Back to Search Start Over

Independence between pre-mRNA splicing and DNA methylation in an isogenic minigene resource.

Authors :
Nanan KK
Ocheltree C
Sturgill D
Mandler MD
Prigge M
Varma G
Oberdoerffer S
Source :
Nucleic acids research [Nucleic Acids Res] 2017 Dec 15; Vol. 45 (22), pp. 12780-12797.
Publication Year :
2017

Abstract

Actively transcribed genes adopt a unique chromatin environment with characteristic patterns of enrichment. Within gene bodies, H3K36me3 and cytosine DNA methylation are elevated at exons of spliced genes and have been implicated in the regulation of pre-mRNA splicing. H3K36me3 is further responsive to splicing, wherein splicing inhibition led to a redistribution and general reduction over gene bodies. In contrast, little is known of the mechanisms supporting elevated DNA methylation at actively spliced genic locations. Recent evidence associating the de novo DNA methyltransferase Dnmt3b with H3K36me3-rich chromatin raises the possibility that genic DNA methylation is influenced by splicing-associated H3K36me3. Here, we report the generation of an isogenic resource to test the direct impact of splicing on chromatin. A panel of minigenes of varying splicing potential were integrated into a single FRT site for inducible expression. Profiling of H3K36me3 confirmed the established relationship to splicing, wherein levels were directly correlated with splicing efficiency. In contrast, DNA methylation was equivalently detected across the minigene panel, irrespective of splicing and H3K36me3 status. In addition to revealing a degree of independence between genic H3K36me3 and DNA methylation, these findings highlight the generated minigene panel as a flexible platform for the query of splicing-dependent chromatin modifications.<br /> (Published by Oxford University Press on behalf of Nucleic Acids Research 2017.)

Details

Language :
English
ISSN :
1362-4962
Volume :
45
Issue :
22
Database :
MEDLINE
Journal :
Nucleic acids research
Publication Type :
Academic Journal
Accession number :
29244186
Full Text :
https://doi.org/10.1093/nar/gkx900