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选择性DprE1抑制剂的研发:苯并噻唑基嘧啶-5-甲酰胺的设计、合成、晶体结构及抗结核活性

Development of selective DprE1 inhibitors: Design, synthesis, crystal structure and antitubercular activity of benzothiazolylpyrimidine-5-carboxamides.

作者信息

Chikhale Rupesh, Menghani Sunil, Babu Ramavath, Bansode Ratnadeep, Bhargavi G, Karodia Nazira, Rajasekharan M V, Paradkar Anant, Khedekar Pramod

机构信息

Computer Aided Drug Design Laboratory, Department of Pharmaceutical Sciences, Rashtrasant Tukadoji Maharaj Nagpur University, Mahatma Jyotiba Fuley Shaikshanik Parisar, Amravati Road, Nagpur 440 033, MS, India.

Computer Aided Drug Design Laboratory, Department of Pharmaceutical Sciences, Rashtrasant Tukadoji Maharaj Nagpur University, Mahatma Jyotiba Fuley Shaikshanik Parisar, Amravati Road, Nagpur 440 033, MS, India.

出版信息

Eur J Med Chem. 2015;96:30-46. doi: 10.1016/j.ejmech.2015.04.011. Epub 2015 Apr 7.

Abstract

Decaprenylphosphoryl-b-D-ribose 20-epimerase (DprE1) is a potential drug target for development of antitubercular agents. Structure based drug discovery approach yielded twenty novel derivatives of benzothiazolylpyrimidine-5-carboxamides (7a-t) which were synthesised by three component one pot reaction involving benzothiazolyl oxobutanamide, thiourea and substituted aromatic benzaldehydes. These derivatives were evaluated for antitubercular activity to determine MIC and compound 7a, 7e, 7f and 7o were found to be potentially active against Mycobacterium tuberculosis (H37Rv). Log P of these compounds was found to be between 2.0 and 3.0 making them suitable for oral dosing. DprE1 selectivity and pharmacokinetic studies were carried out for these compounds of which 7a and 7o were found to be highly selective and bioavailability was found to be above 52% by oral dose. Crystal structure of 7a was studied and molecular packing was determined, it exhibited a triclinic crystal lattice arrangement having hydrogen bonded dimeric arrangement. Drug receptor interactions were studied which exhibited docking in the active site of receptor with hydrogen bonding, hydrophobic interactions, vdW interactions with amino acid residues such as Cys387, Asn385, Lys418, Tyr314, Gln334 and Lys367 respectively. 3D QSAR analysis was carried out by kNN-MFA method to determine and develop theoretical model, best suitable model was found to be based on Simulated Annealing k-Neariest Neighbour Molecular Field Analysis (SA kNN-MFA). The model provided with hydrophobic descriptors in positive side indicating the need of bulky groups, steric and electronegative descriptors in negative coordinates hints with contribution by the electronegative substitutions as favourable and desirable moieties for enhancing the activity. The q(2), q(2)_se and Pred_r(2)se were found to be 0.5000, 0.6404 and 1.0094 respectively. A pharmacophore model was generated which suggested for necessity of aromatic, aliphatic carbon centre and hydrogen bond donor for development of newer DprE1 selective inhibitors.

摘要

癸异戊二烯基磷酸 -β-D-核糖20-表异构酶(DprE1)是开发抗结核药物的一个潜在靶点。基于结构的药物发现方法得到了20种新型苯并噻唑基嘧啶-5-甲酰胺衍生物(7a - t),它们是通过涉及苯并噻唑基氧代丁酰胺、硫脲和取代芳族苯甲醛的三组分一锅法反应合成的。对这些衍生物进行了抗结核活性评估以确定最低抑菌浓度(MIC),发现化合物7a、7e、7f和7o对结核分枝杆菌(H37Rv)具有潜在活性。发现这些化合物的脂水分配系数(Log P)在2.0至3.0之间,这使其适合口服给药。对这些化合物进行了DprE1选择性和药代动力学研究,发现7a和7o具有高度选择性,口服给药时生物利用度高于52%。研究了7a的晶体结构并确定了分子堆积,其呈现出具有氢键二聚体排列的三斜晶格排列。研究了药物与受体的相互作用,结果显示其在受体活性位点的对接分别与半胱氨酸387、天冬酰胺385、赖氨酸418、酪氨酸314、谷氨酰胺334和赖氨酸367等氨基酸残基存在氢键、疏水相互作用和范德华相互作用。通过kNN - MFA方法进行了三维定量构效关系(3D QSAR)分析以确定和开发理论模型,发现最合适的模型基于模拟退火k近邻分子场分析(SA kNN - MFA)。该模型在正侧提供了疏水描述符,表明需要大基团,负坐标中的空间和电负性描述符提示电负性取代作为增强活性的有利和理想部分的贡献。发现q(2)、q(2)_se和Pred_r(2)se分别为0.5000、0.6404和1.0094。生成了一个药效团模型,该模型表明开发新型DprE1选择性抑制剂需要芳香族、脂肪族碳中心和氢键供体。

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