Multi-stage structure-based virtual screening approach combining 3D pharmacophore, docking and molecular dynamic simulation towards the identification of potential selective PARP-1 inhibitors

IF 4.3 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Mahmoud A. El Hassab, Wagdy M. Eldehna, Ghaneya S. Hassan, Sahar M. Abou-Seri
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Abstract

Presently, humanity is confronted with a range of diseases that have high death rates, especially those linked to cancerous growths. Several enzymes and proteins have been discovered as highly attractive targets for cancer treatment. The PARP family consists of 17 members and plays a crucial role in repairing DNA damage, which enables the survival of cancer cells. PARP-1 and, to a lesser extent, PARP-2 display above 90% activity in response to DNA damage, thereby distinguishing them apart from other members of the PARP family. Elevated levels of PARP-1 were observed in many types of tumor cells, such as breast, lung, ovarian, prostate, and melanomas. In an attempt to provide a future guide for developing selective inhibitors for PARP-1 over PARP-2 to minimize the resulting side effects from PARP-2 inhibitors, we constructed a structure-based virtual screening approach (SBVS). Firstly. A 3D pharmacophore was constructed based on the interaction of the selective inhibitor compound IV. After that, a database of nearly 450,000 phthalimide-containing inhibitors was screened through the validated pharmacophore, and 165 compounds were retrieved. The retrieved compounds were docked into the active site of PARP-1 where only 5 compounds MWGS-1-5 achieved a favorable docking score than the reference IV (-16.8 Kcal/mol). Redocking of the five compounds should have excellent selectivity for PARP-1 over PARP-2, especially compound MWGS-1. Further endorsement via molecular dynamics has proven higher affinity and selectivity for MWGS-1 towards PARP-1 over PARP-2, in which PARP-1- MWGS-1 and PARP-1- MWGS-1 achieved RMSD values of 1.42 and 2.8 Å, respectively.

结合三维药效团、对接和分子动力学模拟的基于多阶段结构的虚拟筛选方法用于潜在选择性PARP-1抑制剂的鉴定。
目前,人类面临着一系列高死亡率的疾病,特别是那些与癌症生长有关的疾病。一些酶和蛋白质已经被发现是非常有吸引力的癌症治疗靶点。PARP家族由17个成员组成,在修复DNA损伤方面起着至关重要的作用,这使得癌细胞能够存活。PARP-1和较小程度的PARP-2在DNA损伤反应中表现出90%以上的活性,从而将它们与PARP家族的其他成员区分开来。在许多类型的肿瘤细胞中都观察到PARP-1水平升高,如乳腺、肺、卵巢、前列腺和黑色素瘤。为了提供未来开发PARP-1选择性抑制剂而不是PARP-2的指南,以尽量减少PARP-2抑制剂产生的副作用,我们构建了基于结构的虚拟筛选方法(SBVS)。首先。基于选择性抑制剂化合物IV的相互作用构建三维药效团,通过验证药效团筛选近45万个含邻苯二甲酸亚胺抑制剂数据库,检索到165个化合物。其中,只有5个化合物MWGS-1-5的对接得分高于参比物IV (-16.8 Kcal/mol)。这5个化合物对PARP-1的选择性优于PARP-2,尤其是化合物MWGS-1。通过分子动力学进一步证实了MWGS-1对PARP-1的亲和力和选择性高于PARP-2,其中PARP-1- MWGS-1和PARP-1- MWGS-1的RMSD值分别为1.42和2.8 Å。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BMC Chemistry
BMC Chemistry Chemistry-General Chemistry
CiteScore
5.30
自引率
2.20%
发文量
92
审稿时长
27 weeks
期刊介绍: BMC Chemistry, formerly known as Chemistry Central Journal, is now part of the BMC series journals family. Chemistry Central Journal has served the chemistry community as a trusted open access resource for more than 10 years – and we are delighted to announce the next step on its journey. In January 2019 the journal has been renamed BMC Chemistry and now strengthens the BMC series footprint in the physical sciences by publishing quality articles and by pushing the boundaries of open chemistry.
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