High potency silencing by single-stranded boranophosphate siRNA

AHS Hall, J Wan, A Spesock, Z Sergueeva… - Nucleic acids …, 2006 - academic.oup.com
AHS Hall, J Wan, A Spesock, Z Sergueeva, BR Shaw, KA Alexander
Nucleic acids research, 2006academic.oup.com
In RNA interference (RNAi), double-stranded short interfering RNA (ds-siRNA) inhibits
expression from complementary mRNAs. Recently, it was demonstrated that short, single-
stranded antisense RNA (ss-siRNA) can also induce RNAi. While ss-siRNA may offer
several advantages in both clinical and research applications, its overall poor activity
compared with ds-siRNA has prevented its widespread use. In contrast to the poor gene
silencing activity of native ss-siRNA, we found that the silencing activity of boranophosphate …
Abstract
In RNA interference (RNAi), double-stranded short interfering RNA (ds-siRNA) inhibits expression from complementary mRNAs. Recently, it was demonstrated that short, single-stranded antisense RNA (ss-siRNA) can also induce RNAi. While ss-siRNA may offer several advantages in both clinical and research applications, its overall poor activity compared with ds-siRNA has prevented its widespread use. In contrast to the poor gene silencing activity of native ss-siRNA, we found that the silencing activity of boranophosphate-modified ss-siRNA is comparable with that of unmodified ds-siRNA. Boranophosphate ss-siRNA has excellent maximum silencing activity and is highly effective at low concentrations. The silencing activity of boranophosphate ss-siRNA is also durable, with significant silencing up to 1 week after transfection. Thus, we have demonstrated that boranophosphate-modified ss-siRNA can silence gene expression as well as native ds-siRNA, suggesting that boranophosphate-modified ss-siRNAs should be investigated as a potential new class of therapeutic agents.
Oxford University Press