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Analogues of Dihydroflavonol and Flavone as Protein Tyrosine Phosphatase 1B Inhibitors from the Leaves of Artocarpus elasticus

机译:二氢黄酮和黄酮的类似物作为来自弹性果香叶的蛋白质酪氨酸磷酸酶 1B 抑制剂

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摘要

Protein tyrosine phosphatase 1B (PTP1B) is one of the target enzymes whose disruption leads to obesity and diabetes. A series of PTP1B inhibitors were isolated from the leaves of Artocarpus elasticus, used in traditional medicines for diabetes. The isolated inhibitors (1–13), including two new compounds (1 and 2), consisted of dihydroflavonols and flavones. The structural requirements for the PTP1B inhibitory mode and potency were revealed in both skeletons. The two highest PTP1B inhibitory properties were dihydroflavonol 1 and flavone 6 analogs with IC50 values of 0.17 and 0.79 μM, respectively. The stereochemistry also affected inhibitory potencies: trans isomer 1 (IC50= 0.17 μM) vs cis isomer 2 (IC50= 2.24 μM). Surprisingly, the dihydroflavonol and flavone glycosides (11 and 13) displayed potent inhibition with IC50s of 2.39 and 0.22 μM, respectively. Furthermore, competitive inhibitor 1 was applied to time-dependence experiments as a simple slow-binding inhibitor with parameters of Kiapp = 0.064103 μM, k3 = 0.2262 μM–1 min–1, and k4 = 0.0145 min–1. The binding affinities by using the fluorescence quenching experiment were highly correlated with inhibitory potencies: 1 (IC50= 0.17 μM, KSV = 0.4375 × 105 L·mol–1) vs 3 (IC50= 17.79 μM, KSV = 0.0006 × 105 L·mol–1). The specific binding interactions were estimated at active and allosteric sites according to the inhibitory mode by molecular docking.
机译:蛋白酪氨酸磷酸酶 1B (PTP1B) 是其破坏导致肥胖和糖尿病的靶酶之一。从用于糖尿病传统药物的 Artocarpus elasticus 的叶子中分离出一系列 PTP1B 抑制剂。分离的抑制剂 (1-13),包括两种新化合物 (1 和 2),由二氢黄酮醇和黄酮组成。PTP1B 抑制模式和效力的结构要求在两个骨骼中均已揭示。PTP1B 抑制作用最高的两种是二氢黄酮醇 1 和黄酮 6 类似物,IC50 值分别为 0.17 和 0.79 μM。立体化学也影响抑制效力:反式异构体 1 (IC50= 0.17 μM) vs 顺式异构体 2 (IC50 = 2.24 μM)。令人惊讶的是,二氢黄酮醇和黄酮苷 (11 和 13) 显示出有效的抑制作用,IC50 分别为 2.39 和 0.22 μM。此外,竞争性抑制剂 1 作为简单的慢结合抑制剂应用于时间依赖性实验,参数为 Kiapp = 0.064103 μM,k3 = 0.2262 μM–1 min–1 和 k4 = 0.0145 min–1。使用荧光猝灭实验的结合亲和力与抑制效力高度相关:1 (IC50= 0.17 μM,KSV = 0.4375 × 105 L·mol–1) vs 3 (IC50= 17.79 μM, KSV = 0.0006 × 105 L·mol–1)。通过分子对接,根据抑制模式估计活性位点和变构位点的特异性结合相互作用。

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