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设计、合成、IR、(1)H、(13)C、(15)N、2D-NMR、X 射线衍射结构表征及一类新型苯氨基乙酸苄叉腙类 pfENR 抑制剂的评价。

Design, synthesis, structural characterization by IR, (1) H, (13) C, (15) N, 2D-NMR, X-ray diffraction and evaluation of a new class of phenylaminoacetic acid benzylidene hydrazines as pfENR inhibitors.

机构信息

Department of Pharmaceutical Chemistry, Bombay College of Pharmacy, Kalina, Santacruz East, Mumbai, 400 098, India.

出版信息

Chem Biol Drug Des. 2013 Jun;81(6):715-29. doi: 10.1111/cbdd.12118. Epub 2013 Apr 11.

Abstract

Recent studies have revealed that plasmodial enoyl-ACP reductase (pfENR, FabI), one of the crucial enzymes in the plasmodial type II fatty acid synthesis II (FAS II) pathway, is a promising target for liver stage malaria infections. Hence, pfENR inhibitors have the potential to be used as causal malarial prophylactic agents. In this study, we report the design, synthesis, structural characterization and evaluation of a new class of pfENR inhibitors. The search for inhibitors began with a virtual screen of the iResearch database by molecular docking. Hits obtained from the virtual screen were ranked according to their Glide score. One hit was selected as a lead and modified to improve its binding to pfENR; from this, a series of phenylamino acetic acid benzylidene hydrazides were designed and synthesized. These molecules were thoroughly characterized by IR, (1) H, (13) C, (15) N, 2D-NMR (COSY, NOESY, (1) H-(13) C, (1) H-(15) N HSQC and HMBC), and X-ray diffraction. NMR studies revealed the existence of conformational/configurational isomers around the amide and imine functionalities. The major species in DMSO solution is the E, E form, which is in dynamic equilibrium with the Z, E isomer. In the solid state, the molecule has a completely extended conformation and forms helical structures that are stabilized by strong hydrogen bond interactions, forming a helical structure stabilized by N-H…O interactions, a feature unique to this class of compounds. Furthermore, detailed investigation of the NMR spectra indicated the presence of a minor impurity in most compounds. The structure of this impurity was deduced as an imidazoline-4-one derivative based on (1) H-(13) C and (1) H-(15) H HMBC spectra and was confirmed from the NOESY spectra. The molecules were screened for in vitro activity against recombinant pfENR enzyme by a spectrophotometric assay. Four molecules, viz. 17, 7, 10, and 12 were found to be active at 7, 8, 10, and 12 μm concentration, respectively, showing promising pfENR inhibitory potential. A classification model was derived based on a binary QSAR approach termed recursive partitioning (RP) to highlight structural characteristics that could be tuned to improve activity.

摘要

最近的研究表明,疟原虫烯酰基 ACP 还原酶(pfENR,FabI)是疟原虫 II 型脂肪酸合成 II(FAS II)途径中的关键酶之一,是肝期疟原虫感染的一个有希望的靶点。因此,pfENR 抑制剂有可能被用作因果性抗疟预防性药物。在这项研究中,我们报告了一类新的 pfENR 抑制剂的设计、合成、结构特征和评价。抑制剂的搜索始于通过分子对接对 iResearch 数据库进行虚拟筛选。从虚拟筛选中获得的命中物根据它们的 Glide 得分进行排序。选择一个命中物作为先导化合物,并对其进行修饰以改善其与 pfENR 的结合;由此设计并合成了一系列苯氨基乙酸苄叉腙。这些分子通过 IR、(1)H、(13)C、(15)N、2D-NMR(COSY、NOESY、(1)H-(13)C、(1)H-(15)N HSQC 和 HMBC)和 X 射线衍射进行了彻底的表征。NMR 研究表明酰胺和亚胺官能团周围存在构象/构型异构体。在 DMSO 溶液中,主要的物种是 E,E 形式,它与 Z,E 异构体处于动态平衡。在固态下,分子具有完全伸展的构象,并形成由强氢键相互作用稳定的螺旋结构,形成由 N-H…O 相互作用稳定的螺旋结构,这是此类化合物的独特特征。此外,对 NMR 谱的详细研究表明,大多数化合物中存在少量杂质。根据(1)H-(13)C 和(1)H-(15)H HMBC 谱以及从 NOESY 谱推断出,该杂质的结构被推断为咪唑啉-4-酮衍生物。根据分光光度法测定,这些分子对重组 pfENR 酶的体外活性进行了筛选。发现四个分子,即 17、7、10 和 12,在 7、8、10 和 12μm 浓度下分别具有活性,显示出有希望的 pfENR 抑制潜力。基于递归分区(RP)的二元 QSAR 方法,衍生了一个分类模型,以突出可以调整的结构特征,以提高活性。

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