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Mechanistic analysis of local ori melting and helicase assembly by the papillomavirus E1 protein.


ABSTRACT: Preparation of DNA templates for replication requires opening of the duplex to expose single-stranded (ss) DNA. The locally melted DNA is required for replicative DNA helicases to initiate unwinding. How local melting is generated in eukaryotic replicons is unknown, but initiator proteins from a handful of eukaryotic viruses can perform this function. Here we dissect the local melting process carried out by the papillomavirus E1 protein. We characterize the melting process kinetically and identify mutations in the E1 helicase and in the ori that arrest the local melting process. We show that a subset of these mutants have specific defects for melting of the center of the ori containing the binding sites for E1 and demonstrate that these mutants fail to untwist the ori DNA. This understanding of how E1 generates local melting suggests possible mechanisms for local melting in other replicons.

SUBMITTER: Schuck S 

PROVIDER: S-EPMC3209524 | biostudies-literature | 2011 Sep

REPOSITORIES: biostudies-literature

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Mechanistic analysis of local ori melting and helicase assembly by the papillomavirus E1 protein.

Schuck Stephen S   Stenlund Arne A  

Molecular cell 20110901 5


Preparation of DNA templates for replication requires opening of the duplex to expose single-stranded (ss) DNA. The locally melted DNA is required for replicative DNA helicases to initiate unwinding. How local melting is generated in eukaryotic replicons is unknown, but initiator proteins from a handful of eukaryotic viruses can perform this function. Here we dissect the local melting process carried out by the papillomavirus E1 protein. We characterize the melting process kinetically and identi  ...[more]

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