Ahmad Syed Sayeed, Lim Jeong Ho, Choi Inho, Lee Eun Ju
Department of Medical Biotechnology, Yeungnam University, Gyeongsan, 38541, South Korea.
Research Institute of Cell Culture, Yeungnam University, Gyeongsan, 38541, South Korea.
Mol Divers. 2024 Dec;28(6):4425-4439. doi: 10.1007/s11030-024-10825-9. Epub 2024 Jun 21.
Skeletal muscle (SM) contains a diverse population of muscle stem (or satellite) cells, which are essential for the maintenance of muscle tissue and positively regulated by prostaglandin E2 (PGE2). However, in aged SM, PGE2 levels are reduced due to increased prostaglandin catabolism by 15-hydroxyprostaglandin dehydrogenase (15-PGDH), a negative regulator of SM tissue repair and regeneration. Screening of a library of 80,617 natural compounds in the ZINC database against 15-PGDH was conducted from PyRx. Further, drug-likeness rules, including those of Lipinski, Ghose, Veber, Egan, and Muegge were performed. The selected complex was forwarded for MD simulations up to 100ns. Based on free energy of binding obtained from docking revealed that ZINC14557836 and ZINC14638400 more potently inhibiting to 15-PGDH than SW033291 (the control and high-affinity inhibitor of 15-PGDH). The free energies of binding obtained from PyRx for 15-PGDH-ZINC14557836, 15-PGDH-ZINC14638400, and 15-PGDH-SW033291 complexes were - 10.30, -9.80, and - 8.0 kcal/mol, respectively. Root mean square deviations (RMSDs), root mean square fluctuations (RMSFs), radii of gyration (Rg), solvent-accessible surface areas (SASAs), and H-bond parameters obtained by 100 ns MD simulations predicted ZINC14557836 and ZINC14638400 more stably complexed with 15-PGDH than SW033291. The several parameters, including physicochemical properties and drug-likenesses, were within acceptable limits, and ZINC14557836 and ZINC14638400 also satisfied other drug-likeness rules, including those of Lipinski, Ghose, Veber, Egan, and Muegge. These findings suggest that ZINC14557836 and ZINC14638400 provide starting points for the development of medications that increase SM regeneration and muscle stem (or satellite) cell numbers by inhibiting 15-PGDH.
骨骼肌(SM)包含多种肌肉干细胞(或卫星细胞),这些细胞对于维持肌肉组织至关重要,并受到前列腺素E2(PGE2)的正向调节。然而,在衰老的骨骼肌中,由于15-羟基前列腺素脱氢酶(15-PGDH)(一种骨骼肌组织修复和再生的负调节因子)导致前列腺素分解代谢增加,PGE2水平降低。利用PyRx对ZINC数据库中的80617种天然化合物文库针对15-PGDH进行了筛选。此外,还执行了包括Lipinski、Ghose、Veber、Egan和Muegge等的类药规则。将选定的复合物进行长达100纳秒的分子动力学(MD)模拟。基于对接获得的结合自由能表明,ZINC14557836和ZINC14638400比SW033291(15-PGDH的对照和高亲和力抑制剂)更有效地抑制15-PGDH。通过PyRx获得的15-PGDH-ZINC14557836、15-PGDH-ZINC14638400和15-PGDH-SW033291复合物的结合自由能分别为-10.30、-9.80和-8.0千卡/摩尔。通过100纳秒的分子动力学模拟获得的均方根偏差(RMSD)、均方根波动(RMSF)、回转半径(Rg)、溶剂可及表面积(SASA)和氢键参数预测,ZINC14557836和ZINC14638400与15-PGDH形成的复合物比SW033291更稳定。包括物理化学性质和类药性在内的几个参数均在可接受范围内,ZINC14557836和ZINC14638400也满足其他类药规则,包括Lipinski、Ghose、Veber、Egan和Muegge的规则。这些发现表明,ZINC14557836和ZINC14638400为开发通过抑制15-PGDH来增加骨骼肌再生和肌肉干细胞(或卫星细胞)数量的药物提供了起点。