論文

査読有り
2014年

Design and evaluation of locked nucleic acid-based splice-switching oligonucleotides in vitro

NUCLEIC ACIDS RESEARCH
  • Takenori Shimo
  • Keisuke Tachibana
  • Kiwamu Saito
  • Tokuyuki Yoshida
  • Erisa Tomita
  • Reiko Waki
  • Tsuyoshi Yamamoto
  • Takefumi Doi
  • Takao Inoue
  • Junji Kawakami
  • Satoshi Obika
  • 全て表示

42
12
開始ページ
8174
終了ページ
8187
記述言語
英語
掲載種別
研究論文(学術雑誌)
DOI
10.1093/nar/gku512
出版者・発行元
OXFORD UNIV PRESS

Antisense-mediated modulation of pre-mRNA splicing is an attractive therapeutic strategy for genetic diseases. Currently, there are few examples of modulation of pre-mRNA splicing using locked nucleic acid (LNA) antisense oligonucleotides, and, in particular, no systematic study has addressed the optimal design of LNA-based splice-switching oligonucleotides (LNA SSOs). Here, we designed a series of LNA SSOs complementary to the human dystrophin exon 58 sequence and evaluated their ability to induce exon skipping in vitro using reverse transcription-polymerase chain reaction. We demonstrated that the number of LNAs in the SSO sequence and the melting temperature of the SSOs play important roles in inducing exon skipping and seem to be key factors for designing efficient LNA SSOs. LNA SSO length was an important determinant of activity: a 13-mer with six LNA modifications had the highest efficacy, and a 7-mer was the minimal length required to induce exon skipping. Evaluation of exon skipping activity using mismatched LNA/DNA mixmers revealed that 9-mer LNA SSO allowed a better mismatch discrimination. LNA SSOs also induced exon skipping of endogenous human dystrophin in primary human skeletal muscle cells. Taken together, our findings indicate that LNA SSOs are powerful tools for modulating pre-mRNA splicing.

リンク情報
DOI
https://doi.org/10.1093/nar/gku512
Web of Science
https://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=JSTA_CEL&SrcApp=J_Gate_JST&DestLinkType=FullRecord&KeyUT=WOS:000339713200057&DestApp=WOS_CPL
ID情報
  • DOI : 10.1093/nar/gku512
  • ISSN : 0305-1048
  • eISSN : 1362-4962
  • Web of Science ID : WOS:000339713200057

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