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Cited 88 time in webofscience Cited 98 time in scopus
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ASYMMETRIC SHORTER-DUPLEX SIRNA STRUCTURES TRIGGER EFFICIENT GENE SILENCING WITH REDUCED NONSPECIFIC EFFECTS SCIE SCOPUS

Title
ASYMMETRIC SHORTER-DUPLEX SIRNA STRUCTURES TRIGGER EFFICIENT GENE SILENCING WITH REDUCED NONSPECIFIC EFFECTS
Authors
Chang, CIYoo, JWHong, SWLee, SEKang, HSSun, XGRogoff, HABan, CKim, SLi, CJLee, DK
Date Issued
2009-04
Publisher
NATURE PUBLISHING GROUP
Abstract
Small interfering RNAs (siRNAs) are short, double-stranded RNAs that mediate efficient gene silencing in a sequence-specific manner by utilizing the endogenous RNA interference (RNAi) pathway. The current standard synthetic siRNA structure harbors a 19-base-pair duplex region with 3' overhangs of 2 nucleotides (the so-called 19+2 form). However, the synthetic 19+2 siRNA structure exhibits several sequence-independent, nonspecific effects, which has posed challenges to the development of RNAi therapeutics and specific silencing of genes in research. In this study, we report on the identification of truncated siRNA backbone structures with duplex regions shorter than 19 bp (referred to as asymmetric shorter-duplex siRNAs or asiRNAs) that can efficiently trigger gene silencing in human cell lines. Importantly, this asiRNA structure significantly reduces nonspecific effects triggered by conventional 19+2 siRNA scaffold, such as sense-strand-mediated off-target gene silencing and saturation of the cellular RNAi machinery. Our results suggest that this asiRNA structure is an important alternative to conventional siRNAs for both functional genomics studies and therapeutic applications.
Keywords
RNA INTERFERENCE; DEPENDENT STIMULATION; CHEMICAL-MODIFICATION; MAMMALIAN-CELLS; STRAND; EXPRESSION; EFFICACY; SUPPRESSION; COMPETITION; KNOCKDOWN
URI
https://oasis.postech.ac.kr/handle/2014.oak/29086
DOI
10.1038/MT.2008.298
ISSN
1525-0016
Article Type
Article
Citation
MOLECULAR THERAPY, vol. 17, no. 4, page. 725 - 732, 2009-04
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반창일BAN, CHANGILL
Dept of Chemistry
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