Global analysis of AGO2-bound RNAs reveals that miRNAs induce cleavage of target RNAs with limited complementarity

  • Jung, Eunsun
  • Seong, Youngmo
  • Jeon, Bohyun
  • Song, Hoseok
  • Kwon, Young-Soo
Citations

WEB OF SCIENCE

12
Citations

SCOPUS

14

초록

Among the four Argonaute family members in mammals, only AGO2 protein retains endonuclease activity and facilitates cleavage of target RNAs base-pairing with highly complementary guide RNAs. Despite the deeply conserved catalytic activity, only a small number of targets have been reported to extensively base pair with cognate miRNAs to be cleaved by AGO2. Here, we analyzed AGO2-bound RNAs by CrossLinking ImmunoPrecipitation (CLIP) of genetically modified cells that express epitope-tagged AGO2 from the native genomic locus. We found that HMGA2 mRNA is cleaved by AGO2 loaded with let-7 and miR-21. In contrast to the generally accepted notion, the base-pairing from the seed region to the cleavage site, rather than perfect or near perfect complementarity, was required for cleavage of the target mRNA in cells. Non-templated addition of nucleotides at the 3' end of the cleaved RNA was observed, further supporting the AGO2-mediated cleavage. Based on the observation that the limited complementarity is the minimum requirement for cleavage, we found that AGO2-mediated cleavage of targets is more common than previously thought. Our result may explain the vital role of endonuclease activity in controlling miRNA-mediated gene regulation.

키워드

MicroRNAAGO2 catalytic activityHMGA2RNA cleavageCrossLinking ImmunoPrecipitationMICRORNA-DIRECTED CLEAVAGEHUMAN ARGONAUTE2ENZYME COMPLEXMESSENGER-RNAMOUSE OOCYTESHUMAN-CELLSES CELLSHMGA2MICROPROCESSORBIOGENESIS
제목
Global analysis of AGO2-bound RNAs reveals that miRNAs induce cleavage of target RNAs with limited complementarity
저자
Jung, EunsunSeong, YoungmoJeon, BohyunSong, HoseokKwon, Young-Soo
DOI
10.1016/j.bbagrm.2017.10.001
발행일
2017-11
유형
Article
저널명
Biochimica et Biophysica Acta - Gene Regulatory Mechanisms
1860
11
페이지
1148 ~ 1158