τ binds and organizes Escherichia coli replication proteins through distinct domains -: Domain IV, located within the unique C terminus of τ, binds the replication fork helicase, Dnab

被引:78
作者
Gao, DX
McHenry, CS
机构
[1] Univ Colorado, Hlth Sci Ctr, Dept Biochem & Mol Genet, Denver, CO 80262 USA
[2] Univ Colorado, Hlth Sci Ctr, Program Mol Biol, Denver, CO 80262 USA
关键词
D O I
10.1074/jbc.M009830200
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
Interaction between the tau subunit of the DNA polymerase III holoenzyme and the DnaB helicase is critical for coupling the replicase and the primosomal apparatus at the replication fork (Kim, S., Dallmann, H. G., McHenry, C. S., and Marians, K. J. (1996) Cell 84, 643-650). In the preceding manuscript, we reported the identification of five putative structural domains within the tau subunit (Gao, D., and McHenry, C, (2000) J. Biol, Chem, 275, 4433-4440). As part of our systematic effort to assign functions to each of these domains, we expressed a series of truncated, biotin-tagged tau fusion proteins and determined their ability to bind DnaB by surface plasmon resonance on streptavidin-coated surfaces. Only tau fusion proteins containing domain IV bound DnaB, The DnaB-binding region was further limited to a highly basic 66-amino acid residue stretch within domain TV. Unlike the binding of immobilized tau (4) to the DnaB hexamer, the binding of monomeric domain IV to DnaB(6) was dependent upon the density of immobilized domain IV, indicating that DnaB(6) is bound by more than one (tau) protomer, This observation implies that both the leading and lagging strand polymerases are tethered to the DnaB helicase via dimeric tau, These double tethers of the leading and lagging strand polymerases proceeding through the tau-tau link and an additional tau -DnaB link are likely important for the dynamic activities of the replication fork.
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页码:4441 / 4446
页数:6
相关论文
共 21 条
[1]   PROGRAMMED RIBOSOMAL FRAMESHIFTING GENERATES THE ESCHERICHIA-COLI DNA POLYMERASE-III GAMMA SUBUNIT FROM WITHIN THE GAMMA-SUBUNIT READING FRAME [J].
BLINKOWA, AL ;
WALKER, JR .
NUCLEIC ACIDS RESEARCH, 1990, 18 (07) :1725-1729
[2]  
BUJALOWSKI W, 1994, J BIOL CHEM, V269, P31350
[3]  
Cull MG, 1995, METHOD ENZYMOL, V262, P22
[4]   Characterization of the unique C terminus of the Escherichia coli τ DnaX protein -: Monomeric C-τ binds α and DnaB and can partially replace τ in reconstituted replication forks [J].
Dallmann, HG ;
Kim, S ;
Pritchard, AE ;
Marians, KJ ;
McHenry, CS .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (20) :15512-15519
[5]   DNAX COMPLEX OF ESCHERICHIA-COLI DNA-POLYMERASE-III HOLOENZYME - CENTRAL ROLE OF TAU IN INITIATION COMPLEX ASSEMBLY AND IN DETERMINING THE FUNCTIONAL ASYMMETRY OF HOLOENZYME [J].
DALLMANN, HG ;
THIMMIG, RL ;
MCHENRY, CS .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (49) :29555-29562
[6]   THE GAMMA-SUBUNIT OF DNA POLYMERASE-III HOLOENZYME OF ESCHERICHIA-COLI IS PRODUCED BY RIBOSOMAL FRAMESHIFTING [J].
FLOWER, AM ;
MCHENRY, CS .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1990, 87 (10) :3713-3717
[7]   τ binds and organizes Escherichia coli replication proteins through distinct domains -: Partial proteolysis of terminally tagged τ to determine candidate domains and to assign domain V as the α binding domain [J].
Gao, DX ;
McHenry, CS .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (06) :4433-4440
[8]   DNA-POLYMERASE-III HOLOENZYME - STRUCTURE AND FUNCTION OF A CHROMOSOMAL REPLICATING MACHINE [J].
KELMAN, Z ;
ODONNELL, M .
ANNUAL REVIEW OF BIOCHEMISTRY, 1995, 64 :171-200
[9]   Biotin tagging deletion analysis of domain limits involved in protein-macromolecular interactions - Mapping the tau binding domain of the DNA polymerase III alpha subunit [J].
Kim, DR ;
McHenry, CS .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (34) :20690-20698
[10]   Coupling of a replicative polymerase and helicase: A tau-DnaB interaction mediates rapid replication fork movement [J].
Kim, SS ;
Dallmann, HG ;
McHenry, CS ;
Marians, KJ .
CELL, 1996, 84 (04) :643-650