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色胺席夫碱作为核苷酸三磷酸二磷酸水解酶(NTPDases)的有效抑制剂:结构-活性关系。

Schiff bases of tryptamine as potent inhibitors of nucleoside triphosphate diphosphohydrolases (NTPDases): Structure-activity relationship.

机构信息

H. E. J. Research Institute of Chemistry, International Center for Chemical and Biological Sciences, University of Karachi, Karachi 75270, Pakistan.

H. E. J. Research Institute of Chemistry, International Center for Chemical and Biological Sciences, University of Karachi, Karachi 75270, Pakistan; Department of Clinical Pharmacy, Institute for Research and Medical Consultations (IRMC), Imam Abdulrahman Bin Faisal University, P.O. Box 1982, Dammam 31441, Saudi Arabia.

出版信息

Bioorg Chem. 2019 Feb;82:253-266. doi: 10.1016/j.bioorg.2018.10.046. Epub 2018 Oct 30.

Abstract

Overexpression of NTPDases leads to a number of pathological situations such as thrombosis, and cancer. Thus, effective inhibitors are required to combat these pathological situations. Different classes of NTPDase inhibitors are reported so far including nucleotides and their derivatives, sulfonated dyes such as reactive blue 2, suramin and its derivatives, and polyoxomatalates (POMs). Suramin is a well-known and potent NTPDase inhibitor, nonetheless, a range of side effects are also associated with it. Reactive blue 2 also had non-specific side effects that become apparent at high concentrations. In addition, most of the NTPDase inhibitors are high molecular weight compounds, always required tedious chemical steps to synthesize. Hence, there is still need to explore novel, low molecular weight, easy to synthesize, and potent NTPDase inhibitors. Keeping in mind the known NTPDase inhibitors with imine functionality and nitrogen heterocycles, Schiff bases of tryptamine, 1-26, were synthesized and characterized by spectroscopic techniques such as EI-MS, HREI-MS, H-, and C NMR. All the synthetic compounds were evaluated for the inhibitory avidity against activities of three major isoforms of NTPDases: NTPDase-1, NTPDase-3, and NTPDase-8. Cumulatively, eighteen compounds were found to show potent inhibition (Ki = 0.0200-0.350 μM) of NTPDase-1, twelve (Ki = 0.071-1.060 μM) of NTPDase-3, and fifteen compounds inhibited (Ki = 0.0700-4.03 μM) NTPDase-8 activity. As a comparison, the Kis of the standard inhibitor suramin were 1.260 ± 0.007, 6.39 ± 0.89 and 1.180 ± 0.002 μM, respectively. Kinetic studies were performed on lead compounds (6, 5, and 21) with human (h-) NTPDase-1, -3, and -8, and Lineweaver-Burk plot analysis showed that they were all competitive inhibitors. In silico study was conducted on compound 6 that showed the highest level of inhibition of NTPDase-1 to understand the binding mode in the active site of the enzyme.

摘要

NTPDase 的过度表达会导致多种病理情况,如血栓形成和癌症。因此,需要有效的抑制剂来对抗这些病理情况。到目前为止,已经报道了不同类别的 NTPDase 抑制剂,包括核苷酸及其衍生物、如反应蓝 2 等磺化染料、苏拉明及其衍生物以及多金属氧酸盐(POMs)。苏拉明是一种众所周知的强效 NTPDase 抑制剂,但它也存在一系列副作用。反应蓝 2 也具有非特异性副作用,在高浓度时变得明显。此外,大多数 NTPDase 抑制剂都是高分子化合物,合成时总是需要繁琐的化学步骤。因此,仍然需要探索新型、低分子量、易于合成和强效的 NTPDase 抑制剂。考虑到具有亚胺官能团和氮杂环的已知 NTPDase 抑制剂,本文合成并通过 EI-MS、HREI-MS、H-和 C NMR 等光谱技术对色胺的 1-26 个 Schiff 碱进行了表征。所有合成化合物都评估了对三种主要 NTPDase 同工型的活性抑制亲和力:NTPDase-1、NTPDase-3 和 NTPDase-8。总的来说,有 18 种化合物对 NTPDase-1 的抑制作用较强(Ki=0.0200-0.350 μM),12 种化合物对 NTPDase-3 的抑制作用较强(Ki=0.071-1.060 μM),15 种化合物对 NTPDase-8 的抑制作用较强(Ki=0.0700-4.03 μM)。作为比较,标准抑制剂苏拉明的 Kis 分别为 1.260±0.007、6.39±0.89 和 1.180±0.002 μM。对具有人(h-)NTPDase-1、-3 和 -8 的先导化合物(6、5 和 21)进行了动力学研究,Lineweaver-Burk 作图分析表明它们均为竞争性抑制剂。对显示出对 NTPDase-1 抑制作用最强的化合物 6 进行了计算机模拟研究,以了解其在酶活性部位的结合模式。

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