Published 2008 | Version v1
Journal article

DNA damage regulates alternative splicing through changes in POL II elongation

  • 1. Laboratorio de Fisiologia y Biologia Molecular, IFIBYNE-CONICET, FCEyN, Universidad de Buenos Aires, Buenos Aires (Argentina)

Description

Many apoptotic genes are regulated via alternative splicing (AS) but little is known about the mechanisms controlling AS in stress situations derived from DNA damage. Here we show that ultraviolet (UV) radiation affects co-transcriptional, but not post transcriptional, AS through a systemic mechanism involving a CDK-9-dependent hyper phosphorylation of RNA polymerase II carboxy terminal domain (CTD) and a subsequent and unprecedented inhibition of transcriptional elongation, estimated in vivo and in real time by FRAP. To mimic this hyper phosphorylation we used CTD mutants with serines 2 or 5 substituted by glutamic acids and found that they not only display lower elongation rates but duplicate the effects of UV light on AS in the absence of irradiation. Consistently, substitution of the serines with alanines prevents the UV effect on splicing. These results represent the first in vivo proof of modulation of elongation in response to an environmental signal, affecting in turn the kinetic coupling between transcription and splicing. (authors)

Additional details

Publishing Information

Journal Title
Biocell
Journal Volume
32
Journal Issue
Suppl
Series
Abstract only
Journal Page Range
p. 44
ISSN
0327-9545

Conference

Title
26. Annual Meeting of the Argentine Society for Biochemistry and Molecular Biology Research
Dates
8-11 Nov 2008
Place
Villa Carlos Paz, Cordoba (Argentina)