The tumour suppressor protein p53 is one of the most important factors regulating cell proliferation, differentiation and programmed cell death in response to a variety of cellular stress signals. P53 is a nuclear phosphoprotein and its biochemical function is closely associated with its ability to bind DNA in a sequence-specific manner and operate as a transcription factor. Using a competition assay, we investigated the effect of DNA topology on the DNA binding of human wild-type p53 protein. We prepared sets of topoisomers of plasmid DNA with and without p53 target sequences, differing in their internal symmetry. Binding of p53 to DNA increased with increasing negative superhelix density (−σ). At −σ≤0.03, the relative effect of DNA supercoiling on protein–DNA binding was similar for DNA containing both symmetrical and non-symmetrical target sites. On the other hand, at higher −σ, target sites with a perfect inverted repeat sequence exhibited a more significant enhancement of p53 binding as a result of increasing levels of negative DNA supercoiling. For −σ=0.07, an approx. 3-fold additional increase in binding was observed for a symmetrical target site compared with a non-symmetrical target site. The p53 target sequences possessing the inverted repeat symmetry were shown to form a cruciform structure in sufficiently negative supercoiled DNA. We show that formation of cruciforms in DNA topoisomers at −σ≥0.05 correlates with the extra enhancement of p53–DNA binding.
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Research Article|
April 25 2008
DNA topology influences p53 sequence-specific DNA binding through structural transitions within the target sites Available to Purchase
Eva B. Jagelská;
Eva B. Jagelská
*Institute of Biophysics, Academy of Sciences of the Czech Republic, Královopolská 135, 612 65 Brno, Czech Republic
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Václav Brázda;
Václav Brázda
1
*Institute of Biophysics, Academy of Sciences of the Czech Republic, Královopolská 135, 612 65 Brno, Czech Republic
1To whom correspondence should be addressed (email [email protected]).
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Petr Pečinka;
Petr Pečinka
†Faculty of Science, University of Ostrava, Dvořákova 7, 701 03 Ostrava, Czech Republic
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Emil Paleček;
Emil Paleček
*Institute of Biophysics, Academy of Sciences of the Czech Republic, Královopolská 135, 612 65 Brno, Czech Republic
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Miroslav Fojta
Miroslav Fojta
*Institute of Biophysics, Academy of Sciences of the Czech Republic, Královopolská 135, 612 65 Brno, Czech Republic
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Publisher: Portland Press Ltd
Received:
December 07 2007
Revision Received:
February 13 2008
Accepted:
February 14 2008
Accepted Manuscript online:
February 14 2008
Online ISSN: 1470-8728
Print ISSN: 0264-6021
© The Authors Journal compilation © 2008 Biochemical Society
2008
Biochem J (2008) 412 (1): 57–63.
Article history
Received:
December 07 2007
Revision Received:
February 13 2008
Accepted:
February 14 2008
Accepted Manuscript online:
February 14 2008
Citation
Eva B. Jagelská, Václav Brázda, Petr Pečinka, Emil Paleček, Miroslav Fojta; DNA topology influences p53 sequence-specific DNA binding through structural transitions within the target sites. Biochem J 15 May 2008; 412 (1): 57–63. doi: https://doi.org/10.1042/BJ20071648
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