化学
蛋白酶
猝灭(荧光)
圆二色性
范德瓦尔斯力
立体化学
对接(动物)
疏水效应
结合常数
酶
蛋白酵素
生物化学
结合位点
分子
荧光
有机化学
物理
护理部
医学
量子力学
作者
Wenjin Li,Xiaoyu Chang,Hang Zhou,Wenquan Yu,Ruiyong Wang,Junbiao Chang
摘要
ABSTRACT The SARS‐CoV‐2 main protease (Mpro) is an essential enzyme that promotes viral transcription and replication. Mpro conserved nature in different variants and its nonoverlapping nature with human proteases make it an attractive target for therapeutic intervention against SARS‐CoV‐2. In this work, the interaction mechanism between Mpro and diindolylmethane derivatives was investigated by molecular docking, enzymatic inhibition assay, UV–vis, fluorescence spectroscopy, and circular dichroism spectroscopy. Results of IC 50 values show that 1p (9.87 μM) was the strongest inhibitor for Mpro in this work, which significantly inhibited the activity of Mpro. The binding constant (4.07 × 10 5 Lmol −1 ), the quenching constant (5.41 × 10 5 Lmol −1 ), and thermodynamic parameters indicated that the quenching mode of 1p was static quenching, and the main driving forces between 1p and Mpro are hydrogen bond and van der Waals force. The influence of molecular structure on the binding is investigated. Chlorine atoms and methoxy groups are favorable for the diindolylmethane derivative inhibitors of Mpro. This work confirms the changes in the microenvironment of Mpro by 1p , and provides clues for the design of potential inhibitors.
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