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Mechanism for priming DNA synthesis by yeast DNA polymerase ?.


ABSTRACT: The DNA Polymerase ? (Pol ?)/primase complex initiates DNA synthesis in eukaryotic replication. In the complex, Pol ? and primase cooperate in the production of RNA-DNA oligonucleotides that prime synthesis of new DNA. Here we report crystal structures of the catalytic core of yeast Pol ? in unliganded form, bound to an RNA primer/DNA template and extending an RNA primer with deoxynucleotides. We combine the structural analysis with biochemical and computational data to demonstrate that Pol ? specifically recognizes the A-form RNA/DNA helix and that the ensuing synthesis of B-form DNA terminates primer synthesis. The spontaneous release of the completed RNA-DNA primer by the Pol ?/primase complex simplifies current models of primer transfer to leading- and lagging strand polymerases. The proposed mechanism of nucleotide polymerization by Pol ? might contribute to genomic stability by limiting the amount of inaccurate DNA to be corrected at the start of each Okazaki fragment. DOI:http://dx.doi.org/10.7554/eLife.00482.001.

SUBMITTER: Perera RL 

PROVIDER: S-EPMC3628110 | biostudies-literature | 2013 Apr

REPOSITORIES: biostudies-literature

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Mechanism for priming DNA synthesis by yeast DNA polymerase α.

Perera Rajika L RL   Torella Rubben R   Klinge Sebastian S   Kilkenny Mairi L ML   Maman Joseph D JD   Pellegrini Luca L  

eLife 20130402


The DNA Polymerase α (Pol α)/primase complex initiates DNA synthesis in eukaryotic replication. In the complex, Pol α and primase cooperate in the production of RNA-DNA oligonucleotides that prime synthesis of new DNA. Here we report crystal structures of the catalytic core of yeast Pol α in unliganded form, bound to an RNA primer/DNA template and extending an RNA primer with deoxynucleotides. We combine the structural analysis with biochemical and computational data to demonstrate that Pol α sp  ...[more]

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