Conditional coupling of leading-strand and lagging-strand DNA synthesis at bacteriophage T4 replication forks

被引:31
|
作者
Kadyrov, FA [1 ]
Drake, JW [1 ]
机构
[1] NIEHS, Lab Mol Genet E3 01, NIH, Res Triangle Pk, NC 27709 USA
关键词
D O I
10.1074/jbc.M101310200
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
Eight proteins encoded by bacteriophage T4 are required for the replicative synthesis of the leading and lagging strands of T4 DNA. We show here that active T4 replication forks, which catalyze the coordinated synthesis of leading and lagging strands, remain stable in the face of dilution provided that the gp44/62 clamp loader, the gp45 sliding clamp, and the gp32 ssDNA-binding protein are present at sufficient levels after dilution. If any of these accessory proteins is omitted from the dilution mixture, uncoordinated DNA synthesis occurs, and/or large Okazaki fragments are formed. Thus, the accessory proteins must be recruited from solution for each round of initiation of lagging-strand synthesis. A modified bacteriophage T7 DNA polymerase (Sequenase) can replace the T4 DNA polymerase for leading-strand synthesis but not for well coordinated lagging-strand synthesis. Although T4 DNA polymerase has been reported to self-associate, gel-exclusion chromatography displays it as a monomer in solution in the absence of DNA. It forms no stable holoenzyme complex in solution with the accessory proteins or with the gp41-gp61 helicase-primase. Instead, template DNA is required for the assembly of the T4 replication complex, which then catalyzes coordinated synthesis of leading and lagging strands in a conditionally coupled manner.
引用
收藏
页码:29559 / 29566
页数:8
相关论文
共 50 条
  • [21] Intrinsic coupling of lagging-strand synthesis to chromatin assembly
    Duncan J. Smith
    Iestyn Whitehouse
    Nature, 2012, 483 : 434 - 438
  • [22] Intrinsic coupling of lagging-strand synthesis to chromatin assembly
    Smith, Duncan J.
    Whitehouse, Iestyn
    NATURE, 2012, 483 (7390) : 434 - U80
  • [23] Dynamics of DNA replication loops reveal temporal control of lagging-strand synthesis
    Samir M. Hamdan
    Joseph J. Loparo
    Masateru Takahashi
    Charles C. Richardson
    Antoine M. van Oijen
    Nature, 2009, 457 : 336 - 339
  • [24] Dynamics Of DNA Replication Loops Reveal Temporal Control Of Lagging-strand Synthesis
    Hamdan, Samir M.
    Loparo, Joseph J.
    Takahashi, Masateru
    Richardson, Charles C.
    Vanoijen, Antoine M.
    BIOPHYSICAL JOURNAL, 2009, 96 (03) : 568A - 568A
  • [25] Control of DNA degradation during lagging strand processing by bacteriophage T4 proteins
    Bhagwat, M
    Nossal, N
    FASEB JOURNAL, 1998, 12 (08): : A1331 - A1331
  • [26] Lagging strand synthesis in coordinated DNA synthesis by bacteriophage T7 replication proteins
    Lee, J
    Chastain, PD
    Griffith, JD
    Richardson, CC
    JOURNAL OF MOLECULAR BIOLOGY, 2002, 316 (01) : 19 - 34
  • [27] ENZYMATIC COMPLETION OF MAMMALIAN LAGGING-STRAND DNA-REPLICATION
    TURCHI, JJ
    HUANG, L
    MURANTE, RS
    KIM, Y
    BAMBARA, RA
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1994, 91 (21) : 9803 - 9807
  • [28] COORDINATED LEADING-STRAND AND LAGGING-STRAND SYNTHESIS AT THE ESCHERICHIA-COLI DNA-REPLICATION FORK .2. FREQUENCY OF PRIMER SYNTHESIS AND EFFICIENCY OF PRIMER UTILIZATION CONTROL OKAZAKI FRAGMENT SIZE
    ZECHNER, EL
    WU, CA
    MARIANS, KJ
    JOURNAL OF BIOLOGICAL CHEMISTRY, 1992, 267 (06) : 4045 - 4053
  • [29] tau couples the leading- and lagging-strand polymerases at the Escherichia coli DNA replication fork
    Kim, S
    Dallmann, HG
    McHenry, CS
    Marians, KJ
    JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (35) : 21406 - 21412
  • [30] Yeast DNA polymerase ε participates in leading-strand DNA replication
    Pursell, Zachary F.
    Isoz, Isabelle
    Lundstroem, Else-Britt
    Johansson, Erik
    Kunkel, Thomas A.
    SCIENCE, 2007, 317 (5834) : 127 - 130