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通过多层虚拟筛选鉴定治疗鼻窦炎的 α2-肾上腺素能受体潜在激动剂样分子。

Identification of potential agonist-like molecules for α2-adrenergic receptor by multi-layer virtual screening to combat sinusitis.

机构信息

Natural and Medical Sciences Research Center, University of Nizwa, Birkat Al-Mouz, Nizwa, 616, Oman.

Natural and Medical Sciences Research Center, University of Nizwa, Birkat Al-Mouz, Nizwa, 616, Oman; Department of Biotechnology and Genetic Engineering, Hazara University Mansehra, Dhodial, 21120, Pakistan.

出版信息

Comput Biol Med. 2023 Dec;167:107693. doi: 10.1016/j.compbiomed.2023.107693. Epub 2023 Nov 13.

Abstract

Sinusitis is one of the most common respiratory inflammatory conditions and a significant health issue that affects millions of people worldwide with a global prevalence of 10-15%. The side effects of available drug regimens of sinus infection demand the urgent development of new drug candidates to combat sinusitis. With the aim of identifying new drug-like candidates to control sinus, we have conducted multifold comprehensive screening of drug-like molecules targeting α2-adrenergic receptor (α2-AR), which serve as the primary drug target in sinusitis. By structure-based virtual screening of in-house compound's database, ten molecules (CP1-CP10) with agonistic effects for α2-AR were selected, and their binding mechanism with critical residues of α2-AR and their physicochemical properties were studied. Moreover, the process of receptor activation by these compounds and the conformational changes in α2-AR caused by these molecules, were further explored by molecular dynamic simulation. The MM-PBSA estimated free energies of compounds are higher than that of reference agonist (ΔG = -39.0 kcal/mol). Among all, CP2-CP3, CP7-CP8 and CP6 have the highest binding free energies of -78.9 kcal/mol, -77.3 kcal/mol, -75.60 kcal/mol, -64.8 kcal/mol, and -61.6 kcal/mol, respectively. While CP4 (-55.0 kcal/mol), CP5 (-49.2 kcal/mol), CP9 (-54.8 ± 0.07 kcal/mol), CP10 (-56.7 ± 0.10 kcal/mol) and CP1 (-46.0 ± 0.08 kcal/mol) also exhibited significant binding free energies. These energetically favorable binding energies indicate strong binding affinity of our compounds for α2-AR as compared to known partial agonist. Therefore, these molecules can serve as excellent drug-like candidates for sinusitis.

摘要

鼻窦炎是最常见的呼吸道炎症性疾病之一,也是一个重大的健康问题,影响着全世界数以百万计的人,其全球患病率为 10-15%。现有鼻窦感染药物治疗方案的副作用要求迫切需要开发新的药物候选物来治疗鼻窦炎。为了寻找控制鼻窦的新药物样候选物,我们针对α2-肾上腺素能受体(α2-AR)进行了多方面的综合筛选,该受体是鼻窦炎的主要药物靶点。通过对内部化合物数据库进行基于结构的虚拟筛选,选择了十个具有α2-AR激动作用的分子(CP1-CP10),并研究了它们与α2-AR关键残基的结合机制及其物理化学性质。此外,还通过分子动力学模拟进一步探讨了这些化合物激活受体的过程以及这些分子引起的α2-AR构象变化。MM-PBSA 估算的化合物自由能高于参考激动剂(ΔG=-39.0 kcal/mol)。在所有化合物中,CP2-CP3、CP7-CP8 和 CP6 的结合自由能最高,分别为-78.9 kcal/mol、-77.3 kcal/mol、-75.60 kcal/mol、-64.8 kcal/mol 和-61.6 kcal/mol。而 CP4(-55.0 kcal/mol)、CP5(-49.2 kcal/mol)、CP9(-54.8±0.07 kcal/mol)、CP10(-56.7±0.10 kcal/mol)和 CP1(-46.0±0.08 kcal/mol)也表现出显著的结合自由能。这些有利的能量结合自由能表明,与已知的部分激动剂相比,我们的化合物对α2-AR具有很强的结合亲和力。因此,这些分子可以作为治疗鼻窦炎的优秀药物样候选物。

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