功能失调抗氧化系统中人超氧化物歧化酶 1 潜在抑制剂的合理虚拟筛选、ADME 和分子模拟研究

Ayodele Sunday Alonge, Toluwase Hezekiah Fatoki, Iseoluwa Isaac Ajayi, Ibrahim Olabayode Saliu, Stanley Chukwuejim, Courage Dele Famusiwa, O. Adetuyi, Ohunene Esther Joseph
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摘要

超氧化物歧化酶 1(SOD1)是一种依赖铜的酶,能促进超氧阴离子转化为过氧化氢和氧气,从而调节超氧化物的水平。SOD1 的功能障碍与神经退行性疾病(如肌萎缩性脊髓侧索硬化症)以及肝癌和肺癌有关。这项研究旨在利用硅学合理虚拟富集筛选、药代动力学、对接和分子动态模拟(MDS)来确定 SOD1 调节剂。研究结果发现了 38 种化合物,主要表现出较高的胃肠道吸收性,但大多不能透过血脑屏障,只有少数表现出对选定细胞色素 P450 的抑制作用。分子对接显示,化合物 1(PubChem CID:36791369)的结合亲和力最高(-6.771 kcal-mol-1),其次是化合物 19(PubChem CID:30935)的-6.468 kcal-mol-1,以及化合物 20(PubChem CID:135744521)的-5.978 kcal-mol-1。MDS 和分子力学/广义伯恩比表面积分析表明,化合物 CID 36791369 - SOD1 复合物和化合物 CID 30935 - SOD1 复合物在 0 ns 和 100 ns 的模拟生理条件下保持稳定且能量有利。总之,本研究发现了 38 种化合物,根据总体分析,其中化合物 SN5、SN6、SN7、SN12 和 SN25 成为 SOD1 的潜在抑制剂。有必要进一步研究这前五种化合物在体外和体内对 SOD1 的治疗效果。
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Rational virtual screening, ADME, and molecular simulation studies of potential inhibitors of human superoxide dismutase 1 in a dysfunctional antioxidant system
Superoxide dismutase 1 (SOD1), a copper-dependent enzyme, facilitates the conversion of superoxide anions into hydrogen peroxide and oxygen, thereby regulating superoxide levels. Dysfunctions in SOD1 have been linked to neurodegenerative disorders such as amyotrophic lateral sclerosis, as well as liver and lung cancers. This study aimed to identify SOD1 modulators using in silico rational virtual enrichment screening, pharmacokinetics, docking, and molecular dynamic simulation (MDS). The findings yielded 38 compounds, predominantly exhibiting high gastrointestinal absorption but mostly non-permeable across the blood–brain barrier, with few exhibiting inhibitory effects on selected cytochrome P450s. Molecular docking revealed that compound 1 (PubChem CID: 36791369) exhibited the highest binding affinity (−6.771 kcal·mol-1), followed by compound 19 (PubChem CID: 30935) with −6.468 kcal·mol-1, and compound 20 (PubChem CID: 135744521) with −5.978 kcal·mol-1. MDS and molecular mechanics/generalized Born surface area analysis indicated that the compound CID 36791369 – SOD1 complex and compound CID 30935 – SOD1 complex remained stable and energetically favorable under simulated physiological conditions at 0 ns and 100 ns. In conclusion, this study identified 38 compounds, among which compounds SN5, SN6, SN7, SN12, and SN25 emerged as potential inhibitors of SOD1 based on overall analyses. Further, research will be necessary to investigate the therapeutic effectiveness of these top five compounds in vitro and in vivo against SOD1.
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