Helicase binding to DnaI exposes a cryptic DNA-binding site during helicase loading in Bacillus subtilis.

The Bacillus subtilis DnaI, DnaB and DnaD proteins load the replicative ring helicase DnaC onto DNA during priming of DNA replication. Here we show that DnaI consists of a C-terminal domain (Cd) with ATPase and DNA-binding activities and an N-terminal domain (Nd) that interacts with the replicative...

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Main Authors: Ioannou, C, Schaeffer, P, Dixon, N, Soultanas, P
Format: Journal article
Language:English
Published: 2006
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author Ioannou, C
Schaeffer, P
Dixon, N
Soultanas, P
author_facet Ioannou, C
Schaeffer, P
Dixon, N
Soultanas, P
author_sort Ioannou, C
collection OXFORD
description The Bacillus subtilis DnaI, DnaB and DnaD proteins load the replicative ring helicase DnaC onto DNA during priming of DNA replication. Here we show that DnaI consists of a C-terminal domain (Cd) with ATPase and DNA-binding activities and an N-terminal domain (Nd) that interacts with the replicative ring helicase. A Zn2+-binding module mediates the interaction with the helicase and C67, C70 and H84 are involved in the coordination of the Zn2+. DnaI binds ATP and exhibits ATPase activity that is not stimulated by ssDNA, because the DNA-binding site on Cd is masked by Nd. The ATPase activity resides on the Cd domain and when detached from the Nd domain, it becomes sensitive to stimulation by ssDNA because its cryptic DNA-binding site is exposed. Therefore, Nd acts as a molecular 'switch' regulating access to the ssDNA binding site on Cd, in response to binding of the helicase. DnaI is sufficient to load the replicative helicase from a complex with six DnaI molecules, so there is no requirement for a dual helicase loader system.
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spelling oxford-uuid:447fc860-e1c8-4337-9c38-e3c562d2e07f2022-03-26T15:01:51ZHelicase binding to DnaI exposes a cryptic DNA-binding site during helicase loading in Bacillus subtilis.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:447fc860-e1c8-4337-9c38-e3c562d2e07fEnglishSymplectic Elements at Oxford2006Ioannou, CSchaeffer, PDixon, NSoultanas, PThe Bacillus subtilis DnaI, DnaB and DnaD proteins load the replicative ring helicase DnaC onto DNA during priming of DNA replication. Here we show that DnaI consists of a C-terminal domain (Cd) with ATPase and DNA-binding activities and an N-terminal domain (Nd) that interacts with the replicative ring helicase. A Zn2+-binding module mediates the interaction with the helicase and C67, C70 and H84 are involved in the coordination of the Zn2+. DnaI binds ATP and exhibits ATPase activity that is not stimulated by ssDNA, because the DNA-binding site on Cd is masked by Nd. The ATPase activity resides on the Cd domain and when detached from the Nd domain, it becomes sensitive to stimulation by ssDNA because its cryptic DNA-binding site is exposed. Therefore, Nd acts as a molecular 'switch' regulating access to the ssDNA binding site on Cd, in response to binding of the helicase. DnaI is sufficient to load the replicative helicase from a complex with six DnaI molecules, so there is no requirement for a dual helicase loader system.
spellingShingle Ioannou, C
Schaeffer, P
Dixon, N
Soultanas, P
Helicase binding to DnaI exposes a cryptic DNA-binding site during helicase loading in Bacillus subtilis.
title Helicase binding to DnaI exposes a cryptic DNA-binding site during helicase loading in Bacillus subtilis.
title_full Helicase binding to DnaI exposes a cryptic DNA-binding site during helicase loading in Bacillus subtilis.
title_fullStr Helicase binding to DnaI exposes a cryptic DNA-binding site during helicase loading in Bacillus subtilis.
title_full_unstemmed Helicase binding to DnaI exposes a cryptic DNA-binding site during helicase loading in Bacillus subtilis.
title_short Helicase binding to DnaI exposes a cryptic DNA-binding site during helicase loading in Bacillus subtilis.
title_sort helicase binding to dnai exposes a cryptic dna binding site during helicase loading in bacillus subtilis
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AT schaefferp helicasebindingtodnaiexposesacrypticdnabindingsiteduringhelicaseloadinginbacillussubtilis
AT dixonn helicasebindingtodnaiexposesacrypticdnabindingsiteduringhelicaseloadinginbacillussubtilis
AT soultanasp helicasebindingtodnaiexposesacrypticdnabindingsiteduringhelicaseloadinginbacillussubtilis