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PMID: 11182541 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

UV light-induced degradation of RNA polymerase II is dependent on the Cockayne's syndrome A and B proteins but not p53 or MLH1.

Mutation research ·Vol. 485 ·No. 2 ·2001-03-07 ·Pages 93-105

McKay BC, Chen F, Clarke ST, Wiggin HE, Harley LM, Ljungman M

Abstract

It has been hypothesized that the degradation of the largest subunit of RNA polymerase II (polIILS) is required for transcription-coupled repair (TCR) of UV light-induced transcription-blocking lesions. In this study we further investigated the mechanism of UV-induced degradation of polIILS using cell lines with specific defects in TCR or in the recovery of RNA synthesis. It was found that the hypophosphorylated IIa form of polIILS rapidly decreased following UV-irradiation in all cell lines tested. Inhibition of proteasome activity resulted in an increase of the hyperphosphorylated IIo form of polIILS in UV-irradiated cells, while inhibition of CTD-kinases resulted in the retention of the IIa form. In UV-irradiated Cockayne's syndrome cells, which are defective in TCR, the levels of the IIo form increased in a similar manner as when proteasome inhibitors were added to UV-irradiated normal cells. In contrast, TCR-deficient HCT116 cells, which lack the mismatch repair protein MLH1, showed proficient degradation of polIILS as did cells with deficiencies in the recovery of RNA synthesis following UV-irradiation due to defective p53. Furthermore, we found that proteasome function was important for the recovery of mRNA synthesis even in TCR-deficient HCT116 cells. Our results suggest that proteasome-mediated degradation of polIILS is preceded by phosphorylation of the C-terminal domain of polIILS and requires the CS-A and CS-B but not MLH1 or p53 proteins. Furthermore, our results suggest that following UV-irradiation, the degradation of polIILS is required for the efficient recovery of mRNA synthesis but not for TCR per se.

MeSH Terms
Adaptor Proteins, Signal Transducing Animals Blotting, Western CHO Cells Carrier Proteins Cell Line Cricetinae Cysteine Endopeptidases DNA Helicases/genetics,metabolism DNA Repair/radiation effects DNA Repair Enzymes Enzyme Inhibitors/pharmacology Fibroblasts/cytology,metabolism,radiation effects Fluorescent Antibody Technique Humans Multienzyme Complexes/antagonists & inhibitors MutL Protein Homolog 1 Neoplasm Proteins/deficiency,genetics,metabolism Nuclear Proteins Peptide Hydrolases/metabolism Phosphorylation/drug effects,radiation effects Poly-ADP-Ribose Binding Proteins Proteasome Endopeptidase Complex Proteins/genetics,metabolism RNA/biosynthesis RNA Polymerase II/metabolism,radiation effects Transcription Factors Transcription, Genetic/radiation effects Tumor Suppressor Protein p53/deficiency,genetics,metabolism Ultraviolet Rays
Chemicals
Adaptor Proteins, Signal Transducing Carrier Proteins ERCC8 protein, human Enzyme Inhibitors MLH1 protein, human Multienzyme Complexes Neoplasm Proteins Nuclear Proteins Poly-ADP-Ribose Binding Proteins Proteins Transcription Factors Tumor Suppressor Protein p53 RNA RNA Polymerase II RNA polymerase II largest subunit Peptide Hydrolases Cysteine Endopeptidases Proteasome Endopeptidase Complex ATP dependent 26S protease MutL Protein Homolog 1 DNA Helicases ERCC6 protein, human DNA Repair Enzymes
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
McKay B C
Department of Radiology, Centre for Cancer Therapeutics, Ottawa Regional Cancer Centre, University of Ottawa, Ont., K1H 8L6, Ottawa, Canada.
Chen F
Clarke S T
Wiggin H E
Harley L M
Ljungman M
Article Info
Journal
Mutation research
Abbr.
Mutat Res
ISSN
0027-5107
Published
2001-03-07
Pages
93-105
Language
English
Region
Netherlands
NLM ID
0400763
Subset
IM
Grants
NCI NIH HHS · CA82376-01 · United States
NCI NIH HHS · CO33801 · United States
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