinases. Phosphorylation in this region enhances the phosphoryl transfer rate of the kinase domain and increases its affinity for ATP. Furthermore, the A-loop possesses autoinhibitory functions in some kinases, where it collapses onto the protein surface and blocks substrate binding when unphosphorylated. Due to its flexible nature, the A-loop is usually disordered and untraceable in kinase domain crystal structures. The resulting lack of structural information is regrettable as it impedes the design of drug A-loop contacts, which have proven favourable in multiple cases. Here, we characterize the binding with A-loop engagement between type 1.5 kinase inhibitor 'example 172' (EX172) and Mer tyrosine kinase (MerTK). With the help of crystal structures and binding kinetics, we portray how the recruitment of the A-loop elicits a two-step binding mechanism which results in a drug-target complex characterized by high affinity and long residence time. In addition, the type 1.5 compound possesses excellent kinome selectivity and a remarkable preference for the phosphorylated over the dephosphorylated form of MerTK. We discuss these unique characteristics in the context of known type 1 and type 2 inhibitors and highlight opportunities for future kinase inhibitor design.

摘要

激活环(A 环)在调节蛋白激酶的催化活性方面起着关键作用。该区域的磷酸化增强了激酶结构域的磷酸转移速率,并增加了其对 ATP 的亲和力。此外,在一些激酶中,A 环具有自动抑制功能,当未磷酸化时,它会折叠到蛋白质表面并阻止底物结合。由于其柔性性质,A 环在激酶结构域晶体结构中通常是无序的且不可追踪的。由于缺乏结构信息,这令人遗憾,因为它阻碍了药物 A 环接触的设计,在多种情况下,这已被证明是有利的。在这里,我们描述了 1.5 型激酶抑制剂“示例 172”(EX172)和 Mer 原肌球蛋白激酶(MerTK)之间的 A 环结合情况。借助晶体结构和结合动力学,我们描述了 A 环的募集如何引发两步结合机制,从而导致药物-靶标复合物具有高亲和力和长停留时间的特点。此外,1.5 型化合物具有出色的激酶组选择性,并且对 MerTK 的磷酸化形式的偏好显著高于去磷酸化形式。我们将这些独特的特征置于已知的 1 型和 2 型抑制剂的背景下进行讨论,并强调了未来激酶抑制剂设计的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b2d/7702301/f5c3fa71c18b/BCJ-477-4443-g0001.jpg

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