RRC ID 57640
著者 Kawara H, Akahori R, Wakasugi M, Sancar A, Matsunaga T.
タイトル DCAF7 is required for maintaining the cellular levels of ERCC1-XPF and nucleotide excision repair.
ジャーナル Biochem Biophys Res Commun
Abstract The ERCC1-XPF heterodimer is a structure-specific endonuclease and plays multiple roles in various DNA repair pathways including nucleotide excision repair and also telomere maintenance. The dimer formation, which is mediated by their C-terminal helix-hairpin-helix regions, is essential for their endonuclease activity as well as the stability of each protein. However, the detailed mechanism of how a cellular level of ERCC1-XPF is regulated still remains elusive. Here, we report the identification of DDB1- and CUL4-associated factor 7 (DCAF7, also known as WDR68/HAN11) as a novel interacting protein of ERCC1-XPF by mass spectrometry after tandem purification. Immunoprecipitation experiments confirmed their interaction and suggested dominant association of DCAF7 with XPF but not ERCC1. Interestingly, siRNA-mediated knockdown of DCAF7, but not DDB1, attenuated the cellular level of ERCC1-XPF, which is partly dependent on proteasome. The depletion of TCP1α, one of components of the molecular chaperon TRiC/CCT known to interact with DCAF7 and promote its folding, also reduced ERCC1-XPF level. Finally, we show that the depletion of DCAF7 causes inefficient repair of UV-induced (6-4) photoproducts, which can be rescued by ectopic overexpression of XPF or ERCC1-XPF. Altogether, our results strongly suggest that DCAF7 is a novel regulator of ERCC1-XPF protein level and cellular nucleotide excision repair activity.
巻・号 519(1)
ページ 204-210
公開日 2019-10-29
DOI 10.1016/j.bbrc.2019.08.147
PII S0006-291X(19)31676-6
PMID 31493872
PMC PMC6759389
MeSH Adaptor Proteins, Signal Transducing / metabolism* Cell Line DNA Repair* DNA-Binding Proteins / metabolism* Down-Regulation Endonucleases / metabolism* Humans Proteasome Endopeptidase Complex / metabolism Protein Binding Protein Multimerization
IF 2.985
引用数 1
リソース情報
遺伝子材料 Genome Network Project Human cDNA IRAK004G08 (HGX001752)