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使用定量构效关系模型评估Cx43间隙连接抑制剂

Evaluation of Cx43 Gap Junction Inhibitors Using a Quantitative Structure-Activity Relationship Model.

作者信息

Matusevičiūtė Ramona, Ignatavičiūtė Eglė, Mickus Rokas, Bordel Sergio, Skeberdis Vytenis Arvydas, Raškevičius Vytautas

机构信息

Faculty of Medicine, Lithuanian University of Health Sciences, 03101 Kaunas, Lithuania.

Institute of Cardiology, Lithuanian University of Health Sciences, 50162 Kaunas, Lithuania.

出版信息

Biomedicines. 2023 Jul 12;11(7):1972. doi: 10.3390/biomedicines11071972.

Abstract

Gap junctions (GJs) made of connexin-43 (Cx43) are necessary for the conduction of electrical impulses in the heart. Modulation of Cx43 GJ activity may be beneficial in the treatment of cardiac arrhythmias and other dysfunctions. The search for novel GJ-modulating agents using molecular docking allows for the accurate prediction of binding affinities of ligands, which, unfortunately, often poorly correlate with their potencies. The objective of this study was to demonstrate that a Quantitative Structure-Activity Relationship (QSAR) model could be used for more precise identification of potent Cx43 GJ inhibitors. Using molecular docking, QSAR, and 3D-QSAR, we evaluated 16 known Cx43 GJ inhibitors, suggested the monocyclic monoterpene d-limonene as a putative Cx43 inhibitor, and tested it experimentally in HeLa cells expressing exogenous Cx43. The predicted concentrations required to produce 50% of the maximal effect (IC) for each of these compounds were compared with those determined experimentally (IC and IC respectively). The ICies of d-limonene and other Cx43 GJ inhibitors examined by our QSAR and 3D-QSAR models showed a good correlation with their ICies (R = 0.88 and 0.90, respectively) in contrast to ICies obtained from molecular docking (R = 0.78). However, molecular docking suggests that inhibitor potency may depend on their docking conformation on Cx43. Searching for new potent, selective, and specific inhibitors of GJ channels, we propose to perform the primary screening of new putative compounds using the QSAR model, followed by the validation of the most suitable candidates by patch-clamp techniques.

摘要

由连接蛋白43(Cx43)构成的缝隙连接(GJs)对于心脏电冲动的传导至关重要。调节Cx43 GJ活性可能对治疗心律失常和其他功能障碍有益。利用分子对接寻找新型GJ调节剂能够准确预测配体的结合亲和力,遗憾的是,其往往与配体的效力相关性较差。本研究的目的是证明定量构效关系(QSAR)模型可用于更精确地鉴定强效Cx43 GJ抑制剂。我们使用分子对接、QSAR和3D-QSAR评估了16种已知的Cx43 GJ抑制剂,提出单环单萜d-柠檬烯作为一种假定的Cx43抑制剂,并在表达外源性Cx43的HeLa细胞中进行了实验测试。将这些化合物各自产生最大效应的50%所需的预测浓度(IC)与实验测定的浓度(分别为IC和IC)进行比较。我们的QSAR和3D-QSAR模型检测的d-柠檬烯及其他Cx43 GJ抑制剂的IC与其实验测定的IC显示出良好的相关性(R分别为0.88和0.90),而从分子对接获得的IC相关性较差(R = 0.78)。然而,分子对接表明抑制剂的效力可能取决于它们在Cx43上的对接构象。在寻找新型强效、选择性和特异性的GJ通道抑制剂时,我们建议先用QSAR模型对新的假定化合物进行初步筛选,然后通过膜片钳技术对最合适的候选物进行验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7478/10377234/e244051066f3/biomedicines-11-01972-g001.jpg

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