De Novo Class of Momordicoside with Potent and Selective Tumor Cell Growth Inhibitory Activity as Pyruvate Kinase Muscle Isozyme 2 and Anti-apoptotic Myeloid Leukemia 1 Inhibitors

Tope Abraham Ibisanmi, ‪Jamiu Olaseni Aribisala, Peace Ifeoma Odjegba, Damilola Ademuyi, Ayomide Akinmusere, Faith I Ajayi
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Abstract

The difficulty in treating cancer resides in targeting abnormal proliferation while protecting normal proliferation, necessitating a thorough comprehension of the normal and malignant mechanisms that promote cell growth and proliferation. Targeting cell death signaling pathways such as glycolytic and mitochondrial apoptosis is the hallmark of many cancers, the aim of which this research is ready to evaluate. Atomistic molecular dynamics simulation of top hits after molecular docking and ADMET profiling of the ligands were performed for main protease-hit complexes. Docking scores of ligands used against PKM2 range from –9.36 to –12.1 kcal/mol, wherein momordicoside-F2 had the highest score (2.1 kcal/mol), performing better than the FDA-approved drug benserazide. Likewise, the scores ranged between –8.51 and –12.05 kcal/mol for Anti-apoptotic Myeloid Leukemia 1 (MCL-1), with momordicoside-F1 being the highest-ranked compound. The RMSD plots depicted stable trajectories with consistent and minor fluctuations implying that the protein (PKM2 and MCL1) backbone underwent minor structural perturbations. In addition, several significant peaks of increased fluctuations were also observed, indicating their increased interaction potential, implying that the ligands could adapt well in the protein's binding pocket. The SASA analysis results show that the ligands retained inside their shallow binding pocket. The phylogenetic tree obtained implies the likelihood of recurring results of the in silico profiling. Conclusively, this research unveils that Mormordicoside F1 shows good stability with MCL-1, likewise, momordicoside-F2 against PKM2. These hits can be a better re-purposing option.
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作为丙酮酸激酶肌同工酶2和抗凋亡髓系白血病1抑制剂,苦瓜苷类具有有效和选择性肿瘤细胞生长抑制活性
治疗癌症的难点在于如何在保护正常增殖的同时靶向异常增殖,这就需要深入了解促进细胞生长和增殖的正常和恶性机制。靶向细胞死亡信号通路如糖酵解和线粒体凋亡是许多癌症的标志,本研究的目的是准备评估。对主要的蛋白酶命中配合物进行了分子对接后顶部命中的原子分子动力学模拟和配体的ADMET谱分析。与PKM2的配体对接得分范围为-9.36 ~ -12.1 kcal/mol,其中momordicoside-F2得分最高(2.1 kcal/mol),优于fda批准的药物benserazide。同样,抗凋亡髓系白血病1 (MCL-1)的评分范围在-8.51和-12.05 kcal/mol之间,其中momordicoside-F1是排名最高的化合物。RMSD图描绘了稳定的轨迹,具有一致和轻微的波动,这表明蛋白质(PKM2和MCL1)主链经历了轻微的结构扰动。此外,还观察到几个显著的波动增加峰,表明它们的相互作用潜力增加,这意味着配体可以很好地适应蛋白质的结合口袋。SASA分析结果表明配体保留在浅结合袋内。所得到的系统发育树暗示了硅谱分析的重复结果的可能性。总之,本研究表明Mormordicoside F1对MCL-1具有良好的稳定性,同样,Mormordicoside - f2对PKM2具有良好的稳定性。这些点击是一个更好的重新利用的选择。
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