Literature DB >> 25158218

Elucidation of the Ebola virus VP24 cellular interactome and disruption of virus biology through targeted inhibition of host-cell protein function.

Isabel García-Dorival1, Weining Wu, Stuart Dowall, Stuart Armstrong, Olivier Touzelet, Jonathan Wastling, John N Barr, David Matthews, Miles Carroll, Roger Hewson, Julian A Hiscox.   

Abstract

Viral pathogenesis in the infected cell is a balance between antiviral responses and subversion of host-cell processes. Many viral proteins specifically interact with host-cell proteins to promote virus biology. Understanding these interactions can lead to knowledge gains about infection and provide potential targets for antiviral therapy. One such virus is Ebola, which has profound consequences for human health and causes viral hemorrhagic fever where case fatality rates can approach 90%. The Ebola virus VP24 protein plays a critical role in the evasion of the host immune response and is likely to interact with multiple cellular proteins. To map these interactions and better understand the potential functions of VP24, label-free quantitative proteomics was used to identify cellular proteins that had a high probability of forming the VP24 cellular interactome. Several known interactions were confirmed, thus placing confidence in the technique, but new interactions were also discovered including one with ATP1A1, which is involved in osmoregulation and cell signaling. Disrupting the activity of ATP1A1 in Ebola-virus-infected cells with a small molecule inhibitor resulted in a decrease in progeny virus, thus illustrating how quantitative proteomics can be used to identify potential therapeutic targets.

Entities:  

Keywords:  Ebola virus; VP24 protein; antiviral; inhibitor; interactome; label free proteomics; proteomics; virus

Mesh:

Substances:

Year:  2014        PMID: 25158218     DOI: 10.1021/pr500556d

Source DB:  PubMed          Journal:  J Proteome Res        ISSN: 1535-3893            Impact factor:   4.466


  39 in total

1.  Conformational changes required for reovirus cell entry are sensitive to pH.

Authors:  Deepti Thete; Pranav Danthi
Journal:  Virology       Date:  2015-05-22       Impact factor: 3.616

Review 2.  Rodent-Adapted Filoviruses and the Molecular Basis of Pathogenesis.

Authors:  Logan Banadyga; Michael A Dolan; Hideki Ebihara
Journal:  J Mol Biol       Date:  2016-05-14       Impact factor: 5.469

3.  Understanding of Zaire ebolavirus-human protein interaction for drug repurposing.

Authors:  Mathavan Muthaiyan; Shilpa Sri Pushan; Leimarembi Devi Naorem; Amouda Venkatesan
Journal:  Virusdisease       Date:  2020-03-07

4.  Chloroquine inhibited Ebola virus replication in vitro but failed to protect against infection and disease in the in vivo guinea pig model.

Authors:  Stuart D Dowall; Andrew Bosworth; Robert Watson; Kevin Bewley; Irene Taylor; Emma Rayner; Laura Hunter; Geoff Pearson; Linda Easterbrook; James Pitman; Roger Hewson; Miles W Carroll
Journal:  J Gen Virol       Date:  2015-12       Impact factor: 3.891

5.  Leveraging Experimental Details for an Improved Understanding of Host-Pathogen Interactome.

Authors:  Mais Ammari; Fiona McCarthy; Bindu Nanduri
Journal:  Curr Protoc Bioinformatics       Date:  2018-03

6.  Interactome analysis of the human respiratory syncytial virus RNA polymerase complex identifies protein chaperones as important cofactors that promote L-protein stability and RNA synthesis.

Authors:  Diane C Munday; Weining Wu; Nikki Smith; Jenna Fix; Sarah Louise Noton; Marie Galloux; Olivier Touzelet; Stuart D Armstrong; Jenna M Dawson; Waleed Aljabr; Andrew J Easton; Marie-Anne Rameix-Welti; Andressa Peres de Oliveira; Fernando M Simabuco; Armando M Ventura; David J Hughes; John N Barr; Rachel Fearns; Paul Digard; Jean-François Eléouët; Julian A Hiscox
Journal:  J Virol       Date:  2014-10-29       Impact factor: 5.103

7.  Cellular interactome analysis of vaccinia virus K7 protein identifies three transport machineries as binding partners for K7.

