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Structural and Functional Characterization of RecG Helicase under Dilute and Molecular Crowding Conditions.

Author
Abstract
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In an ATP-dependent reaction, the Escherichia coli RecG helicase unwinds DNA junctions in vitro. We present evidence of a unique protein conformational change in the RecG helicase from an α-helix to a β-strand upon an ATP binding under dilute conditions using circular dichroism (CD) spectroscopy. In contrast, under molecular crowding conditions, the α-helical conformation was stable even upon an ATP binding. These distinct conformational behaviors were observed to be independent of Na(+) and Mg(2+). Interestingly, CD measurements demonstrated that the spectra of a frayed duplex decreased with increasing of the RecG concentration both under dilute and molecular crowding conditions in the presence of ATP, suggesting that RecG unwound the frayed duplex. Our findings raise the possibility that the α-helix and β-strand forms of RecG are a preactive and an active structure with the helicase activity, respectively.

Year of Publication
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0
Journal
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Journal of nucleic acids
Volume
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2012
Number of Pages
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392039
Date Published
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2012
ISSN Number
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2090-0201
URL
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https://dx.doi.org/10.1155/2012/392039
DOI
:
10.1155/2012/392039
Short Title
:
J Nucleic Acids
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