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PMID: 10892646 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Crystal structure of T7 gene 4 ring helicase indicates a mechanism for sequential hydrolysis of nucleotides.

Cell ·Vol. 101 ·No. 6 ·2000-06-09 ·Pages 589-600

Singleton MR, Sawaya MR, Ellenberger T, Wigley DB

Abstract

We have determined the crystal structure of an active, hexameric fragment of the gene 4 helicase from bacteriophage T7. The structure reveals how subunit contacts stabilize the hexamer. Deviation from expected six-fold symmetry of the hexamer indicates that the structure is of an intermediate on the catalytic pathway. The structural consequences of the asymmetry suggest a "binding change" mechanism to explain how cooperative binding and hydrolysis of nucleotides are coupled to conformational changes in the ring that most likely accompany duplex unwinding. The structure of a complex with a nonhydrolyzable ATP analog provides additional evidence for this hypothesis, with only four of the six possible nucleotide binding sites being occupied in this conformation of the hexamer. This model suggests a mechanism for DNA translocation.

MeSH Terms
Bacteriophage T7 DNA Helicases/chemistry Hydrolysis Nucleotides/chemistry Protein Conformation
Chemicals
Nucleotides DNA Helicases
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Singleton M R
Sir William Dunn School of Pathology, University of Oxford, United Kingdom.
Sawaya M R
Ellenberger T
Wigley D B
Article Info
Journal
Cell
Abbr.
Cell
ISSN
0092-8674
Published
2000-06-09
Pages
589-600
Language
English
Region
United States
NLM ID
0413066
Subset
IM
Databases
PDB
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