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A structural basis for the regulatory inactivation of DnaA

Authors :
Polat Abdubek
Sanjay Krishna
Daniel McMullan
Tamara Astakhova
Ron Reyes
Amanda Nopakun
Lian Duan
Scott A. Lesley
Debanu Das
Dana Weekes
Henry van den Bedem
Adam Godzik
Piotr Kozbial
Edward Nigoghossian
Marc André Elsliger
Keith O. Hodgson
Linda Okach
Christine B Trame
Mark W. Knuth
John Wooley
David Marciano
Mitchell D. Miller
Dennis Carlton
Hope A. Johnson
Christopher L. Rife
Jessica Paulsen
Thomas Clayton
Hsiu-Ju Chiu
Gye Won Han
Silvya Oommachen
Abhinav Kumar
Ashley M. Deacon
Joanna Hale
Ian A. Wilson
Christina Puckett
Andrew T. Morse
Marc C. Deller
Heath E. Klock
Natasha Sefcovic
Qingping Xu
Lukasz Jaroszewski
Julie Feuerhelm
Kevin K. Jin
Connie Chen
Source :
Journal of molecular biology. 385(2)
Publication Year :
2008

Abstract

Regulatory inactivation of DnaA is dependent on Hda (homologous to DnaA), a protein homologous to the AAA+ (ATPases associated with diverse cellular activities) ATPase region of the replication initiator DnaA. When bound to the sliding clamp loaded onto duplex DNA, Hda can stimulate the transformation of active DnaA-ATP into inactive DnaA-ADP. The crystal structure of Hda from Shewanella amazonensis SB2B at 1.75 A resolution reveals that Hda resembles typical AAA+ ATPases. The arrangement of the two subdomains in Hda (residues 1-174 and 175-241) differs dramatically from that of DnaA. A CDP molecule anchors the Hda domains in a conformation that promotes dimer formation. The Hda dimer adopts a novel oligomeric assembly for AAA+ proteins in which the arginine finger, crucial for ATP hydrolysis, is fully exposed and available to hydrolyze DnaA-ATP through a typical AAA+ type of mechanism. The sliding clamp binding motifs at the N-terminus of each Hda monomer are partially buried and combine to form an antiparallel beta-sheet at the dimer interface. The inaccessibility of the clamp binding motifs in the CDP-bound structure of Hda suggests that conformational changes are required for Hda to form a functional complex with the clamp. Thus, the CDP-bound Hda dimer likely represents an inactive form of Hda.

Details

ISSN :
10898638
Volume :
385
Issue :
2
Database :
OpenAIRE
Journal :
Journal of molecular biology
Accession number :
edsair.doi.dedup.....9b75637eb7f9de7f3514114def838961