Why the study?
Does siRNA targeting the conserved CRE(2C) region prevent cytopathic effects and virus replication in HeLa cells infected with human enterovirus B?
Does siRNA targeting the conserved CRE(2C) region prevent cytopathic effects and virus replication in HeLa cells infected with human enterovirus B?
siRNA targeting the highly conserved cis-acting replication element within the enterovirus coding region demonstrates potential as a universal and mutation-resistant antiviral agent against human enterovirus B.
May support mutation-resistant siRNA antivirals for enterovirus B; hypothesis-generating from cell data and requires in vivo validation before clinical consideration.
The promising potential of RNA interference-based antiviral therapies has been well established. However, the antiviral efficacy is largely limited by genomic diversity and genetic instability of various viruses, including human enterovirus B (HEB). In this work, the first evidence supporting the anti-HEB activity of the small interfering RNA (siRNA) targeting the highly conserved cis-acting replication element (CRE) within virus coding region 2C is presented. HeLa cells pre-treated with siRNA complementary to the conserved sequence of the loop region of CRE(2C) were effectively rescued from the cytopathic effects of HEBs. Downregulation of virus replication and attenuation of cytotoxicity were consistently observed in various reference strains and clinical isolates. Cells treated with this siRNA were resistant to the emergence of viable escape mutants and showed sustained antiviral ability. Collectively, the data suggest that the siRNA based on the disordered structure within the highly conserved cis-acting coding region has potential as a universal, persistent anti-HEB agent. The same strategy can be successfully applied to the development of siRNA with consistent antiviral effects in other virus groups possessing similar RNA elements.
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Lee et al. (2007) studied this question.
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