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Zika Virus Infectious Cell Culture System and the In Vitro Prophylactic Effect of Interferons
Published on: August 23, 2016
Zika virus disrupts gene expression in human myoblasts and myotubes: Relationship with susceptibility to infection
Ingo Riederer1,2,3,4, Daniella Arêas Mendes-da-Cruz1,2,3,4, Guilherme Cordenonsi da Fonseca5
1Laboratory on Thymus Research, Oswaldo Cruz Institute, Oswaldo Cruz Foundation, Rio de Janeiro, Brazil.
Abstract:
The tropism of Zika virus (ZIKV) has been described in the nervous system, blood, placenta, thymus, and skeletal muscle. We investigated the mechanisms of skeletal muscle susceptibility to ZIKV using an in vitro model of human skeletal muscle myogenesis, in which myoblasts differentiate into myotubes. Myoblasts were permissive to ZIKV infection, generating productive viral particles, while myotubes controlled ZIKV replication. To investigate the underlying mechanisms, we used gene expression profiling. First, we assessed gene changes in myotubes compared with myoblasts in the model without infection. As expected, we observed an increase in genes and pathways related to the contractile muscle system in the myotubes, a reduction in processes linked to proliferation, migration and cytokine production, among others, confirming the myogenic capacity of our system in vitro. A comparison between non-infected and infected myoblasts revealed more than 500 differentially expressed genes (DEGs). In contrast, infected myotubes showed almost 2,000 DEGs, among which we detected genes and pathways highly or exclusively expressed in myotubes, including those related to antiviral and innate immune responses. Such gene modulation could explain our findings showing that ZIKV also invades myotubes but does not replicate in these differentiated cells. In conclusion, we showed that ZIKV largely (but differentially) disrupts gene expression in human myoblasts and myotubes. Identifying genes involved in myotube resistance can shed light on potential antiviral mechanisms against ZIKV infection.
Insights
Zika virus (ZIKV) infects human muscle cells, with myoblasts supporting viral replication while differentiated myotubes resist it. Gene expression changes reveal distinct responses and potential antiviral mechanisms in myotubes.
Area of Science:
- Virology
- Molecular Biology
- Skeletal Muscle Physiology
Background:
- Zika virus (ZIKV) exhibits tropism for various tissues, including skeletal muscle.
- Understanding ZIKV's interaction with skeletal muscle is crucial for comprehending its pathogenesis.
Purpose of the Study:
- To investigate the mechanisms underlying skeletal muscle susceptibility and resistance to ZIKV infection.
- To analyze gene expression changes in human myoblasts and myotubes upon ZIKV exposure.
Main Methods:
- Utilized an in vitro model of human skeletal muscle myogenesis (myoblasts differentiating into myotubes).
- Performed gene expression profiling on non-infected and ZIKV-infected myoblasts and myotubes.
- Analyzed differentially expressed genes (DEGs) to identify molecular responses.
Main Results:
- Myoblasts were permissive to ZIKV, producing infectious viral particles.
- Myotubes controlled ZIKV replication, despite viral invasion.
- ZIKV infection induced significant gene expression changes, with nearly 2,000 DEGs in myotubes, including antiviral and innate immune response genes.
Conclusions:
- ZIKV differentially disrupts gene expression in human myoblasts and myotubes.
- Myotube resistance to ZIKV replication is associated with specific gene expression patterns, including antiviral responses.
- Identifying these resistance-associated genes may offer insights into potential antiviral strategies against ZIKV.
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