Molecular Basis for the Single-Nucleotide Precision of Primary microRNA Processing

  • Kwon, S. Chul
  • Baek, S. Chan
  • Choi, Yeon-Gil
  • Yang, Jihye
  • Lee, Young-suk
  • 외 2명
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초록

Microprocessor, composed of DROSHA and its cofactor DGCR8, initiates microRNA(miRNA) biogenesis by processing the primary transcripts of miRNA (pri-miRNAs). Here we investigate the mechanism by which Microprocessor selects the cleavage site with single-nucleotide precision, which is crucial for the specificity and functionality of miRNAs. By testing similar to 40,000 pri-miRNA variants, we find that for some pri-miRNAs the cleavage site is dictated mainly by the mGHG motif embedded in the lower stem region of pri-miRNA. Structural modeling and deep-sequencing-based complementation experiments show that the double-stranded RNA-binding domain (dsRBD) of DROSHA recognizes mGHG to place the catalytic center in the appropriate position. The mGHG motif as well as the mGHG-recognizing residues in DROSHA dsRBD are conserved across eumetazoans, suggesting that this mechanism emerged in an early ancestor of the animal lineage. Our findings provide a basis for the understanding of miRNA biogenesis and rational design of accurate small-RNA-based gene silencing.

키워드

DGCR8DROSHAmicroRNAmiRNARNase IIIRNA-INTERFERENCERIBONUCLEASE-IIISEQUENCE DETERMINANTSREAD ALIGNMENTDICERDROSHARECOGNITIONCLEAVAGECOMPLEXPRECURSORS
제목
Molecular Basis for the Single-Nucleotide Precision of Primary microRNA Processing
저자
Kwon, S. ChulBaek, S. ChanChoi, Yeon-GilYang, JihyeLee, Young-sukWoo, Jae-SungKim, V. Narry
DOI
10.1016/j.molcel.2018.11.005
발행일
2019-02-07
유형
Article
저널명
Molecular Cell
73
3
페이지
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