5Î-Vinylphosphonate improves tissue accumulation and efficacy of conjugated siRNAs in vivo.
Nucleic Acids Res
; 45(13): 7581-7592, 2017 Jul 27.
Article
em En
| MEDLINE
| ID: mdl-28591791
5Î-Vinylphosphonate modification of siRNAs protects them from phosphatases, and improves silencing activity. Here, we show that 5Î-vinylphosphonate confers novel properties to siRNAs. Specifically, 5Î-vinylphosphonate (i) increases siRNA accumulation in tissues, (ii) extends duration of silencing in multiple organs and (iii) protects siRNAs from 5Î-to-3Î exonucleases. Delivery of conjugated siRNAs requires extensive chemical modifications to achieve stability in vivo. Because chemically modified siRNAs are poor substrates for phosphorylation by kinases, and 5Î-phosphate is required for loading into RNA-induced silencing complex, the synthetic addition of a 5Î-phosphate on a fully modified siRNA guide strand is expected to be beneficial. Here, we show that synthetic phosphorylation of fully modified cholesterol-conjugated siRNAs increases their potency and efficacy in vitro, but when delivered systemically to mice, the 5Î-phosphate is removed within 2 hours. The 5Î-phosphate mimic 5Î-(E)-vinylphosphonate stabilizes the 5Î end of the guide strand by protecting it from phosphatases and 5Î-to-3Î exonucleases. The improved stability increases guide strand accumulation and retention in tissues, which significantly enhances the efficacy of cholesterol-conjugated siRNAs and the duration of silencing in vivo. Moreover, we show that 5Î-(E)-vinylphosphonate stabilizes 5Î phosphate, thereby enabling systemic delivery to and silencing in kidney and heart.
Texto completo:
1
Coleções:
01-internacional
Base de dados:
MEDLINE
Assunto principal:
Compostos de Vinila
/
RNA Interferente Pequeno
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Organofosfonatos
Limite:
Animals
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Female
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Humans
Idioma:
En
Revista:
Nucleic Acids Res
Ano de publicação:
2017
Tipo de documento:
Article
País de afiliação:
Estados Unidos