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富含脯氨酸的酪氨酸激酶2(PYK2)的结构表征揭示了一种独特的(DFG-out)构象并有助于抑制剂设计。

Structural characterization of proline-rich tyrosine kinase 2 (PYK2) reveals a unique (DFG-out) conformation and enables inhibitor design.

作者信息

Han Seungil, Mistry Anil, Chang Jeanne S, Cunningham David, Griffor Matt, Bonnette Peter C, Wang Hong, Chrunyk Boris A, Aspnes Gary E, Walker Daniel P, Brosius Arthur D, Buckbinder Leonard

机构信息

Pfizer Global Research & Development, Groton, CT 06340, USA.

出版信息

J Biol Chem. 2009 May 8;284(19):13193-201. doi: 10.1074/jbc.M809038200. Epub 2009 Feb 25.

Abstract

Proline-rich tyrosine kinase 2 (PYK2) is a cytoplasmic, non-receptor tyrosine kinase implicated in multiple signaling pathways. It is a negative regulator of osteogenesis and considered a viable drug target for osteoporosis treatment. The high-resolution structures of the human PYK2 kinase domain with different inhibitor complexes establish the conventional bilobal kinase architecture and show the conformational variability of the DFG loop. The basis for the lack of selectivity for the classical kinase inhibitor, PF-431396, within the FAK family is explained by our structural analyses. Importantly, the novel DFG-out conformation with two diarylurea inhibitors (BIRB796, PF-4618433) reveals a distinct subclass of non-receptor tyrosine kinases identifiable by the gatekeeper Met-502 and the unique hinge loop conformation of Leu-504. This is the first example of a leucine residue in the hinge loop that blocks the ATP binding site in the DFG-out conformation. Our structural, biophysical, and pharmacological studies suggest that the unique features of the DFG motif, including Leu-504 hinge-loop variability, can be exploited for the development of selective protein kinase inhibitors.

摘要

富含脯氨酸的酪氨酸激酶2(PYK2)是一种参与多种信号通路的胞质非受体酪氨酸激酶。它是骨生成的负调节因子,被认为是治疗骨质疏松症的一个可行药物靶点。具有不同抑制剂复合物的人PYK2激酶结构域的高分辨率结构确立了传统的双叶激酶结构,并显示了DFG环的构象变异性。我们的结构分析解释了在FAK家族中对经典激酶抑制剂PF-431396缺乏选择性的原因。重要的是,与两种二芳基脲抑制剂(BIRB796、PF-4618433)形成的新型DFG-out构象揭示了一类独特的非受体酪氨酸激酶,其可通过守门人甲硫氨酸502和亮氨酸504独特的铰链环构象来识别。这是铰链环中亮氨酸残基在DFG-out构象中阻断ATP结合位点的首个例子。我们的结构、生物物理和药理学研究表明,DFG基序的独特特征,包括亮氨酸504铰链环变异性,可用于开发选择性蛋白激酶抑制剂。

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