黄嘌呤氧化酶
化学
高尿酸血症
虚拟筛选
抑制性突触后电位
四肽
盐桥
氢键
对接(动物)
肽
生物化学
尿酸
立体化学
酶
突变体
生物
分子
药物发现
有机化学
医学
基因
护理部
神经科学
作者
Zhipeng Yu,Ruotong Kan,Sijia Wu,Guo Hui,Wenzhu Zhao,Long Ding,Fang Zheng,Jingbo Liu
摘要
Abstract BACKGROUND There has been growing interest in the use of xanthine oxidase (XO) as a therapeutic agent to prevent gout and hyperuricemia. In the present study, XO inhibitory peptides were identified from tuna protein by virtual screening, and molecular docking was used to elicit the interaction mechanism between XO and peptides. RESULTS A novel tetrapeptide, EEAK, exhibited high XO inhibitory activity with an IC 50 of 173.00 ± 0.06 μM. Molecular docking analysis revealed that EEAK bound with the pivotal residues of XO's active sites (i.e., Glu802, Arg880, Glu1261) through two conventional hydrogen bond interactions, two attractive charge interactions, and one salt bridge. EEAK could also bind with the residues Phe649, Leu648, Lys771, Ser876, Phe914, and Thr1010 of XO. CONCLUSION This study suggested that conventional hydrogen bond interactions and electrostatic interactions play an important role in XO inhibition. The novel XO inhibitory peptide EEAK from tuna protein could be used as potential candidate for controlling gout and hyperuricemia. © 2020 Society of Chemical Industry
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