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基于知识的计算筛选方法鉴定新型蛋白酶体抑制剂。

Identification of New Proteasome Inhibitors Using a Knowledge-Based Computational Screening Approach.

机构信息

Department of Clinical Pharmacy, College of Pharmacy, King Khalid University, Abha 61421, Saudi Arabia.

Department of Clinical Laboratory Sciences, College of Applied Medical Sciences, King Khalid University, Abha 61421, Saudi Arabia.

出版信息

Molecules. 2021 Apr 16;26(8):2326. doi: 10.3390/molecules26082326.

Abstract

(Mtb) is a deadly tuberculosis (TB)-causing pathogen. The proteasome is vital to the survival of Mtb and is therefore validated as a potential target for anti-TB therapy. Mtb resistance to existing antibacterial agents has enhanced drastically, becoming a worldwide health issue. Therefore, new potential therapeutic agents need to be developed that can overcome the complications of TB. With this purpose, in the present study, 224,205 natural compounds from the ZINC database have been screened against the catalytic site of Mtb proteasome by the computational approach. The best scoring hits, ZINC3875469, ZINC4076131, and ZINC1883067, demonstrated robust interaction with Mtb proteasome with binding energy values of -7.19, -7.95, and -7.21 kcal/mol for the monomer (K-chain) and -8.05, -9.10, and -7.07 kcal/mol for the dimer (both K and L chains) of the beta subunit, which is relatively higher than that of reference compound HT1171 (-5.83 kcal/mol (monomer) and -5.97 kcal/mol (dimer)). In-depth molecular docking of top-scoring compounds with Mtb proteasome reveals that amino acid residues Thr1, Arg19, Ser20, Thr21, Gln22, Gly23, Asn24, Lys33, Gly47, Asp124, Ala126, Trp129, and Ala180 are crucial in binding. Furthermore, a molecular dynamics study showed steady-state interaction of hit compounds with Mtb proteasome. Computational prediction of physicochemical property assessment showed that these hits are non-toxic and possess good drug-likeness properties. This study proposed that these compounds could be utilized as potential inhibitors of Mtb proteasome to combat TB infection. However, there is a need for further bench work experiments for their validation as inhibitors of Mtb proteasome.

摘要

(Mtb)是一种致命的结核病(TB)病原体。蛋白酶体对 Mtb 的存活至关重要,因此被验证为抗结核治疗的潜在靶点。Mtb 对现有抗菌药物的耐药性急剧增强,成为全球健康问题。因此,需要开发新的潜在治疗药物,以克服结核病的并发症。为此,在本研究中,通过计算方法筛选了 ZINC 数据库中的 224205 种天然化合物,以对抗 Mtb 蛋白酶体的催化部位。得分最高的化合物 ZINC3875469、ZINC4076131 和 ZINC1883067 与 Mtb 蛋白酶体具有较强的相互作用,其结合能值分别为 -7.19、-7.95 和 -7.21 kcal/mol(单体(K 链))和 -8.05、-9.10 和 -7.07 kcal/mol(二聚体(K 和 L 链))对于β亚基,这相对高于参考化合物 HT1171(-5.83 kcal/mol(单体)和-5.97 kcal/mol(二聚体))。与 Mtb 蛋白酶体的顶级评分化合物的深入分子对接表明,氨基酸残基 Thr1、Arg19、Ser20、Thr21、Gln22、Gly23、Asn24、Lys33、Gly47、Asp124、Ala126、Trp129 和 Ala180 在结合中至关重要。此外,分子动力学研究表明,命中化合物与 Mtb 蛋白酶体的稳态相互作用。物理化学性质评估的计算预测表明,这些化合物没有毒性,并且具有良好的类药性。本研究提出,这些化合物可作为 Mtb 蛋白酶体的潜在抑制剂,用于对抗结核病感染。然而,需要进一步的工作台实验来验证它们作为 Mtb 蛋白酶体抑制剂的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e77/8074214/53b61902414b/molecules-26-02326-g001.jpg

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