Literature DB >> 11920822

Genetic susceptibility to respiratory syncytial virus infection in inbred mice.

James M Stark1, Susan A McDowell, Vincent Koenigsknecht, Daniel R Prows, John E Leikauf, Ann Marie Le Vine, George D Leikauf.   

Abstract

Differences in the severity of respiratory syncytial virus (RSV)-induced lower respiratory disease in infants have been attributed to multiple environmental and genetic factors. To identify the genetic factor(s) influencing RSV susceptibility, we examined RSV infection in eight inbred mouse strains. Lung RSV titers differed significantly between mouse strains: the RSV titers were 15-fold higher in AKR/J (permissive) mice compared with C57BL/6J (resistant) mice at 4 days after inoculation. This strain-specific difference in RSV titers suggested that susceptibility to RSV infection was attributable to genetic differences between strains. To examine the mode of inheritance of RSV susceptibility, F1 and backcross (F1 x AKR/J) progeny were infected and RSV titers determined. RSV titers in the F1 progeny were similar to those found in the resistant (C57BL/6J) parent, suggesting resistance was inherited as a dominant trait. The distribution of RSV titers in backcross progeny were discordant with that predicted for a single gene effect, suggesting susceptibility was influenced by more than one gene. These data suggest that RSV susceptibility is a multigenic trait that should be amenable to resolution by genomic analysis. Copyright 2002 Wiley-Liss, Inc.

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Year:  2002        PMID: 11920822     DOI: 10.1002/jmv.2196

Source DB:  PubMed          Journal:  J Med Virol        ISSN: 0146-6615            Impact factor:   2.327


  39 in total

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5.  C5 modulates airway hyperreactivity and pulmonary eosinophilia during enhanced respiratory syncytial virus disease by decreasing C3a receptor expression.

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6.  Disruption of the airway epithelial barrier in a murine model of respiratory syncytial virus infection.

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7.  Genomewide association analysis of respiratory syncytial virus infection in mice.

Authors:  James M Stark; M Michael Barmada; Abby V Winterberg; Nilanjana Majumber; William J Gibbons; Marilyn A Stark; Maureen A Sartor; Mario Medvedovic; Jay Kolls; Kiflai Bein; Beena Mailaparambil; Marcus Krueger; Andrea Heinzmann; George D Leikauf; Daniel R Prows
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8.  Mechanical ventilation enhances lung inflammation and caspase activity in a model of mouse pneumovirus infection.

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Review 9.  Human genetic factors and respiratory syncytial virus disease severity.

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10.  Respiratory syncytial virus infection reduces lung inflammation and fibrosis in mice exposed to vanadium pentoxide.

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Journal:  Respir Res       Date:  2010-02-22
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