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Inhibition of IKKβ by celastrol and its analogues – an in silico and in vitro approach

机译:celastrol及其类似物抑制IKKβ的作用–计算机和体外方法

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摘要

>Context: Alzheimer’s disease (AD) is the most common form of dementia affecting the aged population and neuroinflammation is one of the most observed AD pathologies. NF-κB is the central regulator of inflammation and inhibitor κB kinase (IKK) is the converging point in NF-κB activation. Celastrol is a natural triterpene used as a treatment for inflammatory conditions.>Objective: This study determines the neuroprotective and inhibitory effect of celastrol on amyloid beta1-42 (Aβ1-42) induced cytotoxicity and IKKβ activity, respectively.>Materials and methods: Retinoic acid differentiated IMR-32 cells were treated with celastrol (1 μM) before treatment with Aβ1-42 (IC30 10 μM) for 24 h. The cytotoxicity and IKK phosphorylation were measured by MTT and western blotting analysis, respectively. We screened 36 celastrol analogues for the IKKβ inhibition by molecular docking and evaluated their drug like properties to delineate the neuroprotective effects.>Results: Celastrol (1 μM) inhibited Aβ1-42 (10 μM) induced IκBα phosphorylation and protected IMR-32 cells from cell death. Celastrol and 25 analogues showed strong binding affinity with IKKβ as evidenced by strong hydrogen-bonding interactions with critical active site residues. All the 25 analogues displayed strong anti-inflammatory properties but only 11 analogues showed drug-likeness. Collectively, molecule 15 has highest binding affinity, CNS activity and more drug likeness than parent compound celastrol.>Discussion and conclusion: The decreased expression of pIκBα in celastrol pretreated cells affirms the functional representation of inhibited IKKβ activity in these cells. The neuroprotective potentials of celastrol and its analogues may be related to IKK inhibition.
机译:>背景:阿尔茨海默氏病(AD)是影响老年人口的最常见的痴呆形式,而神经炎症是最常见的AD病理之一。 NF-κB是炎症的中枢调节剂,而抑制剂κB激酶(IKK)是NF-κB激活的汇合点。 Celastrol是一种天然三萜烯,可用于治疗炎症。>目的:该研究确定Celastrol对淀粉样蛋白β1-42(Aβ1-42)诱导的细胞毒性和IKKβ活性的神经保护和抑制作用。 >材料和方法:将视黄酸分化的IMR-32细胞用Celastrol(1μM)处理,然后用Aβ1-42(IC3010μM)处理24μh。通过MTT和蛋白质印迹分析分别测量细胞毒性和IKK磷酸化。我们通过分子对接筛选了36种Celastrol类似物对IKKβ的抑制作用,并评估了它们的药物样性质,以描述其神经保护作用。>结果: Celastrol(1μm)抑制Aβ1-42(10μμM)诱导的IκBα磷酸化和保护IMR-32细胞免于细胞死亡。 Celastrol和25个类似物显示出与IKKβ的强结合亲和力,这与关键活性位点残基之间的强氢键相互作用证明了这一点。所有25种类似物均显示出很强的抗炎特性,但只有11种类似物表现出药物样。总的来说,分子15具有比亲代化合物Celastrol最高的结合亲和力,CNS活性和更多的药物相似性。>讨论和结论:在Celastrol预处理的细胞中pIκBα的表达降低证实了这些分子中IKKβ活性被抑制的功能表现。细胞。 celastrol及其类似物的神经保护潜力可能与IKK抑制有关。

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