Interaction of bacteriophage T4 and T7 single-stranded DNA-binding proteins with DNA

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Interaction of bacteriophage T4 and T7 single-stranded DNA-binding proteins with DNA.

Bacteriophages T4 and T7 are well-studied model replication systems, which have allowed researchers to determine the roles of many proteins central to DNA replication, recombination and repair. Here we summarize and discuss the results from two recently developed single-molecule methods to determine the salt-dependent DNA-binding kinetics and thermodynamics of the single-stranded DNA (ssDNA)-bi...

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A single-stranded DNA-binding protein of bacteriophage T7 defective in DNA annealing.

The annealing of complementary strands of DNA is a vital step during the process of DNA replication, recombination, and repair. In bacteriophage T7-infected cells, the product of viral gene 2.5, a single-stranded DNA-binding protein, performs this function. We have identified a single amino acid residue in gene 2.5 protein, arginine 82, that is critical for its DNA annealing activity. Expressio...

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Single-stranded DNA-binding Proteins

The emergence of DNA as the predominant hereditary material of life has necessitated the evolution of proteins whose sole function is the maintenance and care of these vital molecules. In a typical cell, there is a wide array of proteins with specialized functions in DNA metabolism that allow the cell to maintain and replicate its genome. In order to copy or make repairs to DNA, the double heli...

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Structure of the gene 2.5 protein, a single-stranded DNA binding protein encoded by bacteriophage T7.

The gene 2.5 protein (gp2.5) of bacteriophage T7 is a single-stranded DNA (ssDNA) binding protein that has essential roles in DNA replication and recombination. In addition to binding DNA, gp2.5 physically interacts with T7 DNA polymerase and T7 primase-helicase during replication to coordinate events at the replication fork. We have determined a 1.9-A crystal structure of gp2.5 and show that i...

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Effect of single-stranded DNA-binding proteins on the helicase and primase activities of the bacteriophage T7 gene 4 protein.

Gene 4 protein (gp4) of bacteriophage T7 provides two essential functions at the T7 replication fork, primase and helicase activities. Previous studies have shown that the single-stranded DNA-binding protein of T7, encoded by gene 2.5, interacts with gp4 and modulates its multiple functions. To further characterize the interactions between gp4 and gene 2.5 protein (gp2.5), we have examined the ...

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ژورنال

عنوان ژورنال: Physical Biology

سال: 2009

ISSN: 1478-3975

DOI: 10.1088/1478-3975/6/2/025002