Taghvaei Somayye, Sabouni Farzaneh, Minuchehr Zarrin
Department of Medical Biotechnology, National Institute of Genetic Engineering and Biotechnology, Tehran, Iran.
Department of Systems Biotechnology, National Institute of Genetic Engineering and Biotechnology, Tehran, Iran.
Front Pharmacol. 2022 Apr 1;13:817990. doi: 10.3389/fphar.2022.817990. eCollection 2022.
Sentrin-specific protease -2 (SENP2) is involved in deSUMOylation. Increased deSUMOylation in murine hearts by upregulation resulted in cardiac dysfunction and congenital heart defects. Natural compounds via regulating cell proliferation and survival, induce cell cycle cessation, cell death, apoptosis, and producing reactive oxygen species and various enzyme systems cause disease prevention. Then, natural compounds can be suitable inhibitors and since SENP2 is a protein involved in heart disease, so our aim was inhibition of SENP2 by natural products for heart disease treatment. Material and methods: Molecular docking and molecular dynamics simulation of natural products i.e. Gallic acid (GA), Caffeic acid (CA), Thymoquinone (TQ), Betanin, Betanidin, Fisetin, and Ebselen were done to evaluate the SENP2 inhibitory effect of these natural products. The toxicity of compounds was also predicted. Results: The results showed that Betanin constituted a stable complex with SENP2 active site as it revealed low RMSD, high binding energy, and hydrogen bonds. Further, as compared to Ebselen, Betanin demonstrated low toxicity, formed a stable complex with SENP2 via four to seven hydrogen bonds, and constituted more stable MD plots. Therefore, depending upon the outcomes presented herein, Betanin significantly inhibited SENP2 and hence may be considered as a suitable natural compound for the treatment of heart failure. Further clinical trials must be conducted to validate its use as a potential SENP2 inhibitor.
泛素特异性蛋白酶-2(SENP2)参与去SUMO化过程。通过上调使小鼠心脏中的去SUMO化增加会导致心脏功能障碍和先天性心脏缺陷。天然化合物通过调节细胞增殖和存活、诱导细胞周期停滞、细胞死亡、凋亡以及产生活性氧和各种酶系统来预防疾病。因此,天然化合物可能是合适的抑制剂,由于SENP2是一种与心脏病相关的蛋白质,所以我们的目标是利用天然产物抑制SENP2来治疗心脏病。材料与方法:对天然产物没食子酸(GA)、咖啡酸(CA)、百里醌(TQ)、甜菜红、甜菜苷元、非瑟酮和依布硒仑进行分子对接和分子动力学模拟,以评估这些天然产物对SENP2的抑制作用。还预测了化合物的毒性。结果:结果表明,甜菜红与SENP2活性位点形成了稳定的复合物,因为它显示出低均方根偏差(RMSD)、高结合能和氢键。此外,与依布硒仑相比,甜菜红毒性较低,通过四到七个氢键与SENP2形成稳定的复合物,并构成更稳定的分子动力学图。因此,根据本文给出的结果,甜菜红显著抑制SENP2,因此可被视为治疗心力衰竭的合适天然化合物。必须进行进一步的临床试验以验证其作为潜在SENP2抑制剂的用途。