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人脂肪酸合酶硫酯酶结构域中两种构象的比较对接揭示了用于配体虚拟筛选的潜在结合腔。

Comparative docking of dual conformations in human fatty acid synthase thioesterase domain reveals potential binding cavity for virtual screening of ligands.

作者信息

John Arun, Vetrivel Umashankar, Subramanian Krishnakumar, Deepa Perinkulam Ravi

机构信息

a Centre for Bioinformatics, Kamalnayan Bajaj Institute for Research in Vision and Ophthalmology, Vision Research Foundation , Sankara Nethralaya , 18, College Road, Chennai 600 006 India.

b Larsen and Toubro Department of Ocular Pathology, Kamalnayan Bajaj Institute for Research in Vision and Ophthalmology, Vision Research Foundation , Sankara Nethralaya , 18, College Road, Chennai 600 006 India.

出版信息

J Biomol Struct Dyn. 2017 May;35(6):1350-1366. doi: 10.1080/07391102.2016.1184183. Epub 2016 Aug 8.

Abstract

Human fatty acid synthase (hFASN), a homo dimeric lipogenic enzyme with seven catalytic domains, is an important clinical target in cancer, metabolic syndrome and infections. Here, molecular modelling and docking methods were implemented to examine the inter-molecular interactions of thioesterase (TE) domain in hFASN with its physiological substrate, and to identify potential chemical inhibitors. TE catalyses the hydrolysis of thioester bond between palmitate and the 4' phosphopantetheine of acyl carrier protein, releasing 16-carbon palmitate. The crystal structure of hFASN TE in two inhibitory conformations (A and B) were geometry-optimized and used for molecular docking with palmitate, orlistat (a known FASN inhibitor) and virtual screening against compounds from National Cancer Institute (NCI) database. Relatively, low binding affinity was observed during the complex formation of palmitate with A (-.164 kcal/mol) and B (-.332 kcal/mol) forms of TE, when compared with orlistat-docked TE (A form: -5.872 kcal/mol and B form: -5.484 kcal/mol), clearly indicating that the native inhibited conformation (crystal structure) was unfavourable for substrate binding. We used these orlistat dual binding modes as positive controls for prioritizing the ligands during virtual screening. From 2, 31,617 molecules in the NCI database, 916 high-scoring compounds (hit ligands) were obtained for A-form and 4582 for B-form of the TE-domain, which were then ranked according to glide docking score, XP H bond score, absorption, distribution, metabolism and excretion and binding free energy (Prime/MM-GBSA). Consequently, two top scoring ligands (NSC: 319661 and NSC: 153166) emerged as promising drug candidates that may be tested in FASN-over-expressing diseases.

摘要

人脂肪酸合酶(hFASN)是一种具有七个催化结构域的同型二聚体脂肪生成酶,是癌症、代谢综合征和感染领域重要的临床靶点。在此,运用分子建模和对接方法来研究hFASN中硫酯酶(TE)结构域与其生理底物之间的分子间相互作用,并鉴定潜在的化学抑制剂。TE催化棕榈酸与酰基载体蛋白的4'-磷酸泛酰巯基乙胺之间硫酯键的水解,释放出16碳的棕榈酸。hFASN TE处于两种抑制构象(A和B)时的晶体结构经几何优化后,用于与棕榈酸、奥利司他(一种已知的FASN抑制剂)进行分子对接,并针对美国国立癌症研究所(NCI)数据库中的化合物进行虚拟筛选。相对而言,与对接了奥利司他的TE(A构象:-5.872 kcal/mol,B构象:-5.484 kcal/mol)相比,棕榈酸与TE的A(-0.164 kcal/mol)和B(-0.332 kcal/mol)构象形成复合物时观察到较低的结合亲和力,这清楚地表明天然抑制构象(晶体结构)不利于底物结合。我们将这些奥利司他双重结合模式用作虚拟筛选过程中对配体进行优先级排序的阳性对照。从NCI数据库中的231,617个分子中,获得了916个针对TE结构域A构象的高分化合物(命中配体)和4582个针对B构象的高分化合物,然后根据Glide对接分数、XP氢键分数、吸收、分布代谢和排泄以及结合自由能(Prime/MM-GBSA)进行排名。因此,两种得分最高的配体(NSC:319661和NSC:153166)成为有前景的候选药物,可在FASN过表达疾病中进行测试。

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