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首页> 外文期刊>Nutrients >Polymethoxyflavones: Novel β-Secretase (BACE1) Inhibitors from Citrus Peels
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Polymethoxyflavones: Novel β-Secretase (BACE1) Inhibitors from Citrus Peels

机译:聚甲氧基 - 来自柑橘皮的新型β-分泌酶(Bace1)抑制剂

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Beta-site amyloid precursor protein (APP) cleaving enzyme1 (BACE1) catalyzes the rate-limiting step of amyloid-β protein (Aβ) generation, and is considered as a prime target for Alzheimer’s disease (AD). In search of a candidate for AD prevention, our efforts exploring the natural BACE1 inhibitor have led to the finding of nobiletin, tangeretin, and sinensetin—representative compounds of polymethoxyflavones (PMFs). Tangeretin exhibited the strongest BACE1 inhibition (IC 50 , 4.9 × 10 ?5 M), followed by nobiletin and sinensetin with IC 50 values of 5.9 × 10 ?5 M and 6.3 × 10 ?5 M, respectively. In addition, all compounds reacted in a non-competitive manner with the substrate. Docking analysis results for complexes with BACE1 indicated that SER10 and THR232 residues of BACE1 hydrogen bonded with two oxygen atoms of tangeretin, while three additional BACE1 residues (ALA157, VAL336 and THR232) interacted with three oxygen atoms of nobiletin. Furthermore, sinensetin formed four hydrogen bonds through nitrogen atoms of TYR71, LYS75, and TRP76, and an oxygen atom of TYR198. Furthermore, the lowest-energy conformations of the most proposed complexes of sinensetin, nobiletin, and tangeretin with BACE1 were ?7.2, ?7.0, and ?6.8 kcal/mol, respectively. Taken together, our results suggest that these polymethoxyflavones (PMFs) might be considered as promising BACE1 inhibitory agents that could lower Aβ production in AD.
机译:β-位点淀粉样蛋白前体蛋白(APP)裂解酶1(BACE1)催化淀粉样蛋白-β蛋白(Aβ)产生的速率限制步骤,并且被认为是阿尔茨海默病(AD)的主要目标。为了寻找广告预防的候选人,我们探索天然BACE1抑制剂的努力导致了Nobiletin,Tangeretin和Sinensetin的聚甲氧氧基荧光酮(PMF)的代表性化合物。 Tangeretin表现出最强的Bace1抑制(IC 50,4.9×10?5米),其次是Nobiletin和Sinensetin,IC 50值分别为5.9×10?5 m和6.3×10?5米。此外,所有化合物的所有化合物以非竞争性方式与基材反应。与Bace1的复合物的对接分析结果表明,与橘子的两个氧原子粘合的Bace1氢气的Ser10和Thr232残基,而三个另外的Bace1残基(Ala157,Val336和Thr232)与三种氧in的三个氧原子相互作用。此外,Sinensetin通过Tyr71,Lys75和Trp76的氮原子和Tyr198的氧原子形成了四种氢键。此外,Sinensetin,Nobiletin和Nangeretin的最拟合复合物的最低能量构象分别是α.7.2,α7.0和α.6.8kcal/ mol。我们的结果表明,这些聚甲氧基硫酮(PMF)可能被认为是可以降低AD中Aβ产生的有前途的Bace1抑制剂。

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