Processing of G4 DNA by Dna2 helicase/nuclease and replication protein a (RPA) provides insights into the mechanism of Dna2/RPA substrate recognition

被引:71
作者
Masuda-Sasa, Taro [1 ]
Polaczek, Piotr [1 ]
Peng, Xiao P. [1 ]
Chen, Lu [1 ]
Campbell, Judith L. [1 ]
机构
[1] CALTECH, Braun Labs 147 75, Pasadena, CA 91125 USA
基金
美国国家卫生研究院;
关键词
D O I
10.1074/jbc.M802244200
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
The polyguanine-rich DNA sequences commonly found at telomeres and in rDNA arrays have been shown to assemble into structures known as G quadruplexes, or G4 DNA, stabilized by base-stacked G quartets, an arrangement of four hydrogen-bonded guanines. G4 DNA structures are resistant to the many helicases and nucleases that process intermediates arising in the course of DNA replication and repair. The lagging strand DNA replication protein, Dna2, has demonstrated a unique localization to telomeres and a role in de novo telomere biogenesis, prompting us to study the activities of Dna2 on G4 DNA-containing substrates. We find that yeast Dna2 binds with 25-fold higher affinity to G4 DNA formed from yeast telomere repeats than to single-stranded DNA of the same sequence. Human Dna2 also binds G4 DNAs. The helicase activities of both yeast and human Dna2 are effective in unwinding G4 DNAs. On the other hand, the nuclease activities of both yeast and human Dna2 are attenuated by the formation of G4 DNA, with the extent of inhibition depending on the topology of the G4 structure. This inhibition can be overcome by replication protein A. Replication protein A is known to stimulate the 5'- to 3'-nuclease activity of Dna2; however, we go on to show that this same protein inhibits the 3'- to 5'-exo/endonuclease activity of Dna2. These observations are discussed in terms of possible roles for Dna2 in resolving G4 secondary structures that arise during Okazaki fragment processing and telomere lengthening.
引用
收藏
页码:24359 / 24373
页数:15
相关论文
共 50 条
  • [31] Okazaki Fragment Processing-independent Role for Human Dna2 Enzyme during DNA Replication
    Duxin, Julien P.
    Moore, Hayley R.
    Sidorova, Julia
    Karanja, Kenneth
    Honaker, Yuchi
    Dao, Benjamin
    Piwnica-Worms, Helen
    Campbell, Judith L.
    Monnat, Raymond J., Jr.
    Stewart, Sheila A.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2012, 287 (26) : 21980 - 21991
  • [32] Dna2 helicase/nuclease causes replicative fork stalling and double-strand breaks in the ribosomal DNA of Saccharomyces cerevisiae
    Weitao, T
    Budd, M
    Hoopes, LLM
    Campbell, JL
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (25) : 22513 - 22522
  • [33] Sumoylation regulates the stability and nuclease activity of Saccharomyces cerevisiae Dna2
    Lepakshi Ranjha
    Maryna Levikova
    Veronika Altmannova
    Lumir Krejci
    Petr Cejka
    Communications Biology, 2
  • [34] Pif1 Helicase Lengthens Some Okazaki Fragment Flaps Necessitating Dna2 Nuclease/Helicase Action in the Two-nuclease Processing Pathway
    Pike, Jason E.
    Burgers, Peter M. J.
    Campbell, Judith L.
    Bambara, Robert A.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2009, 284 (37) : 25170 - 25180
  • [35] Sumoylation regulates the stability and nuclease activity of Saccharomyces cerevisiae Dna2
    Ranjha, Lepakshi
    Levikova, Maryna
    Altmannova, Veronika
    Krejci, Lumir
    Cejka, Petr
    COMMUNICATIONS BIOLOGY, 2019, 2 (1)
  • [36] Semi-conservative replication in yeast nuclear extracts requires DNA2 helicase and supercoiled template
    Braguglia, D
    Heun, P
    Pasero, P
    Duncker, BP
    Gasser, SM
    JOURNAL OF MOLECULAR BIOLOGY, 1998, 281 (04) : 631 - 649
  • [37] Helicase and nuclease activities of hyperthermophile Pyrococcus horikoshii Dna2 inhibited by substrates with RNA segments at 5′-end
    Higashibata, H
    Kikuchi, H
    Kawarabayasi, Y
    Matsui, I
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (18) : 15983 - 15990
  • [38] Preventing over-resection by DNA2 helicase/nuclease suppresses repair defects in Fanconi anemia cells
    Karanja, Kenneth K.
    Lee, Eu Han
    Hendrickson, Eric A.
    Campbell, Judith L.
    CELL CYCLE, 2014, 13 (10) : 1540 - 1550
  • [39] A dynamic model for replication protein A (RPA) function in DNA processing pathways
    Fanning, Ellen
    Klimovich, Vitaly
    Nager, Andrew R.
    NUCLEIC ACIDS RESEARCH, 2006, 34 (15) : 4126 - 4137
  • [40] Genome-wide and molecular characterization of the DNA replication helicase 2 (DNA2) gene family in rice under drought and salt stress
    Saleem, Bilal
    Farooq, Umer
    Rehman, Obaid Ur
    Aqeel, Muhammad
    Farooq, Muhammad Shahbaz
    Naeem, Muhammad Kashif
    Inam, Safeena
    Ajmal, Wajya
    Rahim, Amna Abdul
    Chen, Ming
    Kalsoom, Rabia
    Uzair, Muhammad
    Fiaz, Sajid
    Attia, Kotb
    Alafari, Hayat Ali
    Khan, Muhammad Ramzan
    Yu, Guoping
    FRONTIERS IN GENETICS, 2022, 13