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1
Multi-generational pharmacophore modeling for ligands to the cholane steroid-recognition site in the β₁ modulatory subunit of the BKCa channel.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。
J Mol Graph Model. 2014 Nov;54:174-83. doi: 10.1016/j.jmgm.2014.10.008. Epub 2014 Oct 24.
2
The unique N-terminal sequence of the BKCa channel α-subunit determines its modulation by β-subunits.大电导钙激活钾通道α亚基独特的N端序列决定了其受β亚基的调控。
PLoS One. 2017 Jul 27;12(7):e0182068. doi: 10.1371/journal.pone.0182068. eCollection 2017.
3
Arachidonic acid activation of BKCa (Slo1) channels associated to the β1-subunit in human vascular smooth muscle cells.花生四烯酸对人血管平滑肌细胞中与β1亚基相关的大电导钙激活钾通道(Slo1)的激活作用。
Pflugers Arch. 2014 Sep;466(9):1779-92. doi: 10.1007/s00424-013-1422-x. Epub 2013 Dec 28.
4
Activation of calcium- and voltage-gated potassium channels of large conductance by leukotriene B4.白三烯B4对大电导钙激活钾通道和电压门控钾通道的激活作用。
J Biol Chem. 2014 Dec 19;289(51):35314-25. doi: 10.1074/jbc.M114.577825. Epub 2014 Nov 4.
5
Tanshinone II-A sodium sulfonate (DS-201) enhances human BKCa channel activity by selectively targeting the pore-forming α subunit.丹参酮 II-A 磺酸钠(DS-201)通过选择性靶向形成孔道的 α 亚基来增强人 BKCa 通道活性。
Acta Pharmacol Sin. 2014 Nov;35(11):1351-63. doi: 10.1038/aps.2014.85. Epub 2014 Oct 27.
6
The extracellular loop of the auxiliary β-subunit is involved in the regulation of BK channel mechanosensitivity.辅助β亚基的细胞外环参与调节 BK 通道的机械敏感性。
Am J Physiol Cell Physiol. 2018 Oct 1;315(4):C485-C493. doi: 10.1152/ajpcell.00037.2018. Epub 2018 Jun 20.
7
Large conductance Ca(2+)-activated K(+) channel (BKCa) activating properties of a series of novel N-arylbenzamides: Channel subunit dependent effects.一系列新型 N-芳基苯甲酰胺对大电导钙激活钾通道 (BKCa)的激活特性:通道亚基依赖性的影响。
Bioorg Med Chem. 2013 Jul 15;21(14):4186-91. doi: 10.1016/j.bmc.2013.05.003. Epub 2013 May 14.
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The beta1 subunit enhances oxidative regulation of large-conductance calcium-activated K+ channels.β1亚基增强大电导钙激活钾通道的氧化调节。
J Gen Physiol. 2004 Oct;124(4):357-70. doi: 10.1085/jgp.200409144.
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Urinary Bladder-Relaxant Effect of Kurarinone Depending on Potentiation of Large-Conductance Ca2+-Activated K+ Channels.苦参酮对膀胱的松弛作用及其对大电导钙激活钾通道的增强作用
Mol Pharmacol. 2016 Aug;90(2):140-50. doi: 10.1124/mol.115.102939. Epub 2016 Jun 1.
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Mechanisms underlying regional differences in the Ca2+ sensitivity of BK(Ca) current in arteriolar smooth muscle.动脉平滑肌中 BK(Ca)电流钙敏感性的区域差异的潜在机制。
J Physiol. 2013 Mar 1;591(5):1277-93. doi: 10.1113/jphysiol.2012.241562. Epub 2013 Jan 7.