Authors:  Ye Li; Leiliang Zhang; Youyang Ke
Journal:  Virus Genes       Date:  2017-08-16       Impact factor: 2.198

8.  Protein Interaction Mapping Identifies RBBP6 as a Negative Regulator of Ebola Virus Replication.

Authors:  Jyoti Batra; Judd F Hultquist; Dandan Liu; Olena Shtanko; John Von Dollen; Laura Satkamp; Gwendolyn M Jang; Priya Luthra; Toni M Schwarz; Gabriel I Small; Eusondia Arnett; Manu Anantpadma; Ann Reyes; Daisy W Leung; Robyn Kaake; Paige Haas; Carson B Schmidt; Larry S Schlesinger; Douglas J LaCount; Robert A Davey; Gaya K Amarasinghe; Christopher F Basler; Nevan J Krogan
Journal:  Cell       Date:  2018-12-13       Impact factor: 66.850

9.  Human Ebola virus infection in West Africa: a review of available therapeutic agents that target different steps of the life cycle of Ebola virus.

Authors:  Kang Yiu Lai; Wing Yiu George Ng; Fan Fanny Cheng
Journal:  Infect Dis Poverty       Date:  2014-11-28       Impact factor: 4.520

10.  Temporal and spatial analysis of the 2014-2015 Ebola virus outbreak in West Africa.

Authors:  Miles W Carroll; David A Matthews; Julian A Hiscox; Michael J Elmore; Georgios Pollakis; Andrew Rambaut; Roger Hewson; Isabel García-Dorival; Joseph Akoi Bore; Raymond Koundouno; Saïd Abdellati; Babak Afrough; John Aiyepada; Patience Akhilomen; Danny Asogun; Barry Atkinson; Marlis Badusche; Amadou Bah; Simon Bate; Jan Baumann; Dirk Becker; Beate Becker-Ziaja; Anne Bocquin; Benny Borremans; Andrew Bosworth; Jan Peter Boettcher; Angela Cannas; Fabrizio Carletti; Concetta Castilletti; Simon Clark; Francesca Colavita; Sandra Diederich; Adomeh Donatus; Sophie Duraffour; Deborah Ehichioya; Heinz Ellerbrok; Maria Dolores Fernandez-Garcia; Alexandra Fizet; Erna Fleischmann; Sophie Gryseels; Antje Hermelink; Julia Hinzmann; Ute Hopf-Guevara; Yemisi Ighodalo; Lisa Jameson; Anne Kelterbaum; Zoltan Kis; Stefan Kloth; Claudia Kohl; Miša Korva; Annette Kraus; Eeva Kuisma; Andreas Kurth; Britta Liedigk; Christopher H Logue; Anja Lüdtke; Piet Maes; James McCowen; Stéphane Mély; Marc Mertens; Silvia Meschi; Benjamin Meyer; Janine Michel; Peter Molkenthin; César Muñoz-Fontela; Doreen Muth; Edmund N C Newman; Didier Ngabo; Lisa Oestereich; Jennifer Okosun; Thomas Olokor; Racheal Omiunu; Emmanuel Omomoh; Elisa Pallasch; Bernadett Pályi; Jasmine Portmann; Thomas Pottage; Catherine Pratt; Simone Priesnitz; Serena Quartu; Julie Rappe; Johanna Repits; Martin Richter; Martin Rudolf; Andreas Sachse; Kristina Maria Schmidt; Gordian Schudt; Thomas Strecker; Ruth Thom; Stephen Thomas; Ekaete Tobin; Howard Tolley; Jochen Trautner; Tine Vermoesen; Inês Vitoriano; Matthias Wagner; Svenja Wolff; Constanze Yue; Maria Rosaria Capobianchi; Birte Kretschmer; Yper Hall; John G Kenny; Natasha Y Rickett; Gytis Dudas; Cordelia E M Coltart; Romy Kerber; Damien Steer; Callum Wright; Francis Senyah; Sakoba Keita; Patrick Drury; Boubacar Diallo; Hilde de Clerck; Michel Van Herp; Armand Sprecher; Alexis Traore; Mandiou Diakite; Mandy Kader Konde; Lamine Koivogui; N'Faly Magassouba; Tatjana Avšič-Županc; Andreas Nitsche; Marc Strasser; Giuseppe Ippolito; Stephan Becker; Kilian Stoecker; Martin Gabriel; Hervé Raoul; Antonino Di Caro; Roman Wölfel; Pierre Formenty; Stephan Günther
Journal:  Nature       Date:  2015-06-17       Impact factor: 49.962

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