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Computational analyses of JAK1 kinase domain: Subtle changes in the catalytic cleft influence inhibitor specificity

机译:JAK1激酶结构域的计算分析:催化裂隙的微妙变化影响抑制剂的特异性

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The Janus kinases (JAKs) are a family of intracellular non-receptor tyrosine kinases which transmit signals by phosphorylation of downstream substrates. A myriad of cytokines can trigger the JAK-STAT pathway which influences immune response, embryonic development, and cellular transformation. Here, we built a comparative model for Jaki based on the crystal structure of Jak2 (PDB code:2B7A) and Jak3 (PDB code: 1YVJ) using the Insightll package. 3D-Profile and stereochemical analysis further verified the validity of the proposed structure. Adenosine 5'-triphosphate (ATP) was then docked into its catalytic cleft Although the shape of Jak1 kinase cleft is fairly similar to that of Jak3, we observed minute changes in the key residues of the binding interface which influenced the docking of a specific Jak3 inhibitor, WHI-P131. Superimposition of the interface residues suggested that substitution of Asp 99 (Jak3) into Clu 101 (Jak1) generated steric hindrance and a Tyr 91 to Phe 93 switch altered the shape of catalytic cleft which collectively prohibited the inhibitor binding. Furthermore, in-silico mutagenesis of these two res-idues back to Asp and Tyr enabled Jak1 to accommodate WH1-P131. These results may provide clues for the design and optimization of selective kinase inhibitors.
机译:Janus激酶(JAK)是细胞内非受体酪氨酸激酶的家族,其通过下游底物的磷酸化来传递信号。无数种细胞因子可以触发JAK-STAT途径,从而影响免疫反应,胚胎发育和细胞转化。在这里,我们使用Insightll软件包基于Jak2(PDB代码:2B7A)和Jak3(PDB代码:1YVJ)的晶体结构为Jaki建立了比较模型。 3D-Profile和立体化学分析进一步验证了所提出结构的有效性。然后将5'-三磷酸腺苷(ATP)停泊在其催化裂隙中尽管Jak1激酶裂隙的形状与Jak3相当,但我们观察到结合界面关键残基的微小变化影响了特定Jak3的停泊抑制剂,WHI-P131。界面残基的叠加表明将Asp 99(Jak3)替换为Clu 101(Jak1)会产生空间位阻,而Tyr 91到Phe 93的转换会改变催化裂隙的形状,从而共同阻止了抑制剂的结合。此外,这两个残基通过计算机电子诱变回到Asp和Tyr,使得Jak1能够容纳WH1-P131。这些结果可能为选择性激酶抑制剂的设计和优化提供线索。

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