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PMID: 21441914 Published · ppublish English

ABC ATPase signature helices in Rad50 link nucleotide state to Mre11 interface for DNA repair.

Nature structural & molecular biology ·Vol. 18 ·No. 4 ·2011-06-03

Williams Gareth J, Williams R Scott, Williams Jessica S, Moncalian Gabriel, Arvai Andrew S, Limbo Oliver, Guenther Grant, SilDas Soumita, Hammel Michal, Russell Paul, Tainer John A

Abstract

The Rad50 ABC-ATPase complex with Mre11 nuclease is essential for dsDNA break repair, telomere maintenance and ataxia telangiectasia-mutated kinase checkpoint signaling. How Rad50 affects Mre11 functions and how ABC-ATPases communicate nucleotide binding and ligand states across long distances and among protein partners are questions that have remained obscure. Here, structures of Mre11-Rad50 complexes define the Mre11 2-helix Rad50 binding domain (RBD) that forms a four-helix interface with Rad50 coiled coils adjoining the ATPase core. Newly identified effector and basic-switch helix motifs extend the ABC-ATPase signature motif to link ATP-driven Rad50 movements to coiled coils binding Mre11, implying an ~30-Å pull on the linker to the nuclease domain. Both RBD and basic-switch mutations cause clastogen sensitivity. Our new results characterize flexible ATP-dependent Mre11 regulation, defects in cancer-linked RBD mutations, conserved superfamily basic switches and motifs effecting ATP-driven conformational change, and they provide a unified comprehension of ABC-ATPase activities.

Article Info
Journal
Nature structural & molecular biology
Abbr.
Nat Struct Mol Biol
Published
2011-06-03
Indexed
2011-04-06
Updated
2016-11-22
Language
English
Country/Region
United States
NLM ID
101186374
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