Biological evaluation and SAR analysis of novel covalent inhibitors against fructose-1,6-bisphosphatase

化学 果糖1,6-二磷酸酶 变构调节 立体化学 IC50型 活动站点 结构-活动关系 生物化学 体外
作者
Xinya Han,Yunyuan Huang,Lin Wei,Haifeng Chen,Yanrong Guo,Zilong Tang,Wei Hu,Qinfei Xia,Qi Wang,Jufen Yan,Yanliang Ren
出处
期刊:Bioorganic & Medicinal Chemistry [Elsevier]
卷期号:28 (18): 115624-115624 被引量:5
标识
DOI:10.1016/j.bmc.2020.115624
摘要

Fructose-1,6-bisphosphatase (FBPase) is an attractive target for affecting the GNG pathway. In our previous study, the C128 site of FBPase has been identified as a new allosteric site, where several nitrovinyl compounds can bind to inhibit FBPase activity. Herein, a series of nitrostyrene derivatives were further synthesized, and their inhibitory activities against FBPase were investigated in vitro. Most of the prepared nitrostyrene compounds exhibit potent FBPase inhibition (IC50 < 10 μM). Specifically, when the substituents of F, Cl, OCH3, CF3, OH, COOH, or 2-nitrovinyl were installed at the R2 (meta-) position of the benzene ring, the FBPase inhibitory activities of the resulting compounds increased 4.5–55 folds compared to those compounds with the same groups at the R1 (para-) position. In addition, the preferred substituents at the R3 position were Cl or Br, thus compound HS36 exhibited the most potent inhibitory activity (IC50 = 0.15 μM). The molecular docking and site-directed mutation suggest that C128 and N125 are essential for the binding of HS36 and FBPase, which is consistent with the C128-N125-S123 allosteric inhibition mechanism. The reaction enthalpy calculations show that the order of the reactions of compounds with thiol groups at the R3 position is Cl > H > CH3. CoMSIA analysis is consistent with our proposed binding mode. The effect of compounds HS12 and HS36 on glucose production in primary mouse hepatocytes were further evaluated, showing that the inhibition was 71% and 41% at 100 μM, respectively.
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