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An interaction between DNA polymerase and helicase is essential for the high processivity of the bacteriophage T7 replisome.


ABSTRACT: Synthesis of the leading DNA strand requires the coordinated activity of DNA polymerase and DNA helicase, whereas synthesis of the lagging strand involves interactions of these proteins with DNA primase. We present the first structural model of a bacteriophage T7 DNA helicase-DNA polymerase complex using a combination of small angle x-ray scattering, single-molecule, and biochemical methods. We propose that the protein-protein interface stabilizing the leading strand synthesis involves two distinct interactions: a stable binding of the helicase to the palm domain of the polymerase and an electrostatic binding of the carboxyl-terminal tail of the helicase to a basic patch on the polymerase. DNA primase facilitates binding of DNA helicase to ssDNA and contributes to formation of the DNA helicase-DNA polymerase complex by stabilizing DNA helicase.

SUBMITTER: Kulczyk AW 

PROVIDER: S-EPMC3493946 | biostudies-literature | 2012 Nov

REPOSITORIES: biostudies-literature

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An interaction between DNA polymerase and helicase is essential for the high processivity of the bacteriophage T7 replisome.

Kulczyk Arkadiusz W AW   Akabayov Barak B   Lee Seung-Joo SJ   Bostina Mihnea M   Berkowitz Steven A SA   Richardson Charles C CC  

The Journal of biological chemistry 20120912 46


Synthesis of the leading DNA strand requires the coordinated activity of DNA polymerase and DNA helicase, whereas synthesis of the lagging strand involves interactions of these proteins with DNA primase. We present the first structural model of a bacteriophage T7 DNA helicase-DNA polymerase complex using a combination of small angle x-ray scattering, single-molecule, and biochemical methods. We propose that the protein-protein interface stabilizing the leading strand synthesis involves two disti  ...[more]

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