Literature DB >> 8799206

Neurovirulence of influenza A virus.

A C Ward1.   

Abstract

Infection of mouse brain with influenza A virus has provided a valuable model for investigating viral adaptation and virulence. These studies have indicated important roles for the neuraminidase (NA), matrix (M), non-structural (NS) and haemagglutinin (HA) genes of the virus in determining neurovirulence. For the NA, three changes close to the active site have been identified in the neurovirulent strains, which also display altered enzyme properties, including changes in specificity. In the M gene, two specific amino acid substitutions in the M1 protein have been observed, Ala41-->Val and Thr139-->Ala, which correlate with increased virulence for mouse. Such changes are likely to affect the pH-dependent association/dissociation of M1 with the viral ribonucleoprotein, as well as growth and virulence. The changes in the NS gene in the neurovirulent strains cause alterations in the mRNA secondary structure to mask the 3' splice site, and correlate with reduced splicing of the NS gene in these strains. Finally, the increased virulence of the HA gene occurs by at least three different mechanisms: loss of a glycosylation site, a change at the cleavage site, and a substitution which may increase the pH of fusion. These observations define a useful set of parameters with which to analyse epidemic virus strains that have been associated with elevated CNS symptoms in humans. In addition, the changes present in the neurovirulent influenza strains show interesting parallels to those in the neurovirulent derivatives of other viruses, suggesting different viruses utilise common strategies to permit replication in the brain.

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Year:  1996        PMID: 8799206     DOI: 10.3109/13550289609146876

Source DB:  PubMed          Journal:  J Neurovirol        ISSN: 1355-0284            Impact factor:   2.643


  23 in total

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Review 3.  Virulence of influenza A virus for mouse lung.

Authors:  A C Ward
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5.  Sequence of the 1918 pandemic influenza virus nonstructural gene (NS) segment and characterization of recombinant viruses bearing the 1918 NS genes.

Authors:  C F Basler; A H Reid; J K Dybing; T A Janczewski; T G Fanning; H Zheng; M Salvatore; M L Perdue; D E Swayne; A García-Sastre; P Palese; J K Taubenberger
Journal:  Proc Natl Acad Sci U S A       Date:  2001-02-27       Impact factor: 11.205

6.  Detection of mouse-adapted human influenza virus in the olfactory bulbs of mice within hours after intranasal infection.

Authors:  Jeannine A Majde; Stewart G Bohnet; Georgeann A Ellis; Lynn Churchill; Victor Leyva-Grado; Melissa Wu; Eva Szentirmai; Abdur Rehman; James M Krueger
Journal:  J Neurovirol       Date:  2007-10       Impact factor: 2.643

7.  In vitro and in vivo replication of influenza A H1N1 WSN33 viruses with different M1 proteins.

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8.  Wild-type and attenuated influenza virus infection of the neonatal rat brain.

Authors:  Steven Rubin; Dong Liu; Mikhail Pletnikov; Jonathan McCullers; Zhiping Ye; Roland Levandowski; Jan Johannessen; Kathryn Carbone
Journal:  J Neurovirol       Date:  2004-10       Impact factor: 2.643

9.  Changes in mumps virus gene sequence associated with variability in neurovirulent phenotype.

Authors:  Steven A Rubin; Georgios Amexis; Mikhail Pletnikov; Zongqi Li; Jacqueline Vanderzanden; Jeremy Mauldin; Christian Sauder; Tahir Malik; Konstantin Chumakov; Kathryn M Carbone
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Review 10.  Molecular determinants of influenza virus pathogenesis in mice.

Authors:  Ram P Kamal; Jaqueline M Katz; Ian A York
Journal:  Curr Top Microbiol Immunol       Date:  2014       Impact factor: 4.291

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