Literature DB >> 21345285

Emerging paramyxoviruses: molecular mechanisms and antiviral strategies.

Hector C Aguilar1, Benhur Lee.   

Abstract

In recent years, several paramyxoviruses have emerged to infect humans, including previously unidentified zoonoses. Hendra and Nipah viruses (henipaviruses within this family) were first identified in the 1990s in Australia, Malaysia and Singapore, causing epidemics with high mortality and morbidity rates in affected animals and humans. Other paramyxoviruses, such as Menangle virus, Tioman virus, human metapneumovirus and avian paramyxovirus 1, which cause less morbidity in humans, have also been recently identified. Although the Paramyxoviridae family of viruses has been previously recognised as biomedically and veterinarily important, the recent emergence of these paramyxoviruses has focused our attention on this family. Antiviral drugs can be designed to target specific important determinants of the viral life cycle. Therefore, identifying and understanding the mechanistic underpinnings of viral entry, replication, assembly and budding will be critical in the development of antiviral therapeutic agents. This review focuses on the molecular mechanisms discovered and the antiviral strategies pursued in recent years for emerging paramyxoviruses, with particular emphasis on viral entry and exit mechanisms.

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Year:  2011        PMID: 21345285      PMCID: PMC3253018          DOI: 10.1017/S1462399410001754

Source DB:  PubMed          Journal:  Expert Rev Mol Med        ISSN: 1462-3994            Impact factor:   5.600


  145 in total

1.  Mini-plasmin found in the epithelial cells of bronchioles triggers infection by broad-spectrum influenza A viruses and Sendai virus.

Authors:  M Murakami; T Towatari; M Ohuchi; M Shiota; M Akao; Y Okumura; M A Parry; H Kido
Journal:  Eur J Biochem       Date:  2001-05

2.  Potent neutralization of Hendra and Nipah viruses by human monoclonal antibodies.

Authors:  Zhongyu Zhu; Antony S Dimitrov; Katharine N Bossart; Gary Crameri; Kimberly A Bishop; Vidita Choudhry; Bruce A Mungall; Yan-Ru Feng; Anil Choudhary; Mei-Yun Zhang; Yang Feng; Lin-Fa Wang; Xiaodong Xiao; Bryan T Eaton; Christopher C Broder; Dimiter S Dimitrov
Journal:  J Virol       Date:  2006-01       Impact factor: 5.103

3.  Evil versus 'eph-ective' use of ephrin-B2.

Authors:  Benhur Lee; Zeynep Akyol Ataman; Lei Jin
Journal:  Nat Struct Mol Biol       Date:  2008-06       Impact factor: 15.369

4.  Mutations in the measles virus C protein that up regulate viral RNA synthesis.

Authors:  G L Reutter; C Cortese-Grogan; J Wilson; S A Moyer
Journal:  Virology       Date:  2001-06-20       Impact factor: 3.616

5.  The pathology of feral rodents in North Queensland.

Authors:  J E Mesina; R S Campbell; J S Glazebrook; D B Copeman; R H Johnson
Journal:  Tropenmed Parasitol       Date:  1974-03

Review 6.  Galectin-1: a small protein with major functions.

Authors:  Isabelle Camby; Marie Le Mercier; Florence Lefranc; Robert Kiss
Journal:  Glycobiology       Date:  2006-07-13       Impact factor: 4.313

7.  Structural basis of Nipah and Hendra virus attachment to their cell-surface receptor ephrin-B2.

Authors:  Thomas A Bowden; A Radu Aricescu; Robert J C Gilbert; Jonathan M Grimes; E Yvonne Jones; David I Stuart
Journal:  Nat Struct Mol Biol       Date:  2008-05-18       Impact factor: 15.369

8.  Role of endocytosis and cathepsin-mediated activation in Nipah virus entry.

Authors:  Sandra Diederich; Lena Thiel; Andrea Maisner
Journal:  Virology       Date:  2008-03-14       Impact factor: 3.616

9.  Henipavirus RNA in African bats.

Authors:  Jan Felix Drexler; Victor Max Corman; Florian Gloza-Rausch; Antje Seebens; Augustina Annan; Anne Ipsen; Thomas Kruppa; Marcel A Müller; Elisabeth K V Kalko; Yaw Adu-Sarkodie; Samuel Oppong; Christian Drosten
Journal:  PLoS One       Date:  2009-07-28       Impact factor: 3.240

10.  A mature and fusogenic form of the Nipah virus fusion protein requires proteolytic processing by cathepsin L.

Authors:  Cara Theresia Pager; Willie Warren Craft; Jared Patch; Rebecca Ellis Dutch
Journal:  Virology       Date:  2006-02-07       Impact factor: 3.616

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  18 in total

1.  Third Helical Domain of the Nipah Virus Fusion Glycoprotein Modulates both Early and Late Steps in the Membrane Fusion Cascade.

