Ibrahim Sabrin R M, Bagalagel Alaa A, Diri Reem M, Noor Ahmad O, Bakhsh Hussain T, Muhammad Yosra A, Mohamed Gamal A, Omar Abdelsattar M
Department of Chemistry, Preparatory Year Program, Batterjee Medical College, Jeddah 21442, Saudi Arabia.
Department of Pharmacognosy, Faculty of Pharmacy, Assiut University, Assiut 71526, Egypt.
J Fungi (Basel). 2022 Apr 24;8(5):443. doi: 10.3390/jof8050443.
Cancer represents one of the most prevalent causes of global death. CK2 (casein kinase 2) activation boosted cancer proliferation and progression. Therefore, CK2 inhibition can have a crucial role in prohibiting cancer progression and enhancing apoptosis. Fungi have gained vast interest as a wealthy pool of anticancer metabolites that could particularly target various cancer progression-linked signaling pathways. Phenalenones are a unique class of secondary metabolites that possess diverse bioactivities. In the current work, the CK2 inhibitory capacity of 33 fungal phenalenones was explored using computational studies. After evaluating the usefulness of the compounds as enzyme inhibitors by ADMET prediction, the compounds were prepared for molecular docking in the CK2-α1 crystal structure (PDB: 7BU4). Molecular dynamic simulation was performed on the top two scoring compounds to evaluate their binding affinity and protein stability through a simulated physiological environment. Compound had a superior binding affinity to the co-crystallized ligand (). The improved affinity can be attributed to the fact that the aliphatic chain makes additional contact with Asp120 in a pocket distant from the active site.
癌症是全球最常见的死亡原因之一。酪蛋白激酶2(CK2)的激活促进了癌症的增殖和进展。因此,抑制CK2在阻止癌症进展和增强细胞凋亡方面可能起着关键作用。真菌作为抗癌代谢物的丰富来源,引起了广泛关注,这些代谢物可以特别针对各种与癌症进展相关的信号通路。菲并呋喃酮是一类独特的次生代谢物,具有多种生物活性。在当前的工作中,通过计算研究探索了33种真菌菲并呋喃酮的CK2抑制能力。通过ADMET预测评估了这些化合物作为酶抑制剂的有效性后,将这些化合物准备用于CK2-α1晶体结构(PDB:7BU4)中的分子对接。对得分最高的两种化合物进行了分子动力学模拟,以通过模拟生理环境评估它们的结合亲和力和蛋白质稳定性。化合物 与共结晶配体()具有更高的结合亲和力。亲和力的提高可归因于脂肪族链在远离活性位点的口袋中与Asp120进行了额外的接触。