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基于海洋的候选物作为潜在的 RSK1 抑制剂:一项计算研究。

Marine-Based Candidates as Potential RSK1 Inhibitors: A Computational Study.

机构信息

Department of Basic Medical Sciences, Faculty of Medicine, Aqaba Medical Sciences University, Aqaba 11191, Jordan.

Institute of Pharmaceutical Biology and Biotechnology, Heinrich-Heine University, Universitätsstrasse 1, 40225 Düsseldorf, Germany.

出版信息

Molecules. 2022 Dec 26;28(1):202. doi: 10.3390/molecules28010202.

Abstract

Manzamines are chemically related compounds extracted from the methanolic extract of species. Seven compounds were identified by our research group and are being characterized. As their biological target is unknown, this work is based on previous screening work performed by Mayer et al., who revealed that manzamine A could be an inhibitor of RSK1 kinase. Within this work, the RSK1 -terminal kinase domain is exploited as a target for our work and the seven compounds are docked using Autodock Vina software. The results show that one of the most active compounds, Manzamine A -oxide (), with an IC = 3.1 μM, displayed the highest docking score. In addition, the compounds with docking scores lower than the co-crystalized ligand AMP-PCP (-7.5 and -8.0 kcal/mol) for ircinial E () and nakadomarin A () were found to be inferior in activity in the biological assay. The docking results successfully managed to predict the activities of four compounds, and their in silico results were in concordance with their biological data. The β-carboline ring showed noticeable receptor binding, which could explain its reported biological activities, while the lipophilic side of the compound was found to fit well inside the hydrophobic active site.

摘要

曼萨宁是从 种的甲醇提取物中提取的化学相关化合物。我们的研究小组已经鉴定了七种化合物,并正在对其进行表征。由于它们的生物靶标未知,这项工作是基于 Mayer 等人之前进行的筛选工作,他们发现曼萨宁 A 可能是 RSK1 激酶的抑制剂。在这项工作中,RSK1 末端激酶结构域被用作我们工作的靶点,并用 Autodock Vina 软件对接了这七种化合物。结果表明,最活跃的化合物之一曼萨宁 A-氧化物 () 的 IC = 3.1 μM,表现出最高的对接评分。此外,与 ircinial E () 和 nakadomarin A () 的共结晶配体 AMP-PCP (-7.5 和 -8.0 kcal/mol) 的对接评分较低的化合物在生物测定中显示出较低的活性。对接结果成功地预测了四种化合物的活性,它们的计算结果与生物数据一致。β-咔啉环显示出明显的受体结合,这可以解释其报道的生物活性,而化合物的亲脂性侧链被发现很好地适合于疏水性活性位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72ea/9822162/2132451d1601/molecules-28-00202-g001.jpg

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