Clamp loading, unloading and intrinsic stability of the PCNA, beta and gp45 sliding clamps of human, E-coli and T4 replicases

被引:188
作者
Yao, N
Turner, J
Kelman, Z
Stukenberg, PT
Dean, F
Shechter, D
Pan, ZQ
Hurwitz, J
ODonnell, M
机构
[1] CORNELL UNIV,COLL MED,DEPT MICROBIOL,NEW YORK,NY 10021
[2] CORNELL UNIV,COLL MED,HEARST RES FDN,NEW YORK,NY 10021
[3] CORNELL UNIV,COLL MED,HOWARD HUGHES MED INST,NEW YORK,NY 10021
[4] MEM SLOAN KETTERING CANC CTR,GRAD PROGRAM MOL BIOL,NEW YORK,NY 10021
关键词
D O I
10.1046/j.1365-2443.1996.07007.x
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Background: The high speed and processivity of replicative DNA polymerases reside in a processivity factor which has been shown to be a ring-shaped protein. This protein ('sliding clamp') encircles DNA and tethers the catalytic unit to the template. Although in eukaryotic, prokaryotic and bacteriophage-T4 systems, the processivity factors are ring-shaped, they assume different oligomeric states. The Escherichia coli clamp (the beta subunit) is active as a dimer while the eukaryotic and T4 phage clamps (PCNA and gp45, respectively) are active as trimers. The clamp can not assemble itself on DNA. Instead, a protein complex known as a clamp loader utilizes ATP to assemble the ring around the primer-template. This study compares properties of the human PCNA clamp with those off. coli and T4 phage. Results: The PCNA ring is a stable trimer down to a concentration below 100 nM (K-d approximate to 21 nM). On DNA, the PCNA clamp slides freely and dissociates from DNA slowly (t(1/2)approximate to 24 min). beta is more stable in solution (K-d<60 pM) and on DNA (t(1/2)approximate to 1h) than PCNA which may be explained by its simpler oligomeric state. The T4 gp45 clamp is a much less stable trimer than PCNA (K-d approximate to 250 nM) and requires association with the polymerase to stabilize it on DNA as observed previously. The consequence of this cooperation between clamp and polymerase is that upon finishing a template and dissociation of the polymerase from DNA, the gp45 clamp spontaneously dissociates from DNA without assistance. However, the greater stability of the PCNA and beta clamps on DNA necessitates an active process for their removal. The clamp loaders (RF-C and gamma complex) were also capable of unloading their respective clamps from DNA in the presence of ATP. Conclusions: The stability of the different clamps in solution correlates with their stability on DNA. Thus, the low stability of the T4 clamp explains the inability to isolate gp45 on DNA. The stability of the PCNA and beta clamps predicts they will require an unloading factor to recycle them on and off DNA during replication. The clamp loaders of PCNA and beta double as clamp unloaders presumably for the purpose of clamp recycling.
引用
收藏
页码:101 / 113
页数:13
相关论文
共 47 条
  • [1] BURGERS PMJ, 1991, J BIOL CHEM, V266, P22698
  • [2] BURGERS PMJ, 1993, J BIOL CHEM, V268, P19923
  • [3] PROTEIN DNA CROSS-LINKING DEMONSTRATES STEPWISE ATP-DEPENDENT ASSEMBLY OF T4-DNA POLYMERASE AND ITS ACCESSORY PROTEINS ON THE PRIMER-TEMPLATE
    CAPSON, TL
    BENKOVIC, SJ
    NOSSAL, NG
    [J]. CELL, 1991, 65 (02) : 249 - 258
  • [4] CDK-INTERACTING PROTEIN-1 DIRECTLY BINDS WITH PROLIFERATING CELL NUCLEAR ANTIGEN AND INHIBITS DNA-REPLICATION CATALYZED BY THE DNA-POLYMERASE-DELTA HOLOENZYME
    FLORESROZAS, H
    KELMAN, Z
    DEAN, FB
    PAN, ZQ
    HARPER, PW
    ELLEDGE, SJ
    ODONNELL, M
    HURWITZ, J
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1994, 91 (18) : 8655 - 8659
  • [5] FRAPPIER L, 1991, J BIOL CHEM, V266, P7819
  • [6] CRYOELECTRON MICROSCOPIC VISUALIZATION OF FUNCTIONAL SUBASSEMBLIES OF THE BACTERIOPHAGE-T4 DNA-REPLICATION COMPLEX
    GOGOL, EP
    YOUNG, MC
    KUBASEK, WL
    JARVIS, TC
    VONHIPPEL, PH
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 1992, 224 (02) : 395 - 412
  • [7] HACKER KJ, 1994, J BIOL CHEM, V269, P24209
  • [8] HACKER KJ, 1994, J BIOL CHEM, V269, P24221
  • [9] ENHANCEMENT OF BACTERIOPHAGE-T4 LATE TRANSCRIPTION BY COMPONENTS OF THE T4 DNA-REPLICATION APPARATUS
    HERENDEEN, DR
    KASSAVETIS, GA
    BARRY, J
    ALBERTS, BM
    GEIDUSCHEK, EP
    [J]. SCIENCE, 1989, 245 (4921) : 952 - 958
  • [10] JARVIS TC, 1989, J BIOL CHEM, V264, P12709