Identification of Ellagic Acid from Plant Rhodiola rosea L. as an Anti-Ebola Virus Entry Inhibitor

被引:40
作者
Cui, Qinghua [1 ,2 ]
Du, Ruikun [1 ,2 ]
Anantpadma, Manu [3 ]
Schafer, Adam [2 ]
Hou, Lin [1 ]
Tian, Jingzhen [1 ]
Davey, Robert A. [3 ]
Cheng, Han [2 ]
Rong, Lijun [2 ]
机构
[1] Shandong Univ Tradit Chinese Med, Coll Pharm, Jinan 250355, Shandong, Peoples R China
[2] Univ Illinois, Coll Med, Dept Microbiol & Immunol, Chicago, IL 60612 USA
[3] Texas Biomed Res Inst, Dept Virol & Immunol, San Antonio, TX 78227 USA
来源
VIRUSES-BASEL | 2018年 / 10卷 / 04期
关键词
Ebola; Marburg; Rhodiola rosea; ellagic acid; gallic acid; Traditional Chinese medicine; NIEMANN-PICK C1; FILOVIRUS ENTRY; SMALL-MOLECULE; NATURAL-PRODUCTS; DRUG DISCOVERY; GALLIC ACID; VIRAL ENTRY; GLYCOPROTEIN; INFECTION; CELLS;
D O I
10.3390/v10040152
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The recent 2014-2016 West African Ebola virus epidemic underscores the need for the development of novel anti-Ebola therapeutics, due to the high mortality rates of Ebola virus infections and the lack of FDA-approved vaccine or therapy that is available for the prevention and treatment. Traditional Chinese medicines (TCMs) represent a huge reservoir of bioactive chemicals and many TCMs have been shown to have antiviral activities. 373 extracts from 128 TCMs were evaluated using a high throughput assay to screen for inhibitors of Ebola virus cell entry. Extract of Rhodiola rosea displayed specific and potent inhibition against cell entry of both Ebola virus and Marburg virus. In addition, twenty commercial compounds that were isolated from Rhodiola rosea were evaluated using the pseudotyped Ebola virus entry assay, and it was found that ellagic acid and gallic acid, which are two structurally related compounds, are the most effective ones. The activity of the extract and the two pure compounds were validated using infectious Ebola virus. The time-of-addition experiments suggest that, mechanistically, the Rhodiola rosea extract and the effective compounds act at an early step in the infection cycle following initial cell attachment, but prior to viral/cell membrane fusion. Our findings provide evidence that Rhodiola rosea has potent anti-filovirus properties that may be developed as a novel anti-Ebola treatment.
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页数:12
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共 44 条
[1]   Large-Scale Screening and Identification of Novel Ebola Virus and Marburg Virus Entry Inhibitors [J].
Anantpadma, Manu ;
Kouznetsova, Jennifer ;
Wang, Hang ;
Huang, Ruili ;
Kolokoltsov, Andrey ;
Guha, Rajarshi ;
Lindstrom, Aaron R. ;
Shtanko, Olena ;
Simeonov, Anton ;
Maloney, David J. ;
Maury, Wendy ;
LaCount, Douglas J. ;
Jadhav, Ajit ;
Davey, Robert A. .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2016, 60 (08) :4471-4481
[2]   Release of cellular proteases into the acidic extracellular milieu exacerbates Ebola virus-induced cell damage [J].
Barrientos, Laura G. ;
Rollin, Pierre E. .
VIROLOGY, 2007, 358 (01) :1-9
[3]   Novel Small Molecule Entry Inhibitors of Ebola Virus [J].
Basu, Arnab ;
Mills, Debra M. ;
Mitchell, Daniel ;
Ndungo, Esther ;
Williams, John D. ;
Herbert, Andrew S. ;
Dye, John M. ;
Moir, Donald T. ;
Chandran, Kartik ;
Patterson, Jean L. ;
Rong, Lijun ;
Bowlin, Terry L. .
JOURNAL OF INFECTIOUS DISEASES, 2015, 212 :S425-S434
[4]   Cathepsin Cleavage Potentiates the Ebola Virus Glycoprotein To Undergo a Subsequent Fusion-Relevant Conformational Change [J].
Brecher, Matthew ;
Schornberg, Kathryn L. ;
Delos, Sue E. ;
Fusco, Marnie L. ;
Saphire, Erica Ollmann ;
White, Judith M. .
JOURNAL OF VIROLOGY, 2012, 86 (01) :364-372
[5]   Ebola virus entry requires the cholesterol transporter Niemann-Pick C1 [J].
Carette, Jan E. ;
Raaben, Matthijs ;
Wong, Anthony C. ;
Herbert, Andrew S. ;
Obernosterer, Gregor ;
Mulherkar, Nirupama ;
Kuehne, Ana I. ;
Kranzusch, Philip J. ;
Griffin, April M. ;
Ruthel, Gordon ;
Dal Cin, Paola ;
Dye, John M. ;
Whelan, Sean P. ;
Chandran, Kartik ;
Brummelkamp, Thijn R. .
NATURE, 2011, 477 (7364) :340-U115
[6]   Endosomal proteolysis of the Ebola virus glycoprotein is necessary for infection [J].
Chandran, K ;
Sullivan, NJ ;
Felbor, U ;
Whelan, SP ;
Cunningham, JM .
SCIENCE, 2005, 308 (5728) :1643-1645
[7]   Identification of a coumarin-based antihistamine-like small molecule as an anti-filoviral entry inhibitor [J].
Cheng, Han ;
Schafer, Adam ;
Soloveva, Veronica ;
Gharaibeh, Dima ;
Kenny, Tara ;
Retterer, Cary ;
Zamani, Rouzbeh ;
Bavari, Sina ;
Peet, Norton P. ;
Rong, Lijun .
ANTIVIRAL RESEARCH, 2017, 145 :24-32
[8]   Inhibition of Ebola and Marburg Virus Entry by G Protein-Coupled Receptor Antagonists [J].
Cheng, Han ;
Lear-Rooney, Calli M. ;
Johansen, Lisa ;
Varhegyi, Elizabeth ;
Chen, Zheng W. ;
Olinger, Gene G. ;
Rong, Lijun .
JOURNAL OF VIROLOGY, 2015, 89 (19) :9932-9938
[9]   Anti-Human Rhinovirus Activity of Gallic Acid Possessing Antioxidant Capacity [J].
Choi, Hwa Jung ;
Song, Jae Hyoung ;
Bhatt, Lok Ranjan ;
Baek, Seung Hwa .
PHYTOTHERAPY RESEARCH, 2010, 24 (09) :1292-1296
[10]   Small molecule inhibitors reveal Niemann-Pick C1 is essential for Ebola virus infection [J].
Cote, Marceline ;
Misasi, John ;
Ren, Tao ;
Bruchez, Anna ;
Lee, Kyungae ;
Filone, Claire Marie ;
Hensley, Lisa ;
Li, Qi ;
Ory, Daniel ;
Chandran, Kartik ;
Cunningham, James .
NATURE, 2011, 477 (7364) :344-U122