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The unfolded protein response modulators GSK2606414 and KIRA6 are potent KIT inhibitors

机译:展开的蛋白质反应调节剂GSK2606414和Kira6是有效的试剂盒抑制剂

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IRE1, PERK, and ATF6 are the three transducers of the mammalian canonical unfolded protein response (UPR). GSK2606414 is a potent inhibitor of PERK, while KIRA6 inhibits the kinase activity of IRE1. Both molecules are frequently used to probe the biological roles of the UPR in mammalian cells. In a direct binding assay, GSK2606414 bound to the cytoplasmic domain of KIT with dissociation constants (Kd) value of 664?±?294?nM whereas KIRA6 showed a Kd value of 10.8?±?2.9?μM. In silico docking studies confirmed a compact interaction of GSK2606414 and KIRA6 with KIT ATP binding pocket. In cultured cells, GSK2606414 inhibited KIT tyrosine kinase activity at nanomolar concentrations and in a PERK-independent manner. Moreover, in contrast to other KIT inhibitors, GSK2606414 enhanced KIT endocytosis and its lysosomal degradation. Although KIRA6 also inhibited KIT at nanomolar concentrations, it did not prompt KIT degradation, and rescued KIT from GSK2606414-mediated degradation. Consistent with KIT inhibition, nanomolar concentrations of GSK2606414 and KIRA6 were sufficient to induce cell death in a KIT signaling-dependent mast cell leukemia cell line. Our data show for the first time that KIT is a shared target for two seemingly unrelated UPR inhibitors at concentrations that overlap with PERK and IRE1 inhibition. Furthermore, these data underscore discrepancies between in vitro binding measurements of kinase inhibitors and inhibition of the tyrosine kinase receptors in living cells.
机译:IS1,Perk和ATF6是哺乳动物规范展开蛋白反应(UPR)的三个传感器。 GSK2606414是一种有效的PERK抑制剂,而Kira6抑制IS1的激酶活性。两种分子经常用于探测uPR在哺乳动物细胞中的生物学作用。在直接结合测定中,GSK2606414与试剂盒的细胞质结构域结合,与解离常数(KD)值为664Ω·α≤294Ω·NM,而Kira6显示KD值为10.8?±2.9Ω·μm。在Silico对接研究中,GSK2606414和Kira6与Kit ATP绑定口袋的紧凑相互作用。在培养的细胞中,GSK2606414抑制了纳米摩尔浓度的试剂酪氨酸激酶活性,并以纯粹的方式。此外,与其他试剂盒抑制剂相反,GSK2606414增强了试剂盒内吞作用及其溶酶体降解。虽然Kira6也在纳摩尔浓度下抑制试剂盒,但它没有提示试剂盒降解,并从GSK2606414介导的降解中拯救试剂盒。与试剂盒抑制一致,GSK2606414和Kira6的纳米摩尔浓度足以在试剂盒信号传导肥大细胞白血病细胞系中诱导细胞死亡。我们的数据显示第一次套件是两个看似无关的UPR抑制剂的共享目标,其浓度与PERK和IS1抑制重叠。此外,这些数据在激酶抑制剂的体外结合测量和活细胞中抑制酪氨酸激酶受体之间的体外结合测量之间的差异差异。

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