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A novel allosteric inhibitor that prevents IKKβ activation

机译:防止IKKβ激活的新型变构抑制剂

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摘要

I kappa B kinase β (IKKβ) is one of the primary targets to regulate canonical NF-κB activity. The misregulation of NF-κB is associated with various diseases, including chronic inflammation and cancers. Most of the known IKKβ inhibitors target its active form and suffer from poor selectivity. In the present study, we aim to design inhibitors that can bind to the IKKβ inactive form and block its activation. We identified a potential allosteric site between the kinase domain (KD) and ubiquitin-like domain (ULD) of human IKKβ and used it to virtually screen a chemical library for allosteric inhibitors. Among the 133 compounds tested, 16 inhibited NF-κB activity by over 50% at 50 μM in a reporter gene assay. Further quantitative measurements and cytotoxicity study gave one compound >124 (3,4-dichloro-2-ethoxy-N-(2,2,6,6-tetramethylpiperidin-4-yl)benzenesulfonamide) which specifically targets the IKKβ inactive form. In cells, >124 inhibited IκBα phosphorylation and NF-κB transcriptional activity for the reporter gene with an IC50 of 35 μM by decreasing the phosphorylation level of Ser177/181 on IKKβ and blocking its activation upon TNFα stimulation. Molecular dynamics simulations demonstrated that >124 binds to the pocket between KD and ULD in the inactive conformation of IKKβ rather than the active conformation. As the first allosteric inhibitor that prevents IKKβ activation, >124 provides a good starting point for further inhibitor discovery and a probe for IKKβ enzyme cycle and regulatory mechanism study.
机译:IκB激酶β(IKKβ)是调节经典NF-κB活性的主要靶标之一。 NF-κB的失调与多种疾病有关,包括慢性炎症和癌症。大多数已知的IKKβ抑制剂都以其活性形式为靶,并且选择性差。在本研究中,我们旨在设计可与IKKβ无活性形式结合并阻断其活化的抑制剂。我们确定了人IKKβ的激酶结构域(KD)和泛素样结构域(ULD)之间的潜在变构位点,并用它来筛选化学库中的变构抑制剂。在报告基因试验中,在测试的133种化合物中,有16种在50μM时抑制NF-κB活性超过50%。进一步的定量测量和细胞毒性研究产生了一种化合物> 124 (3,4-二氯-2-乙氧基-N-(2,2,6,6-四甲基哌啶-4-基)苯磺酰胺) IKKβ失活形式。在细胞中,> 124 通过降低IKKβ上Ser177 / 181的磷酸化水平并在TNFα刺激下阻断其激活,从而抑制了报道基因的IκBα磷酸化和NF-κB转录活性,IC50为35μM。分子动力学模拟表明> 124 以IKKβ的非活性构象而非活性构象与KD和ULD之间的口袋结合。作为第一个阻止IKKβ活化的变构抑制剂,> 124 为进一步发现抑制剂以及为IKKβ酶循环和调控机制研究提供了一个良好的起点。

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