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Zika Virus Encoding Nonglycosylated Envelope Protein Is Attenuated and Defective in Neuroinvasion
Arun S Annamalai1, Aryamav Pattnaik1, Bikash R Sahoo1
1School of Veterinary Medicine and Biomedical Sciences, University of Nebraska-Lincoln, Lincoln, Nebraska, USA.
Abstract:
Zika virus (ZIKV), a mosquito-transmitted flavivirus responsible for sporadic outbreaks of mild and febrile illness in Africa and Asia, reemerged in the last decade causing serious human diseases, including microcephaly, congenital malformations, and Guillain-Barré syndrome. Although genomic and phylogenetic analyses suggest that genetic evolution may have led to the enhanced virulence of ZIKV, experimental evidence supporting the role of specific genetic changes in virulence is currently lacking. One sequence motif, VNDT, containing an N-linked glycosylation site in the envelope (E) protein, is polymorphic; it is absent in many of the African isolates but present in all isolates from the recent outbreaks. In the present study, we investigated the roles of this sequence motif and glycosylation of the E protein in the pathogenicity of ZIKV. We first constructed a stable full-length cDNA clone of ZIKV in a novel linear vector from which infectious virus was recovered. The recombinant ZIKV generated from the infectious clone, which contains the VNDT motif, is highly pathogenic and causes lethality in a mouse model. In contrast, recombinant viruses from which the VNDT motif is deleted or in which the N-linked glycosylation site is mutated by single-amino-acid substitution are highly attenuated and nonlethal. The mutant viruses replicate poorly in the brains of infected mice when inoculated subcutaneously but replicate well following intracranial inoculation. Our findings provide the first evidence that N-linked glycosylation of the E protein is an important determinant of ZIKV virulence and neuroinvasion.IMPORTANCE The recent emergence of Zika virus (ZIKV) in the Americas has caused major worldwide public health concern. The virus appears to have gained significant pathogenicity, causing serious human diseases, including microcephaly and Guillain-Barré syndrome. The factors responsible for the emergence of pathogenic ZIKV are not understood at this time, although genetic changes have been shown to facilitate virus transmission. All isolates from the recent outbreaks contain an N-linked glycosylation site within the viral envelope (E) protein, whereas many isolates of the African lineage virus lack this site. To elucidate the functional significance of glycosylation in ZIKV pathogenicity, recombinant ZIKVs from infectious clones with or without the glycan on the E protein were generated. ZIKVs lacking the glycan were highly attenuated for the ability to cause mortality in a mouse model and were severely compromised for neuroinvasion. Our studies suggest glycosylation of the E protein is an important factor contributing to ZIKV pathogenicity.
Insights
The N-linked glycosylation site in Zika virus envelope protein is crucial for its pathogenicity and neuroinvasion. Removing this site significantly reduces the virus's virulence and ability to spread in the brain.
Area of Science:
- Virology
- Molecular Biology
- Pathogenesis
Background:
- Zika virus (ZIKV) reemerged with increased pathogenicity, causing severe diseases like microcephaly.
- The role of specific genetic changes in ZIKV virulence remains unclear.
- A conserved N-linked glycosylation site (VNDT motif) in the envelope protein is present in recent ZIKV strains but absent in older African isolates.
Purpose of the Study:
- To investigate the role of the VNDT motif and E protein glycosylation in ZIKV pathogenicity.
- To determine if N-linked glycosylation is a key factor in ZIKV virulence and neuroinvasion.
Main Methods:
- Construction of a full-length ZIKV cDNA clone in a linear vector.
- Generation of recombinant ZIKV with and without the VNDT motif or with mutated glycosylation site.
- Assessment of pathogenicity and neuroinvasion in a mouse model.
Main Results:
- Recombinant ZIKV with the VNDT motif was highly pathogenic and lethal in mice.
- Viruses lacking the VNDT motif or with mutated glycosylation site were attenuated and nonlethal.
- Mutant viruses showed reduced replication in mouse brains after subcutaneous inoculation but replicated well after intracranial inoculation.
Conclusions:
- N-linked glycosylation of the ZIKV envelope protein is a critical determinant of ZIKV virulence.
- Glycosylation significantly impacts ZIKV neuroinvasion capabilities.
- This finding provides experimental evidence for genetic factors influencing ZIKV pathogenicity.