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Regulation of Rep helicase unwinding by an auto-inhibitory subdomain.


ABSTRACT: Helicases are biomolecular motors that unwind nucleic acids, and their regulation is essential for proper maintenance of genomic integrity. Escherichia coli Rep helicase, whose primary role is to help restart stalled replication, serves as a model for Superfamily I helicases. The activity of Rep-like helicases is regulated by two factors: their oligomeric state, and the conformation of the flexible subdomain 2B. However, the mechanism of control is not well understood. To understand the factors that regulate the active state of Rep, here we investigate the behavior of a 2B-deficient variant (Rep?2B) in relation to wild-type Rep (wtRep). Using a single-molecule optical tweezers assay, we explore the effects of oligomeric state, DNA geometry, and duplex stability on wtRep and Rep?2B unwinding activity. We find that monomeric Rep?2B unwinds more processively and at a higher speed than the activated, dimeric form of wtRep. The unwinding processivity of Rep?2B and wtRep is primarily limited by 'strand-switching'-during which the helicases alternate between strands of the duplex-which does not require the 2B subdomain, contrary to a previous proposal. We provide a quantitative model of the factors that enhance unwinding processivity. Our work sheds light on the mechanisms of regulation of unwinding by Rep-like helicases.

SUBMITTER: Makurath MA 

PROVIDER: S-EPMC6412110 | biostudies-literature | 2019 Mar

REPOSITORIES: biostudies-literature

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Regulation of Rep helicase unwinding by an auto-inhibitory subdomain.

Makurath Monika A MA   Whitley Kevin D KD   Nguyen Binh B   Lohman Timothy M TM   Chemla Yann R YR  

Nucleic acids research 20190301 5


Helicases are biomolecular motors that unwind nucleic acids, and their regulation is essential for proper maintenance of genomic integrity. Escherichia coli Rep helicase, whose primary role is to help restart stalled replication, serves as a model for Superfamily I helicases. The activity of Rep-like helicases is regulated by two factors: their oligomeric state, and the conformation of the flexible subdomain 2B. However, the mechanism of control is not well understood. To understand the factors  ...[more]

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