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1
Differential Functional Contribution of BK Channel Subunits to Aldosterone-Induced Channel Activation in Vascular Smooth Muscle and Eventual Cerebral Artery Dilation.BK 通道亚基对醛固酮诱导的血管平滑肌通道激活及最终的大脑动脉扩张的功能差异贡献。
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Discovery of agonist-antagonist pairs for the modulation of Ca and voltage-gated K channels of large conductance that contain beta1 subunits.发现了含有β1亚基的大电导钙和电压门控钾通道的激动剂-拮抗剂对的调节剂。
Bioorg Med Chem. 2022 Aug 15;68:116876. doi: 10.1016/j.bmc.2022.116876. Epub 2022 Jun 13.
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Celastrol Dilates and Counteracts Ethanol-Induced Constriction of Cerebral Arteries.Celastrol 扩张并拮抗乙醇诱导的脑血管收缩。
J Pharmacol Exp Ther. 2020 Nov;375(2):247-257. doi: 10.1124/jpet.120.000152. Epub 2020 Aug 29.
4
Calcium- and voltage-gated BK channels in vascular smooth muscle.钙和电压门控 BK 通道在血管平滑肌中的作用。
Pflugers Arch. 2018 Sep;470(9):1271-1289. doi: 10.1007/s00424-018-2151-y. Epub 2018 May 11.
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Age-Dependent Susceptibility to Alcohol-Induced Cerebral Artery Constriction.年龄依赖性酒精诱导的脑动脉收缩易感性。
J Drug Alcohol Res. 2016;5. doi: 10.4303/jdar/236002. Epub 2016 Nov 27.
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Differential distribution and functional impact of BK channel beta1 subunits across mesenteric, coronary, and different cerebral arteries of the rat.BK通道β1亚基在大鼠肠系膜动脉、冠状动脉和不同脑动脉中的差异分布及功能影响。
Pflugers Arch. 2017 Feb;469(2):263-277. doi: 10.1007/s00424-016-1929-z. Epub 2016 Dec 24.

本文引用的文献

1
Cerebrovascular dilation via selective targeting of the cholane steroid-recognition site in the BK channel β1-subunit by a novel nonsteroidal agent.通过新型非甾体药物选择性靶向 BK 通道β1 亚基中的胆烷类固醇识别位点来扩张脑血管。
Mol Pharmacol. 2013 May;83(5):1030-44. doi: 10.1124/mol.112.083519. Epub 2013 Mar 1.
2
Calcium- and voltage-gated potassium (BK) channel activators in the 5β-cholanic acid-3α-ol analogue series with modifications in the lateral chain.5β-胆烷酸-3α-醇类似物系列中具有侧链修饰的钙和电压门控钾 (BK) 通道激活剂。
ChemMedChem. 2012 Oct;7(10):1784-92. doi: 10.1002/cmdc.201200290. Epub 2012 Sep 4.
3
Selective, direct activation of high-conductance, calcium-activated potassium channels causes smooth muscle relaxation.选择性地直接激活高电导、钙激活钾通道可引起平滑肌松弛。
Mol Pharmacol. 2012 Apr;81(4):567-77. doi: 10.1124/mol.111.075853. Epub 2012 Jan 12.
4
The steroid interaction site in transmembrane domain 2 of the large conductance, voltage- and calcium-gated potassium (BK) channel accessory β1 subunit.大电导、电压和钙激活钾 (BK) 通道辅助 β1 亚基跨膜域 2 中的类固醇相互作用位点。
Proc Natl Acad Sci U S A. 2011 Dec 13;108(50):20207-12. doi: 10.1073/pnas.1112901108. Epub 2011 Nov 28.
5
Structure of the gating ring from the human large-conductance Ca(2+)-gated K(+) channel.人类大电导钙激活钾通道门控环的结构。
Nature. 2010 Jul 15;466(7304):393-7. doi: 10.1038/nature09252. Epub 2010 Jun 23.
6
LowModeMD--implicit low-mode velocity filtering applied to conformational search of macrocycles and protein loops.LowModeMD--应用于大环和蛋白质环构象搜索的隐式低模态速度滤波。
J Chem Inf Model. 2010 May 24;50(5):792-800. doi: 10.1021/ci900508k.
7
Channel beta2-4 subunits fail to substitute for beta1 in sensitizing BK channels to lithocholate.通道β2 - 4亚基无法替代β1使大电导钙激活钾通道对石胆酸敏感。
Biochem Biophys Res Commun. 2009 Dec 18;390(3):995-1000. doi: 10.1016/j.bbrc.2009.10.091. Epub 2009 Oct 21.
8
The BK channel accessory beta1 subunit determines alcohol-induced cerebrovascular constriction.BK通道辅助β1亚基决定酒精诱导的脑血管收缩。
FEBS Lett. 2009 Sep 3;583(17):2779-84. doi: 10.1016/j.febslet.2009.07.019. Epub 2009 Jul 17.
9
Structural determinants of monohydroxylated bile acids to activate beta 1 subunit-containing BK channels.单羟基化胆汁酸激活含β1亚基的BK通道的结构决定因素。
J Lipid Res. 2008 Nov;49(11):2441-51. doi: 10.1194/jlr.M800286-JLR200. Epub 2008 Jul 23.
10
BK channel modulators: a comprehensive overview.BK通道调节剂:全面综述。
Curr Med Chem. 2008;15(11):1126-46. doi: 10.2174/092986708784221412.

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.

DOI:10.1016/j.jmgm.2014.10.008
PMID:25459769
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4268273/
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。