蛋白质数据库
化学
阿卡波糖
变构调节
IC50型
酶
立体化学
混合抑制
活动站点
生物化学
奥西诺
对接(动物)
非竞争性抑制
非竞争性抑制剂
体外
医学
护理部
作者
Daniela Rebollar‐Ramos,Berenice Ovalle‐Magallanes,Juan Francisco Palacios‐Espinosa,Martha Lydia Macías-Rubalcava,Huzefa A. Raja,Martín González‐Andrade,Rachel Mata
出处
期刊:ACS omega
[American Chemical Society]
日期:2021-08-25
卷期号:6 (35): 22969-22981
被引量:11
标识
DOI:10.1021/acsomega.1c03708
摘要
An extract from a PDB static culture of Malbranchea dendritica exhibited α-glucosidase and PTP-1B inhibitory activities. Fractionation of the active extract led to the isolation of gymnoascolide A (1), a γ-butenolide, and xanthones sydowinin A (2), sydowinin B (3), and AGI-B4 (4), as well as orcinol (5). Compound 1 exhibited important inhibitory activity against yeast α-glucosidase (IC50 = 0.556 ± 0.009 mM) in comparison to acarbose (IC50 = 0.403 ± 0.010 mM). Kinetic analysis revealed that 1 is a mixed-type inhibitor. Furthermore, compound 1 significantly reduced the postprandial peak in mice during a sucrose tolerance test at the doses of 5.16 and 10 mg/kg. Compound 1 was reduced with Pd/C to yield a mixture of enantiomers 1a and 1b; the mixture showed similar activity against α-glucosidase (IC50 = 0.396 ± 0.003 mM) and kinetic behavior as the parent compound but might possess better drug-likeness properties according to SwissADME and Osiris Property Explorer tools. Docking analysis with yeast α-glucosidase (pdb: 3A4A) and the C-terminal subunit of human maltase-glucoamylase (pdb: 3TOP) predicted that 1, 1a, and 1b bind to an allosteric site of the enzymes. Compounds 1–5 were evaluated against PTP-1B, but only xanthone 3 moderately inhibited in a noncompetitive fashion the enzyme with an IC50 of 0.081 ± 0.004 mM. This result was consistent with that of docking analysis, which revealed that 3 might bind to an allosteric site of the enzyme. From the inactive barley-based semisolid culture of M. dendritica, the natural pigment erythroglaucin (6) and the nucleosides deoxyadenosine (7), adenosine (8), thymidine (9), and uridine (10) were also isolated and identified.
科研通智能强力驱动
Strongly Powered by AbleSci AI