The formation of a flexible DNA-binding protein chain is required for efficient DNA unwinding and adenovirus DNA chain elongation

被引:16
作者
van Breukelen, B
Kanellopoulos, PN
Tucker, PA
van der Vliet, PC
机构
[1] Univ Utrecht, Med Ctr, Dept Physiol Chem, NL-3584 CG Utrecht, Netherlands
[2] Univ Utrecht, Med Ctr, Ctr Biomed Genet, NL-3584 CG Utrecht, Netherlands
[3] DESY, European Mol Biol Lab, D-22603 Hamburg, Germany
关键词
D O I
10.1074/jbc.M005745200
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 adenovirus DNA-binding protein (DBP) binds co-operatively to single-stranded DNA (ssDNA) and stimulates both initiation and elongation of DNA replication. DBP consists of a globular core domain and a C-terminal arm that hooks onto a neighboring DBP molecule to form a stable protein chain with the DNA bound to the internal surface of the chain. This multimerization is the driving force for ATP-independent DNA unwinding by DBP during elongation. As shown by x-ray diffraction of different crystal forms of the C-terminal domain, the C-terminal arm can adopt different conformations, leading to flexibility in the protein chain. This flexibility is a function of the hinge region, the part of the protein joining the C-terminal arm to the protein core. To investigate the function of the flexibility, proline residues were introduced in the hinge region, and the proteins were purified to homogeneity after baculovirus expression. The mutant proteins were still able to bind ss- and double-stranded DNA with approximately the same affinity as wild type, and the binding to ssDNA was found to be cooperative. All mutant proteins were able to stimulate the initiation of DNA replication to near wild type levels. However, the proline mutants could not support elongation of DNA replication efficiently. Even the elongation up to 26 nucleotides was severely impaired. This defect was also seen when DNA unwinding was studied. Binding studies of DBP to homo-oligonucleotides showed an inability of the proline mutants to bind to poly(dA)(40), indicating an inability to adapt to specific DNA conformations. Our data suggest that the flexibility of the protein chain formed by DBP is important in binding and unwinding of DNA during adenovirus DNA replication. A model explaining the need for flexibility of the C-terminal arm is proposed.
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页码:40897 / 40903
页数:7
相关论文
共 35 条
[1]   INDEPENDENT, SPONTANEOUS MUTANTS OF ADENOVIRUS TYPE 2-SIMIAN VIRUS-40 HYBRID AD2+ND3 THAT GROW EFFICIENTLY IN MONKEY CELLS POSSESS INDENTICAL MUTATIONS IN THE ADENOVIRUS TYPE-2 DNA-BINDING PROTEIN GENE [J].
ANDERSON, CW ;
HARDY, MM ;
DUNN, JJ ;
KLESSIG, DF .
JOURNAL OF VIROLOGY, 1983, 48 (01) :31-39
[2]   CLEAVAGE PRODUCT OF THE ADENOVIRUS DNA-BINDING PROTEIN IS ACTIVE IN DNA-REPLICATION INVITRO [J].
ARIGA, H ;
KLEIN, H ;
LEVINE, AJ ;
HORWITZ, MS .
VIROLOGY, 1980, 101 (01) :307-310
[3]  
BOSHER J, 1990, New Biologist, V2, P1083
[4]  
CHEN M, 1990, J BIOL CHEM, V265, P18634
[5]   CO-OPERATIVE INTERACTIONS BETWEEN NFI AND THE ADENOVIRUS DNA-BINDING PROTEIN AT THE ADENOVIRUS ORIGIN OF REPLICATION [J].
CLEAT, PH ;
HAY, RT .
EMBO JOURNAL, 1989, 8 (06) :1841-1848
[6]   ISOLATION AND CHARACTERIZATION OF A VIABLE ADENOVIRUS MUTANT DEFECTIVE IN NUCLEAR TRANSPORT OF THE DNA-BINDING PROTEIN [J].
CLEGHON, V ;
VOELKERDING, K ;
MORIN, N ;
DELSERT, C ;
KLESSIG, DF .
JOURNAL OF VIROLOGY, 1989, 63 (05) :2289-2299
[7]   EARLY DISSOCIATION OF NUCLEAR FACTOR-I FROM THE ORIGIN DURING INITIATION OF ADENOVIRUS DNA-REPLICATION STUDIED BY ORIGIN IMMOBILIZATION [J].
COENJAERTS, FEJ ;
VANDERVLIET, PC .
NUCLEIC ACIDS RESEARCH, 1994, 22 (24) :5235-5240
[8]   Mechanism of DNA replication in eukaryotic cells: cellular host factors stimulating adenovirus DNA replication [J].
de Jong, RN ;
van der Vliet, PC .
GENE, 1999, 236 (01) :1-12
[9]   Multimerization of the adenovirus DNA-binding protein is the driving force for ATP-independent DNA unwinding during strand displacement synthesis [J].
Dekker, J ;
Kanellopoulos, PN ;
Loonstra, AK ;
vanOosterhout, JAWM ;
Leonard, K ;
Tucker, PA ;
vanderVliet, PC .
EMBO JOURNAL, 1997, 16 (06) :1455-1463
[10]  
Dekker J, 1996, MOL CELL BIOL, V16, P4073