Authors:  J Lizbeth Reyes Zamora; Victoria Ortega; Gunner P Johnston; Jenny Li; Nicole M André; I Abrrey Monreal; Erik M Contreras; Gary R Whittaker; Hector C Aguilar
Journal:  J Virol       Date:  2020-09-15       Impact factor: 5.103

2.  Novel Functions of Hendra Virus G N-Glycans and Comparisons to Nipah Virus.

Authors:  Birgit G Bradel-Tretheway; Qian Liu; Jacquelyn A Stone; Samantha McInally; Hector C Aguilar
Journal:  J Virol       Date:  2015-05-06       Impact factor: 5.103

3.  Nipah virion entry kinetics, composition, and conformational changes determined by enzymatic virus-like particles and new flow virometry tools.

Authors:  Matthew Landowski; Jeffrey Dabundo; Qian Liu; Anthony V Nicola; Hector C Aguilar
Journal:  J Virol       Date:  2014-10-01       Impact factor: 5.103

4.  Nipah virus attachment glycoprotein stalk C-terminal region links receptor binding to fusion triggering.

Authors:  Qian Liu; Birgit Bradel-Tretheway; Abrrey I Monreal; Jonel P Saludes; Xiaonan Lu; Anthony V Nicola; Hector C Aguilar
Journal:  J Virol       Date:  2014-11-26       Impact factor: 5.103

5.  Cytoplasmic Motifs in the Nipah Virus Fusion Protein Modulate Virus Particle Assembly and Egress.

Authors:  Gunner P Johnston; Erik M Contreras; Jeffrey Dabundo; Bryce A Henderson; Keesha M Matz; Victoria Ortega; Alfredo Ramirez; Arnold Park; Hector C Aguilar
Journal:  J Virol       Date:  2017-04-28       Impact factor: 5.103

6.  A Hydrophobic Target: Using the Paramyxovirus Fusion Protein Transmembrane Domain To Modulate Fusion Protein Stability.

Authors:  Chelsea T Barrett; Stacy R Webb; Rebecca Ellis Dutch
Journal:  J Virol       Date:  2019-08-13       Impact factor: 5.103

Review 7.  Henipavirus receptor usage and tropism.

Authors:  Olivier Pernet; Yao E Wang; Benhur Lee
Journal:  Curr Top Microbiol Immunol       Date:  2012       Impact factor: 4.291

8.  Exploring the Human-Nipah Virus Protein-Protein Interactome.

Authors:  Luis Martinez-Gil; Natalia M Vera-Velasco; Ismael Mingarro
Journal:  J Virol       Date:  2017-11-14       Impact factor: 5.103

9.  N-Glycans on the Nipah virus attachment glycoprotein modulate fusion and viral entry as they protect against antibody neutralization.

Authors:  Scott B Biering; Andrew Huang; Andy T Vu; Lindsey R Robinson; Birgit Bradel-Tretheway; Eric Choi; Benhur Lee; Hector C Aguilar
Journal:  J Virol       Date:  2012-08-22       Impact factor: 5.103

10.  Highly diverse morbillivirus-related paramyxoviruses in wild fauna of the southwestern Indian Ocean Islands: evidence of exchange between introduced and endemic small mammals.

Authors:  David A Wilkinson; Julien Mélade; Muriel Dietrich; Beza Ramasindrazana; Voahangy Soarimalala; Erwan Lagadec; Gildas le Minter; Pablo Tortosa; Jean-Michel Heraud; Xavier de Lamballerie; Steven M Goodman; Koussay Dellagi; Herve Pascalis
Journal:  J Virol       Date:  2014-05-14       Impact factor: 5.103

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