Abstract
Post-transcriptional inhibition of HIV-1 replication can be achieved by RNA interference (RNAi). The cellular expression of short interfering RNA (siRNA) or short hairpin RNA (shRNA) homologous to regions of the HIV-1 genome decreases viral replication by the selective degradation of targeted RNA. Here, we demonstrate that another class of noncoding regulatory RNA, termed microRNA (miRNA), can be used to deliver antiviral RNAi. By incorporating sequences encoding siRNA targeting the HIV-1 transactivator protein tat into a human miR-30 pre-microRNA (pre-miRNA) backbone, we were able to express tat siRNA in cells. The tat siRNA delivered as pre-miRNA precursor was 80% more effective in reducing HIV-1 p24 antigen production than tat siRNA expressed as conventional shRNA. Our results confirm the utility of expressing HIV-1 specific siRNA through a miR-30 precursor stem-loop structure and suggest that this strategy can be used to increase the antiviral potency of RNAi.
MeSH Terms
Base Sequence
Cell Line
Gene Products, tat/genetics
HIV Core Protein p24/biosynthesis
HIV-1/genetics,physiology
Humans
MicroRNAs/chemistry,genetics
Molecular Sequence Data
Nucleic Acid Conformation
RNA Interference
RNA, Small Interfering/chemistry,genetics
RNA, Viral/metabolism
Transfection
Virus Replication
tat Gene Products, Human Immunodeficiency Virus
Chemicals
Gene Products, tat
HIV Core Protein p24
MicroRNAs
RNA, Small Interfering
RNA, Viral
tat Gene Products, Human Immunodeficiency Virus
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Boden Daniel
Laboratory of Retrovirology, Division of Infectious Diseases, Department of Medicine, Brown Medical School, 4th Floor, 55 Claverick Street, Providence, RI 02903, USA.
Pusch Oliver
Silbermann Rebecca
Lee Fred
Tucker Lynne
Ramratnam Bharat
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