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针对大电导钙激活钾通道β₁调节亚基中胆烷类固醇识别位点配体的多代药效团建模。

Multi-generational pharmacophore modeling for ligands to the cholane steroid-recognition site in the β₁ modulatory subunit of the BKCa channel.

作者信息

McMillan Jacob E, Bukiya Anna N, Terrell Camisha L, Patil Shivaputra A, Miller Duane D, Dopico Alex M, Parrill Abby L

机构信息

Department of Chemistry and Computational Research on Materials Institute (CROMIUM), The University of Memphis, Memphis, TN 38152, USA.

Department of Pharmacology, College of Medicine, The University of Tennessee Health Sciences Center, Memphis, TN 38163, USA.

出版信息

J Mol Graph Model. 2014 Nov;54:174-83. doi: 10.1016/j.jmgm.2014.10.008. Epub 2014 Oct 24.

Abstract

Large conductance, voltage- and Ca(2+)-gated K(+) (BKCa) channels play a critical role in smooth muscle contractility and thus represent an emerging therapeutic target for drug development to treat vascular disease, gastrointestinal, bladder and uterine disorders. Several compounds are known to target the ubiquitously expressed BKCa channel-forming α subunit. In contrast, just a few are known to target the BKCa modulatory β1 subunit, which is highly expressed in smooth muscle and scarce in most other tissues. Lack of available high-resolution structural data makes structure-based pharmacophore modeling of β1 subunit-dependent BKCa channel activators a major challenge. Following recent discoveries of novel BKCa channel activators that act via β1 subunit recognition, we performed ligand-based pharmacophore modeling that led to the successful creation and fine-tuning of a pharmacophore over several generations. Initial models were developed using physiologically active cholane steroids (bile acids) as template. However, as more compounds that act on BKCa β1 have been discovered, our model has been refined to improve accuracy. Database searching with our best-performing model has uncovered several novel compounds as candidate BKCa β1 subunit ligands. Eight of the identified compounds were experimentally screened and two proved to be activators of recombinant BKCa β1 complexes. One of these activators, sobetirome, differs substantially in structure from any previously reported activator.

摘要

大电导、电压和钙离子门控钾离子(BKCa)通道在平滑肌收缩中起关键作用,因此成为治疗血管疾病、胃肠道、膀胱和子宫疾病的新兴药物研发靶点。已知有几种化合物作用于广泛表达的BKCa通道形成α亚基。相比之下,仅有少数化合物作用于BKCa调节β1亚基,该亚基在平滑肌中高表达,而在大多数其他组织中稀缺。缺乏可用的高分辨率结构数据使得基于结构的β1亚基依赖性BKCa通道激活剂的药效团建模成为一项重大挑战。继最近发现通过β1亚基识别起作用的新型BKCa通道激活剂之后,我们进行了基于配体的药效团建模,并经过几代人的努力成功创建并微调了一个药效团。初始模型以生理活性胆烷类固醇(胆汁酸)为模板开发。然而,随着更多作用于BKCa β1的化合物被发现,我们的模型不断完善以提高准确性。使用我们表现最佳的模型进行数据库搜索,发现了几种新型化合物作为候选BKCa β1亚基配体。对鉴定出的8种化合物进行了实验筛选,其中2种被证明是重组BKCa β1复合物的激活剂。其中一种激活剂索贝罗米,其结构与之前报道的任何激活剂都有很大不同。

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本文引用的文献

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