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Selectively targeting an inactive conformation of interleukin-2-inducible T-cell kinase by allosteric inhibitors

机译:变构抑制剂选择性靶向白介素2诱导的T细胞激酶的失活构象

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pITK (interleukin-2-inducible T-cell kinase) is a critical component of signal transduction in T-cells and has a well-validated role in their proliferation, cytokine release and chemotaxis. ITK is an attractive target for the treatment of T-cell-mediated inflammatory diseases. In the present study we describe the discovery of kinase inhibitors that preferentially bind to an allosteric pocket of ITK. The novel ITK allosteric site was characterized by NMR, surface plasmon resonance, isothermal titration calorimetry, enzymology and X-ray crystallography. Initial screening hits bound to both the allosteric pocket and the ATP site. Successful lead optimization was achieved by improving the contribution of the allosteric component to the overall inhibition. NMR competition experiments demonstrated that the dual-site binders showed higher affinity for the allosteric site compared with the ATP site. Moreover, an optimized inhibitor displayed non-competitive inhibition with respect to ATP as shown by steady-state enzyme kinetics. The activity of the isolated kinase domain and auto-activation of the full-length enzyme were inhibited with similar potency. However, inhibition of the activated full-length enzyme was weaker, presumably because the allosteric site is altered when ITK becomes activated. An optimized lead showed exquisite kinome selectivity and is efficacious in human whole blood and proximal cell-based assays./p
机译:pITK(白介素2诱导型T细胞激酶)是T细胞信号转导的关键组成部分,在其增殖,细胞因子释放和趋化性方面具有公认的作用。 ITK是治疗T细胞介导的炎性疾病的有吸引力的靶标。在本研究中,我们描述了优先结合ITK变构口袋的激酶抑制剂的发现。新的ITK变构位点的特点是NMR,表面等离振子共振,等温滴定量热法,酶学和X射线晶体学。初步筛选命中绑定到变构口袋和ATP站点。通过改善变构成分对总体抑制作用的贡献,成功实现了前导优化。 NMR竞争实验表明,与ATP位点相比,双位结合物对变构位点的亲和力更高。此外,如稳态酶动力学所示,优化的抑制剂对ATP表现出非竞争性抑制作用。分离的激酶结构域的活性和全长酶的自激活以相似的效力被抑制。但是,对活化的全长酶的抑制作用较弱,可能是因为当ITK活化后,变构位点也发生了改变。优化的铅显示出精巧的激酶组选择性,对人体全血和基于近端细胞的测定均有效。
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