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Zika Virus Infectious Cell Culture System and the In Vitro Prophylactic Effect of Interferons
Published on: August 23, 2016
African strains of Zika virus resist ISG-mediated restriction
Inès Bribes1, Jim Zoladek1, Marion Cannac1,2
1Institut de Recherche en Infectiologie de Montpellier (IRIM), Université de Montpellier, CNRS, Montpellier, France.
Abstract:
Zika virus (ZIKV) is a neurotropic Orthoflavivirus transmitted by mosquito vectors, which has evolved into two lineages, namely African and Asian. ZIKV from the Asian lineage has been responsible for epidemics in the Pacific and the Americas, the largest of which occurred in Brazil in 2015 and was associated with severe neurological disorders, including cases of microcephaly and other congenital fetal malformations. Although never implicated in human epidemics, African strains exhibit faster replication, higher virus production, and greater virulence in animal models compared to their Asian counterparts. A key feature that may account for the better fitness of African ZIKV strains compared to Asian ones is the fact that they are more resistant to interferon (IFN). IFN response is a major host defense mechanism against viral infections, which culminates in the induction of hundreds of IFN-induced genes (ISGs) whose products inhibit viral replication. By screening an array of ISGs known for their antiviral activity, we show that African ZIKV strains are globally more resistant than their Asian counterparts to ISG-mediated restriction. In particular, SHFL, RTP4 and IFI6, which were the three most active ISGs against Asian viruses, had little or no effect on the replication of African ZIKV strains. These observations therefore suggest that if African strains are more resistant to the antiviral effect of IFN than Asian strains, this is not because they have greater capacity to inhibit IFN signaling, but rather because they are able to escape ISG-mediated restriction. Our results provide an explanation as to why viruses of African origin spread more rapidly and efficiently in vitro than their Asian counterparts as repeatedly demonstrated. However, it remains unclear why, despite their greater virulence and resistance to cellular antiviral defenses, ZIKV strains of the African lineage have never been identified in large-scale epidemics.
Insights
African Zika virus (ZIKV) strains resist interferon-induced restriction more effectively than Asian strains, explaining their faster in vitro spread. This resistance stems from escaping host defenses, not inhibiting interferon signaling.
Area of Science:
- Virology
- Immunology
- Genetics
Background:
- Zika virus (ZIKV) is a neurotropic Orthoflavivirus with African and Asian lineages.
- Asian ZIKV caused major epidemics linked to severe neurological disorders and congenital malformations.
- African ZIKV strains show higher virulence and replication in animal models but haven't caused human epidemics.
Purpose of the Study:
- To investigate the differential fitness of African and Asian ZIKV lineages.
- To determine if resistance to interferon (IFN) contributes to the higher fitness of African ZIKV strains.
- To identify specific host restriction factors targeted by ZIKV lineages.
Main Methods:
- Screening of multiple interferon-induced genes (ISGs) for antiviral activity against African and Asian ZIKV strains.
- Comparative analysis of ZIKV replication in the presence of ISGs.
- Assessment of ZIKV's ability to inhibit IFN signaling versus escaping ISG-mediated restriction.
Main Results:
- African ZIKV strains demonstrated greater resistance to ISG-mediated restriction compared to Asian strains.
- Specific ISGs (SHFL, RTP4, IFI6) highly effective against Asian ZIKV had minimal impact on African ZIKV replication.
- African ZIKV resistance is attributed to escaping ISG restriction, not enhanced inhibition of IFN signaling.
Conclusions:
- African ZIKV strains possess a superior ability to evade host antiviral defenses mediated by ISGs.
- This enhanced evasion mechanism explains the more rapid in vitro replication and spread of African ZIKV strains.
- The study highlights a key difference in host-pathogen interaction between ZIKV lineages, though the reasons for African strains not causing epidemics remain unclear.
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