Original Article
Immunity
Insights into ZIKV-Mediated Innate Immune Responses in Human Dermal Fibroblasts and Epidermal Keratinocytes

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Zika virus (ZIKV) has emerged as a global pathogen causing significant public health concern. ZIKV infections in humans principally occur via mosquito bites. Thus, host skin cells are permissive to ZIKV infection and are the first line of defense against the virus. Here, we examined the role and mechanisms of antiviral skin immunity against ZIKV infection. ZIKV infection (African lineage MR766) in human dermal fibroblasts, human epidermal keratinocytes, and HaCaT keratinocytes resulted in distinct expression changes in RIG-I–like receptors, such as RIG-I and MDA5. Inhibition of RIG-I using small interfering RNA resulted in increased viral gene expression and reduced induction of IFNs and IFN-stimulated genes. Furthermore, ZIKV NS1 directly interacted with RIG-I or MDA5 and down-regulated RIG-I–like receptor–mediated antiviral signaling pathways. Asian lineage ZIKV (PRVABC59) infection also showed a distinct pattern of antiviral immunity in human skin cells, compared with other ZIKV strains. Additionally, ZIKV infections in human neural progenitor cells induced the robust activation of RIG-I–like receptor–mediated signaling, followed by highly enhanced IFN-stimulated gene expression. Our findings provide important insights into ZIKV tropism and subsequent antiviral signaling pathways that regulate ZIKV replication in human dermal fibroblasts and human epidermal keratinocytes.

Abbreviations

DENV
Dengue virus
dsRNA
double-stranded RNA
E
envelope
HDF
human dermal fibroblast
HEKn
human epidermal keratinocyte (neonatal)
hNPC
human neural progenitor cell
hpi
hours postinfection
ISG
interferon-stimulated gene
poly dA:dT
poly(deoxyadenylic-deoxythymidylic) acid
poly I:C
polyinosinic:polycytidylic acid
qRT-PCR
quantitative real-time reverse transcriptase–PCR
RLR
RIG-I–like receptor
ZIKV
Zika virus

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See related commentary on pg 281