It is well accepted that the introduction of negative supercoils locally unwinds the DNA double helix, influencing thus the activity of proteins. Despite the use of recent methods of molecular dynamics simulations to model the DNA supercoiling-induced DNA deformation, the precise extent and location of unpaired bases induced by the negative supercoiling have never been investigated at the nucleotide level. Our goals in this study were to use radiolabeled double-stranded DNA mini-circles (dsMCs) to locate the unpaired bases on dsMCs whose topology ranged from relaxed to hyper-negatively supercoiled states, and to characterize the binding of proteins involved in the DNA metabolism. Our results show that the Nuclease SI is nearly ten times mor...
In the presence of a molar excess of eukaryotic DNA topoisomerase II and an appropriate concentratio...
International audienceWe have studied the ability of the histone (H3-H4)2 tetramer, the central part...
Transitions in DNA structure have the capacity to regulate genes, but have been poorly characterised...
It is well accepted that the introduction of negative supercoils locally unwinds the DNA double heli...
Human topoisomerase 1B has been simulated covalently bound to a negatively supercoiled DNA minicircl...
Human topoisomerase 1B has been simulated covalently bound to a negatively supercoiled DNA minicircl...
The discovery of the structure of duplex DNA revealed how cells store genetic information. However, ...
By regulating access to the genetic code, DNA supercoiling strongly affects DNA metabolism. Despite ...
Topoisomerases are enzymes of quintessence to the upkeep of superhelical DNA, and are vital for repl...
The metabolism of DNA in cells relies on the balance between hybridized double-stranded DNA (dsDNA) ...
In both eukaryotes and prokaryotes, negative super-coiling of chromosomal DNA acts locally to regula...
In the cell, DNA is arranged into highly-organised and topologically-constrained (supercoiled) struc...
The metabolism of DNA in cells relies on the balance between hybridized double-stranded DNA (dsDNA) ...
The metabolism of DNA in cells relies on the balance between hybridized double-stranded DNA (dsDNA) ...
We have explored the interdependence of the binding of a DNA triplex and a repressor protein to dist...
In the presence of a molar excess of eukaryotic DNA topoisomerase II and an appropriate concentratio...
International audienceWe have studied the ability of the histone (H3-H4)2 tetramer, the central part...
Transitions in DNA structure have the capacity to regulate genes, but have been poorly characterised...
It is well accepted that the introduction of negative supercoils locally unwinds the DNA double heli...
Human topoisomerase 1B has been simulated covalently bound to a negatively supercoiled DNA minicircl...
Human topoisomerase 1B has been simulated covalently bound to a negatively supercoiled DNA minicircl...
The discovery of the structure of duplex DNA revealed how cells store genetic information. However, ...
By regulating access to the genetic code, DNA supercoiling strongly affects DNA metabolism. Despite ...
Topoisomerases are enzymes of quintessence to the upkeep of superhelical DNA, and are vital for repl...
The metabolism of DNA in cells relies on the balance between hybridized double-stranded DNA (dsDNA) ...
In both eukaryotes and prokaryotes, negative super-coiling of chromosomal DNA acts locally to regula...
In the cell, DNA is arranged into highly-organised and topologically-constrained (supercoiled) struc...
The metabolism of DNA in cells relies on the balance between hybridized double-stranded DNA (dsDNA) ...
The metabolism of DNA in cells relies on the balance between hybridized double-stranded DNA (dsDNA) ...
We have explored the interdependence of the binding of a DNA triplex and a repressor protein to dist...
In the presence of a molar excess of eukaryotic DNA topoisomerase II and an appropriate concentratio...
International audienceWe have studied the ability of the histone (H3-H4)2 tetramer, the central part...
Transitions in DNA structure have the capacity to regulate genes, but have been poorly characterised...