Crystal structure of a replication fork single-stranded DNA binding protein (T4 gp32) complexed to DNA
- 27 July 1995
- journal article
- research article
- Published by Springer Nature in Nature
- Vol. 376 (6538), 362-366
- https://doi.org/10.1038/376362a0
Abstract
THE single-stranded DNA (ssDNA) binding protein gp32 from bacteriophage T4 is essential for T4 DNA replication, recombination and repair. In vivo gp32 binds ssDNA as the replication fork advances and stimulates replisome processivity and accuracy by a factor of several hundred1. Gp32 binding affects nearly every major aspect of DNA metabolism. Among its important functions are: (1) configuring ssDNA templates for efficient use by the replisome including DNA polymerase; (2) melting out adventitious secondary structures; (3) protecting exposed ssDNA from nucleases; and (4) facilitating homologous recombination by binding ssDNA during strand displacement. We have determined the crystal structure of the gp32 DNA binding domain complexed to ssDNA at 2.2 Å resolution. The ssDNA binding cleft comprises regions from three structural subdomains and includes a positively charged surface that runs parallel to a series of hydrophobic pockets formed by clusters of aromatic side chains. Although only weak electron density is seen for the ssDNA, it indicates that the phosphate backbone contacts an electropositive cleft of the protein, placing the bases in contact with the hydrophobic pockets. The DNA mobility implied by the weak electron density may reflect the role of gp32 as a sequence-independent ssDNA chaperone allowing the largely unstructured ssDNA to slide freely through the cleft.Keywords
This publication has 25 references indexed in Scilit:
- Comparison of cooperative and isolated site binding of T4 gene 32 protein to ssDNA by proton NMRBiochemistry, 1989
- Site-specific mutagenesis of T4 gene 32: the role of tyrosine residues in protein.cntdot.nucleic acid interactionsBiochemistry, 1989
- NMR spectroscopy of cadmium-113(II) substituted gene 32 proteinBiochemistry, 1989
- The function of zinc in gene 32 protein from T4Biochemistry, 1987
- Investigation of complexes formed between gene 32 protein from bacteriophage T4 and heavy-atom-modified single-stranded polynucleotides using optical detection of magnetic resonanceBiochemistry, 1986
- Proton NMR (500 MHz) identification of aromatic residues of gene 32 protein involved in DNA binding by use of protein containing perdeuterated aromatic residues and by site-directed mutagenesisBiochemistry, 1986
- Proton NMR (500 MHz) of gene 32 protein-oligonucleotide complexesBiochemistry, 1984
- Interactions of bacteriophage T4-coded gene 32 protein with nucleic acidsJournal of Molecular Biology, 1981
- Physicochemical properties of DNA binding proteins. Gene 32 protein of T4 and Escherichia coli unwinding proteinBiochemistry, 1975
- T4 Bacteriophage Gene 32: A Structural Protein in the Replication and Recombination of DNANature, 1970