Feed-forward microprocessing and splicing activities at a microRNA-containing intron

The majority of mammalian microRNA (miRNA) genes reside within introns of protein-encoding and non-coding genes, yet the mechanisms coordinating primary transcript processing into both mature miRNA and spliced mRNA are poorly understood. Analysis of melanoma invasion suppressor miR-211 expressed fro...

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Veröffentlicht in:PLoS genetics 2011-10, Vol.7 (10), p.e1002330-e1002330
Hauptverfasser: Janas, Maja M, Khaled, Mehdi, Schubert, Steffen, Bernstein, Jacob G, Golan, David, Veguilla, Rosa A, Fisher, David E, Shomron, Noam, Levy, Carmit, Novina, Carl D
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Sprache:eng
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Zusammenfassung:The majority of mammalian microRNA (miRNA) genes reside within introns of protein-encoding and non-coding genes, yet the mechanisms coordinating primary transcript processing into both mature miRNA and spliced mRNA are poorly understood. Analysis of melanoma invasion suppressor miR-211 expressed from intron 6 of melastatin revealed that microprocessing of miR-211 promotes splicing of the exon 6-exon 7 junction of melastatin by a mechanism requiring the RNase III activity of Drosha. Additionally, mutations in the 5' splice site (5'SS), but not in the 3'SS, branch point, or polypyrimidine tract of intron 6 reduced miR-211 biogenesis and Drosha recruitment to intron 6, indicating that 5'SS recognition by the spliceosome promotes microprocessing of miR-211. Globally, knockdown of U1 splicing factors reduced intronic miRNA expression. Our data demonstrate novel mutually-cooperative microprocessing and splicing activities at an intronic miRNA locus and suggest that the initiation of spliceosome assembly may promote microprocessing of intronic miRNAs.
ISSN:1553-7404
1553-7390
1553-7404
DOI:10.1371/journal.pgen.1002330