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PMID: 25420454 Published · epublish English

Structure of the hexameric HerA ATPase reveals a mechanism of translocation-coupled DNA-end processing in archaea.

Nature communications ·Vol. 5 ·2015-10-15

Rzechorzek Neil J, Blackwood John K, Bray Sian M, Maman Joseph D, Pellegrini Luca, Robinson Nicholas P

Abstract

The HerA ATPase cooperates with the NurA nuclease and the Mre11-Rad50 complex for the repair of double-strand DNA breaks in thermophilic archaea. Here we extend our structural knowledge of this minimal end-resection apparatus by presenting the first crystal structure of hexameric HerA. The full-length structure visualizes at atomic resolution the N-terminal HerA-ATP synthase domain and a conserved C-terminal extension, which acts as a physical brace between adjacent protomers. The brace also interacts in trans with nucleotide-binding residues of the neighbouring subunit. Our observations support a model in which the coaxial interaction of the HerA ring with the toroidal NurA dimer generates a continuous channel traversing the complex. HerA-driven translocation would propel the DNA towards the narrow annulus of NurA, leading to duplex melting and nucleolytic digestion. This system differs substantially from the bacterial end-resection paradigms. Our findings suggest a novel mode of DNA-end processing by this integrated archaeal helicase-nuclease machine.

Article Info
Journal
Nature communications
Abbr.
Nat Commun
Published
2015-10-15
Indexed
2014-11-25
Updated
2016-11-22
Language
English
Country/Region
England
NLM ID
101528555
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