Centre for Biosciences, Central University of Punjab, Bathinda, 151001, India.
Department of Higher Education, Shimla, Himachal Pradesh, India.
Mol Cell Biochem. 2019 Jun;456(1-2):1-14. doi: 10.1007/s11010-018-3485-7. Epub 2018 Dec 3.
Neuroblastoma is a childhood tumor arising from developing a sympathetic nervous system and causes around 10% of pediatric tumors. Despite advancement in the use of sophisticated techniques in molecular biology, neuroblastoma patient's survivability rate is very less. Notch pathway is significant in upholding cell maintenance and developmental process of organs. Notch-1 proteins are a ligand-activated transmembrane receptor which decides the fate of the cell. Notch signaling leads to transcription of genes which indulged in numerous diseases including tumor progression. Ganoderic acid, a lanosterol triterpene, isolated from fungus Ganoderma lucidum with a wide range of medicinal values. In the present study, various isoforms of the ganoderic acid and natural inhibitors were docked by molecular docking using Maestro 9 in the Notch-1 signaling pathway. The receptor-based molecular docking exposed the best binding interaction of Notch-1 with ganoderic acid A with GScore (- 8.088), kcal/mol, Lipophilic EvdW (- 1.74), Electro (- 1.18), Glide emodel (- 89.944) with the active participation of Arg 189, Arg 199, Glu 232 residues. On the other hand natural inhibitor, curcumin has GScore (- 7.644), kcal/mol, Lipophilic EvdW (- 2.19), Electro (- 0.73), Glide emodel (- 70.957) with Arg 75 residues involved in docking. The ligand binding affinity of ganoderic acid A in Notch-1 is calculated using MM-GBSA (- 76.782), whereas curcumin has (- 72.815) kcal/mol. The QikProp analyzed the various drug-likeness parameters such as absorption, distribution, metabolism, excretion, and toxicity (ADME/T) and isoforms of ganoderic acid require some modification to fall under Lipinski rule. The ganoderic acid A and curcumin were the best-docked among different compounds and exhibits downregulation in Notch-1 mRNA expression and inhibits proliferation, viability, and ROS activity in IMR-32 cells.
神经母细胞瘤是一种起源于发育中的交感神经系统的儿童肿瘤,约占儿童肿瘤的 10%。尽管在分子生物学中使用复杂技术方面取得了进展,但神经母细胞瘤患者的存活率仍然很低。Notch 途径在维持细胞维持和器官发育过程中起着重要作用。Notch-1 蛋白是一种配体激活的跨膜受体,决定着细胞的命运。Notch 信号转导导致参与多种疾病(包括肿瘤进展)的基因转录。灵芝酸是一种从灵芝真菌中分离出来的羊毛甾醇三萜,具有广泛的药用价值。在本研究中,使用 Maestro 9 通过分子对接对接了各种灵芝酸异构体和天然抑制剂在 Notch-1 信号通路中的各种异构体和天然抑制剂。基于受体的分子对接揭示了灵芝酸 A 与 Notch-1 的最佳结合相互作用,GScore(-8.088),kcal/mol,疏水性 EvdW(-1.74),电(-1.18),Glide emodel(-89.944),并积极参与 Arg 189、Arg 199、Glu 232 残基。另一方面,天然抑制剂姜黄素的 GScore(-7.644),kcal/mol,疏水性 EvdW(-2.19),电(-0.73),Glide emodel(-70.957)与 Arg 75 残基参与对接。灵芝酸 A 在 Notch-1 中的配体结合亲和力使用 MM-GBSA(-76.782)计算,而姜黄素具有(-72.815)kcal/mol。QikProp 分析了各种药物样参数,如吸收、分布、代谢、排泄和毒性(ADME/T),灵芝酸的异构体需要进行一些修改才能符合 Lipinski 规则。灵芝酸 A 和姜黄素是不同化合物中最好的对接物,并在 IMR-32 细胞中下调 Notch-1 mRNA 表达,抑制增殖、活力和 ROS 活性。