The eukaryotic Pso2/Snm1/Artemis proteins and their function as genomic and cellular caretakers

被引:33
作者
Bonatto, D
Revers, LF
Brendel, M
Henriques, JAP
机构
[1] Univ Fed Rio Grande do Sul, Ctr Biotecnol, Dept Biofis, BR-91507970 Porto Alegre, RS, Brazil
[2] EMBRAPA Uva & Vinho, Bento Goncalves, RS, Brazil
[3] Univ Luterana Brasil, Curso Farm, Canoas, RS, Brazil
[4] Univ Caxias Sul, Inst Biotecnol, Caxias Do Sul, RS, Brazil
关键词
non-homologous end joining; double-strand breaks; V(D)J; PSO2; Artemis; Saccharomyces cerevisiae;
D O I
10.1590/S0100-879X2005000300002
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
DNA double-strand breaks (DSBs) represent a major threat to the genomic stability of eukaryotic cells. DNA repair mechanisms such as non-homologous end joining (NHEJ) are responsible for the maintenance of eukaryotic genomes. Dysfunction of one or more of the many protein complexes that function in NHEJ can lead to sensitivity to DNA damaging agents, apoptosis, genomic instability, and severe combined immunodeficiency. One protein, Pso2p, was shown to participate in the repair of DSBs induced by DNA inter-strand cross-linking (ICL) agents such as cisplatin, nitrogen mustard or photo-activated bi-functional psoralens. The molecular function of Pso2p in DNA repair is unknown, but yeast and mammalian cell line mutants for PSO2 show the same cellular responses as strains with defects in NHEJ, e.g., sensitivity to ICLs and apoptosis. The Pso2p human homologue Artemis participates in V(D)J recombination. Mutations in Artemis induce a variety of immunological deficiencies, a predisposition to lymphomas, and an increase in chromosomal aberrations. In order to better understand the role of Pso2p in the repair of DSBs generated as repair intermediates of ICLs, an in silico approach was used to characterize the catalytic domain of Pso2p, which led to identification of novel Pso2p homologues in other organisms. Moreover, we found the catalytic core of Pso2p fused to different domains. In plants, a specific ATP-dependent DNA ligase I contains the catalytic core of Pso2p, constituting a new DNA ligase family, which was named LIG6. The possible functions of Pso2p/Artemis/Lig6p in NHEJ and V(D)J recombination and in other cellular metabolic reactions are discussed.
引用
收藏
页码:321 / 334
页数:14
相关论文
共 60 条
  • [1] DNA repair/pro-apoptotic dual-role proteins in five major DNA repair pathways: fail-safe protection against carcinogenesis
    Bernstein, C
    Bernstein, H
    Payne, CM
    Garewal, H
    [J]. MUTATION RESEARCH-REVIEWS IN MUTATION RESEARCH, 2002, 511 (02) : 145 - 178
  • [2] BONATTO D, 2005, IN PRESS FUNCTIONAL
  • [3] Role of PSO genes in repair of DNA damage of Saccharomyces cerevisiae
    Brendel, M
    Bonatto, D
    Strauss, M
    Revers, LF
    Pungartnik, C
    Saffi, J
    Henriques, JAP
    [J]. MUTATION RESEARCH-REVIEWS IN MUTATION RESEARCH, 2003, 544 (2-3) : 179 - 193
  • [4] The pso mutants of Saccharomyces cerevisiae comprise two groups:: one deficient in DNA repair and another with altered mutagen metabolism
    Brendel, M
    Henriques, JAP
    [J]. MUTATION RESEARCH-REVIEWS IN MUTATION RESEARCH, 2001, 489 (01) : 79 - 96
  • [5] Metallo-β-lactamase fold within nucleic acids processing enzymes:: the β-CASP family
    Callebaut, I
    Moshous, D
    Mornon, JP
    de Villartay, JP
    [J]. NUCLEIC ACIDS RESEARCH, 2002, 30 (16) : 3592 - 3601
  • [6] CASSIER C, 1980, GENETICS, V96, P841
  • [7] Essential yeast protein with unexpected similarity to subunits of mammalian cleavage and polyadenylation specificity factor (CPSF)
    Chanfreau, G
    Noble, SM
    Guthrie, C
    [J]. SCIENCE, 1996, 274 (5292) : 1511 - 1514
  • [8] A comparison of the effects of DNA-damaging agents and biotic elicitors on the induction of plant defense genes, nuclear distortion, and cell death
    Choi, JJ
    Klosterman, SJ
    Hadwiger, LA
    [J]. PLANT PHYSIOLOGY, 2001, 125 (02) : 752 - 762
  • [9] The Mre11 complex: At the crossroads of DNA repair and checkpoint signalling
    D'Amours, D
    Jackson, SP
    [J]. NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2002, 3 (05) : 317 - 327
  • [10] DASILVA KVCL, 1987, MUTAGENESIS, V2, P187