Ultraviolet-induced movement of the human DNA repair protein, Xeroderma pigmentosum type G, in the nucleus

被引:46
作者
Park, MS
Knauf, JA
Pendergrass, SH
Coulon, CH
Strniste, GF
Marrone, BL
MacInnes, MA
机构
[1] Life Sciences Division, Los Alamos National Laboratory, Los Alamos
[2] Life Science Division, M888, Los Alamos National Laboratory, Los Alamos
[3] University of Cincinnati, Medical Sciences Building, Cincinnati, OH 45267
关键词
nucleotide excision repair; nuclear matrix; immunofluorescence; ultraviolet damage;
D O I
10.1073/pnas.93.16.8368
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Xeroderma pigmentosum type G (XPG) is a human genetic disease exhibiting extreme sensitivity to sunlight, XPG patients are defective XPG endonuclease, which is an enzyme essential for DNA repair of the major kinds of solar ultraviolet (UV)-induced DNA damages. Here we describe a novel dynamics of this protein within the cell nucleus after UV irradiation of human cells. Using confocal micropscopy, we have localized the immumofluorescent, antigenic signal of XPG protein to foci throughout the cell nucleus, Our biochemical studies also established that XPG protein forms a tight association with nuclear structure(s). In human skin fibroblast cells, the number of XPG foci decreased within 2 h after UV irradiation, whereas total nuclear XPG fluorescence intensity remained constant, suggesting redistribution of XPG from a limited number of nuclear foci to the nucleus overall. Within 8 h after UV, most XPG antigenic signal was found as foci, Using beta-galactosidase-XPG fusion constructs (beta-gal-XPG) transfected into HeLa cells, we have identified a single region of XPG that is evidently responsible both for foci formation and for the UV dynamic response. The fusion protein carrying the C terminus of XPG (amino acids 1146-1185) localized beta-gal specific antigenic signal to foci and to the nucleolus regions, After UV irradiation, antigenic beta-gal translocated reversibly from the subnuclear structures to the whale nucleus with kinetics very similar to the movements of XPG protein, These findings lead us to propose a model in which distribution of XPG protein may regulate the rate of DNA repair within transcriptionally active and inactive compartments of the cell nucleus.
引用
收藏
页码:8368 / 8373
页数:6
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