Characterization of an African swine fever virus 20-kDa DNA polymerase involved in DNA repair

被引:92
作者
Oliveros, M [1 ]
Yáñez, RJ [1 ]
Salas, ML [1 ]
Salas, J [1 ]
Viñuela, E [1 ]
Blanco, L [1 ]
机构
[1] Univ Autonoma Madrid, Ctr Biol Mol Severo Ochoa, CSIC, E-28049 Madrid, Spain
关键词
D O I
10.1074/jbc.272.49.30899
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
African swine fever virus (ASFV) encodes a novel DNA polymerase, constituted of only 174 amino acids, belonging to the polymerase (pol) X family of DNA polymerases. Biochemical analyses of the purified enzyme indicate that ASFV pol X is a monomeric DNA-directed DNA polymerase, highly distributive, lacking a proofreading 3'-5'-exonuclease, and with a poor discrimination against dideoxynucleotides. A multiple alignment of family X DNA polymerases, together with the extrapolation to the crystal structure of mammalian DNA polymerase beta (pol beta), showed the conservation in ASFV pol X of the most critical residues involved in DNA binding, nucleotide binding, and catalysis of the polymerization reaction. Therefore, the 20-kDa ASFV pol X most likely represents the minimal functional version of an evolutionarily conserved pol beta-type DNA polymerase core, constituted by only the "palm" and "thumb" subdomains. It is worth noting that such an "unfingered" DNA polymerase is able to handle templated DNA polymerization with a considerable high fidelity at the base discrimination level. Base excision repair is considered to be a cellular defense mechanism repairing modified bases in DNA. Interestingly, the fact that ASFV pol X is able to conduct filling of a single nucleotide gap points to a putative role in base excision repair during the ASFV life cycle.
引用
收藏
页码:30899 / 30910
页数:12
相关论文
共 79 条
  • [1] An African swine fever virus Bcl-2 homolog, 5-HL, suppresses apoptotic cell death
    Afonso, CL
    Neilan, JG
    Kutish, GF
    Rock, DL
    [J]. JOURNAL OF VIROLOGY, 1996, 70 (07) : 4858 - 4863
  • [2] STRUCTURES OF DNA AND RNA-POLYMERASES AND THEIR INTERACTIONS WITH NUCLEIC-ACID SUBSTRATES
    ARNOLD, E
    DING, JP
    HUGHES, SH
    HOSTOMSKY, Z
    [J]. CURRENT OPINION IN STRUCTURAL BIOLOGY, 1995, 5 (01) : 27 - 38
  • [3] DNA repair
    Barnes, Deborah E.
    Lindahl, Tomas
    Sedgwick, Barbara
    [J]. CURRENT OPINION IN CELL BIOLOGY, 1993, 5 (03) : 424 - 433
  • [4] Enzyme-DNA interactions required for efficient nucleotide incorporation and discrimination in human DNA polymerase beta
    Beard, WA
    Osheroff, WP
    Prasad, R
    Sawaya, MR
    Jaju, M
    Wood, TG
    Kraut, J
    Kunkel, TA
    Wilson, SH
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (21) : 12141 - 12144
  • [5] ON THE FIDELITY OF DNA-REPLICATION - MANGANESE MUTAGENESIS INVITRO
    BECKMAN, RA
    MILDVAN, AS
    LOEB, LA
    [J]. BIOCHEMISTRY, 1985, 24 (21) : 5810 - 5817
  • [6] STRUCTURAL BASIS FOR THE 3'-5' EXONUCLEASE ACTIVITY OF ESCHERICHIA-COLI DNA-POLYMERASE-I - A 2 METAL-ION MECHANISM
    BEESE, LS
    STEITZ, TA
    [J]. EMBO JOURNAL, 1991, 10 (01) : 25 - 33
  • [7] STRUCTURE OF DNA-POLYMERASE-I KLENOW FRAGMENT BOUND TO DUPLEX DNA
    BEESE, LS
    DERBYSHIRE, V
    STEITZ, TA
    [J]. SCIENCE, 1993, 260 (5106) : 352 - 355
  • [8] A CONSERVED 3'-]5' EXONUCLEASE ACTIVE-SITE IN PROKARYOTIC AND EUKARYOTIC DNA-POLYMERASES
    BERNAD, A
    BLANCO, L
    LAZARO, JM
    MARTIN, G
    SALAS, M
    [J]. CELL, 1989, 59 (01) : 219 - 228
  • [9] SEQUENCE AND EVOLUTIONARY RELATIONSHIPS OF AFRICAN SWINE FEVER VIRUS THYMIDINE KINASE
    BLASCO, R
    LOPEZOTIN, C
    MUNOZ, M
    OTTOBOCKAMP, E
    SIMONMATEO, C
    VINUELA, E
    [J]. VIROLOGY, 1990, 178 (01) : 301 - 304
  • [10] COMPREHENSIVE SEQUENCE-ANALYSIS OF THE 182 PREDICTED OPEN READING FRAMES OF YEAST CHROMOSOME-III
    BORK, P
    OUZOUNIS, C
    SANDER, C
    SCHARF, M
    SCHNEIDER, R
    SONNHAMMER, E
    [J]. PROTEIN SCIENCE, 1992, 1 (12) : 1677 - 1690