数字农科院2.0

Influence of EGCG oxidation on inhibitory activity against the SARS-CoV-2 main protease

文献类型: 外文期刊

作者: Yufeng He;Meng Hao;Mingchuan Yang;Huimin Guo;Margaret P. Rayman;Xiangchun Zhang;Jinsong Zhang

作者机构:

关键词: EGCG;SARS-CoV-2 main protease;Thiol

期刊名称: International Journal of Biological Macromolecules

ISSN: 0141-8130

年卷期: 2024 年 274 卷

页码:

收录情况: SCIE(2024版) ; ; EI(2024版)

摘要: SARS-CoV-2 main protease (Mpro) is a well-recognized target for COVID-19 therapy. Green tea (−)-epigallocatechin-3-gallate (EGCG) possesses Mpro-inhibitory activity; however, the influence of EGCG oxidation on its inhibition activity remains obscure, given its high oxidation propensity. This study reveals that prolonged EGCG oxidation in the presence of Mpro dramatically increases its inhibitory activity with an IC50 of 0.26 μM. The inhibitory mechanism is that EGCG-quinone preferentially binds the active site Mpro-Cys145-SH, which forms a quinoprotein. Though Mpro is present in the cell lysate, EGCG preferentially depletes its thiols. Non-cytotoxic EGCG effectively generates a quinoprotein in living cells, thus EGCG might selectively inhibit Mpro in SARS-CoV-2 infected cells. Chlorogenic acid facilitates EGCG oxidation. Together, they synergistically deplete multiple Mpro thiols though this is not more beneficial than EGCG alone. By contrast, excessive EGCG oxidation prior to incubation with Mpro largely compromises its inhibitory activity. Overall, the low IC50 and the high selectivity imply that EGCG is a promising dietary Mpro inhibitor. While EGCG oxidation in the presence of Mpro has a pivotal role in inhibition, enhancing EGCG oxidation by chlorogenic acid no longer increases its inhibitory potential. EGCG oxidation in the absence of Mpro should be avoided to maximize its Mpro-inhibitory activity.

分类号:

  • 相关文献

[1]表没食子儿茶素没食子酸酯参与老年小鼠心脏SERCA2a的调控及其机制. 全珺珺,潘博,贾忠莉,刘玲娟,田杰. 2017

[2]茶与健康研究的前景与挑战. 陈宗懋. 2019

[3]茶叶中EGCG对小鼠抗凝血作用实验研究. 王贤波,成浩,赵芸,黄海涛. 2011

[4]EGCG甲基化衍生物的清除DPPH自由基活性和总抗氧化活性. 吕海鹏,林智,谭俊峰,郭丽,张悦,费旭元. 2011

[5]茶与健康专题(六)茶的杀菌和抗病毒功效. 陈宗懋. 2009

[6]传统SMB、Varicol和Partial-discard工艺分离纯化ECG和EGCG的比较研究. 黄永东,江和源,江用文,张建勇,王斌,白艳,文志浩,王伟伟. 2011

[7]茶与健康专题(八)茶叶抗癌的效果:过去、现在和将来. 陈宗懋. 2009

[8]介孔氧化硅SBA-15作为高效吸附剂用于绿茶提取物中EGCG的选择性吸附研究. 马桂岑,章剑扬,陈利燕,张颖彬,刘新. 2014

[9]乙酰化EGCG的制备研究. 刘晓辉,江和源,张建勇,袁新跃,崔宏春. 2009

[10]SMB、Varicol和Partial-discard工艺分离茶多酚. 黄永东,江和源,江用文,王斌. 2010

[11]EGCG乙酰化衍生物清除自由基活性的构效分析. 王伟伟,苏威,江和源,张建勇,施莉婷. 2017

[12]EGCG纳米载体制备技术及其对EGCG活性影响的研究进展. 祁洁,徐颖磊,梁文怡,费朵,乌昕儿,金建昌,杜琪珍,许勇泉,高颖. 2017

[13]PBD和RSM联用优化聚酯型儿茶素A化学合成技术参数. 张建勇,陈琳,崔宏春,王伟伟,薛金金,熊春华,江和源. 2020

[14]茶叶中EGCG的制备化分离新技术. 杜琪珍,沈星荣,蒋迎. 2000

[15]儿茶素生物医用纳米材料研究进展. 俞蓉欣,郑芹芹,陈红平,张劲松,张相春. 2022

[16]EGCG和异鼠李素的细胞抗氧化协同作用. 潘俊坤,焦中高,张强. 2023

[17]The Effects And Mechanisms Of E.pigallocatechin-3-Gallate On Reversing Multidrug R esistance In Cancer. Sun, Lingli,Zhang, Wenjuan,Lai, Xingfei,Sun, Shili,Zhang, Wenji,Xiang, Limin,Li, Qiuhua. 2019

[18]The fungal laccase-catalyzed oxidation of EGCG and the characterization of its products. Lee, Yeonhee,Lin, Zhi,Du, Guocheng,Deng, Zhuangmei,Yang, Haiquan,Bai, Wenxiang.

[19]Combined Effect Of Ph And T.emperature On The Stability A nd Antioxidant Capacity Of Epigallocatechin Gallate (Egcg) In Aqueous System. Xu, YQ, Yu, PG, Zhou, WB. 2019

[20]The biosynthesis of EGCG, theanine and caffeine in response to temperature is mediated by hormone signal transduction factors in tea plant (Camellia sinensis L.). Qiufang Zhu,Lijia Liu,Xiaofeng Lu,Xinxin Du,Ping Xiang,Bosi Cheng,Meng Tan,Jiaxin Huang,Lijiao Wu,Weilong Kong,Yutao Shi,Liangyu Wu,Jinke Lin. 2023

作者其他论文 更多>>