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Genetic determinants of dengue type 4 virus neurovirulence for mice
H Kawano1, V Rostapshov, L Rosen
1Molecular Viral Biology Section, National Institute of Allergy and Infectious Diseases, Bethesda, Maryland 20892.
Abstract:
Mouse-adapted dengue type 4 virus (DEN4) strain H241 is highly neurovirulent for mice, whereas its non-mouse-adapted parent is rarely neurovirulent. The genetic basis for the neurovirulence of the mouse-adapted mutant was studied by comparing intratypic chimeric viruses that contained the three structural protein genes from the parental virus or the neurovirulent mutant in the background sequence of nonneurovirulent DEN4 strain 814669. The chimera that contained the three structural protein genes from mouse neurovirulent DEN4 strain H241 proved to be highly neurovirulent in mice, whereas the chimera that contained the corresponding genes from its non-mouse-adapted parent was not neurovirulent. This finding indicates that most of the genetic loci for the neurovirulence of the DEN4 mutant lie within the structural protein genes. A comparison of the amino acid sequences of the parent and its mouse neurovirulent mutant proteins revealed that there were only five amino acid differences in the structural protein region, and three of these were located in the envelope (E) glycoprotein. Analysis of chimeras which contained one or two of the variant amino acids of the mutant E sequence substituting for the corresponding sequence of the parental virus identified two of these amino acid changes as important determinants of mouse neurovirulence. First, the single substitution of Ile for Thr-155 which ablated one of the two conserved glycosylation sites in parental E yielded a virus that was almost as neurovirulent as the mouse-adapted mutant. Thus, the loss of an E glycosylation site appears to play a role in DEN4 neurovirulence. Second, the substitution of Leu for Phe-401 also yielded a neurovirulent virus, but it was less neurovirulent than the glycosylation mutant. These findings indicate that at least two of the genetic loci responsible for DEN4 mouse neurovirulence map within the structural protein genes.
Insights
Mouse-adapted Dengue type 4 virus (DEN4) structural protein genes, particularly the envelope glycoprotein, are key determinants of neurovirulence in mice. Specific amino acid changes in the E glycoprotein significantly impact DEN4
Area of Science:
- Virology
- Molecular Biology
- Genetics
Background:
- Mouse-adapted Dengue type 4 virus (DEN4) strain H241 exhibits high neurovirulence in mice, unlike its non-mouse-adapted parent.
- Understanding the genetic basis of DEN4 neurovirulence is crucial for developing effective countermeasures.
Purpose of the Study:
- To identify the genetic determinants responsible for the enhanced neurovirulence of mouse-adapted DEN4 strain H241.
- To pinpoint specific viral genes and amino acid changes contributing to DEN4 neurovirulence in a mouse model.
Main Methods:
- Construction and analysis of intratypic chimeric DEN4 viruses using genes from parental and neurovirulent strains.
- Comparison of neurovirulence in mice for chimeric viruses with varying genetic compositions.
- Amino acid sequence analysis of structural proteins to identify differences between parental and neurovirulent strains.
- Site-directed mutagenesis of specific amino acid residues in the envelope (E) glycoprotein.
Main Results:
- Chimeric viruses containing structural protein genes from the neurovirulent DEN4 H241 strain were highly neurovirulent in mice.
- Most genetic loci for DEN4 mouse neurovirulence were mapped to the structural protein genes.
- Two specific amino acid substitutions in the E glycoprotein (Ile for Thr-155 and Leu for Phe-401) were identified as critical determinants of neurovirulence.
- Ablation of a conserved glycosylation site in the E glycoprotein (Thr-155 to Ile) significantly increased neurovirulence.
Conclusions:
- The structural protein genes, especially the envelope glycoprotein, contain the primary genetic determinants for DEN4 mouse neurovirulence.
- Specific amino acid changes within the E glycoprotein, including those affecting glycosylation sites, play a significant role in modulating DEN4 neurovirulence.
- These findings provide valuable insights into the molecular mechanisms underlying DEN4 pathogenesis and host adaptation.