RNA recognition motif 2 directs the recruitment of SF2/ASF to nuclear stress bodies

Heat shock induces the transcriptional activation of large heterochromatic regions of the human genome composed of arrays of satellite III DNA repeats. A number of RNA-processing factors, among them splicing factor SF2/ASF, associate with these transcription factors giving rise to nuclear stress bod...

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Veröffentlicht in:Nucleic acids research 2004, Vol.32 (14), p.4127-4136
Hauptverfasser: Chiodi, Ilaria, Corioni, Margherita, Giordano, Manuela, Valgardsdottir, Rut, Ghigna, Claudia, Cobianchi, Fabio, Xu, Rui-Ming, Riva, Silvano, Biamonti, Giuseppe
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Sprache:eng
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Zusammenfassung:Heat shock induces the transcriptional activation of large heterochromatic regions of the human genome composed of arrays of satellite III DNA repeats. A number of RNA-processing factors, among them splicing factor SF2/ASF, associate with these transcription factors giving rise to nuclear stress bodies (nSBs). Here, we show that the recruitment of SF2/ASF to these structures is mediated by its second RNA recognition motif. Amino acid substitutions in the first α-helix of this domain, but not in the β-strand regions, abrogate the association with nSBs. The same mutations drastically affect the in vivo activity of SF2/ASF in the alternative splicing of adenoviral E1A transcripts. Sequence analysis identifies four putative high-affinity binding sites for SF2/ASF in the transcribed strand of the satellite III DNA. We have verified by gel mobility shift assays that the second RNA-binding domain of SF2/ASF binds at least one of these sites. Our analysis suggests that the recruitment of SF2/ASF to nSBs is mediated by a direct interaction with satellite III transcripts and points to the second RNA-binding domain of the protein as the major determinant of this interaction.
ISSN:0305-1048
1362-4962
1362-4962
DOI:10.1093/nar/gkh759