i-Motifs are four-stranded DNA structures consisting of two parallel DNA duplexes held together by hemi-protonated and intercalated cytosine base pairs (C:CH). They have attracted considerable research interest for their potential role in gene regulation and their use as pH responsive switches and building blocks in macromolecular assemblies. At neutral and basic pH values, the cytosine bases deprotonate and the structure unfolds into single strands. To avoid this limitation and expand the range of environmental conditions supporting i-motif folding, we replaced the sugar in DNA by 2-deoxy-2-fluoroarabinose. We demonstrate that such a modification significantly stabilizes i-motif formation over a wide pH range, including pH 7. Nuclear magne...
We study here a DNA oligonucleotide having the ability to form two different i-motif structures whos...
It is well known that oligonucleotides containing tracts cytosines can form i-motif structures under...
Given the increasing interest in i-motif structures, obtaining such structures as well as detailed s...
i-Motifs are four-stranded DNA structures consisting of two parallel DNA duplexes held together by h...
We have investigated for the first time the structure of i-motif DNA in solution at various pH condi...
International audiencei-Motifs of DNA (hereafter, i-DNA), known in vitro for nearly three decades, a...
Cytosine-rich DNA can fold into four-stranded intercalated structures called i-motifs (iMs) under ac...
i-Motifs are alternative DNA secondary structures formed in cytosine-rich sequences. Particular exam...
DNA i-motif is an intercalated quadruplex structure formed by association of hemi- protonated C•CH+ ...
19 pags., 7 figs.The i-motif represents a paradigmatic example of the wide structural versatility of...
The folding of various intra- and intermolecular i-motif DNAs is systematically studied to expand th...
Under the appropriate experimental conditions of pH and temperature, cytosine-rich segments in DNA o...
AbstractThe four-stranded i-motif (iM) conformation of cytosine-rich DNA has importance to a wide va...
Although the canonical right-handed B-DNA is the predominant form of DNA in cells, DNA can adopt oth...
Recently, the presence of i-motif structures at C-rich sequences in human cells and their regulatory...
We study here a DNA oligonucleotide having the ability to form two different i-motif structures whos...
It is well known that oligonucleotides containing tracts cytosines can form i-motif structures under...
Given the increasing interest in i-motif structures, obtaining such structures as well as detailed s...
i-Motifs are four-stranded DNA structures consisting of two parallel DNA duplexes held together by h...
We have investigated for the first time the structure of i-motif DNA in solution at various pH condi...
International audiencei-Motifs of DNA (hereafter, i-DNA), known in vitro for nearly three decades, a...
Cytosine-rich DNA can fold into four-stranded intercalated structures called i-motifs (iMs) under ac...
i-Motifs are alternative DNA secondary structures formed in cytosine-rich sequences. Particular exam...
DNA i-motif is an intercalated quadruplex structure formed by association of hemi- protonated C•CH+ ...
19 pags., 7 figs.The i-motif represents a paradigmatic example of the wide structural versatility of...
The folding of various intra- and intermolecular i-motif DNAs is systematically studied to expand th...
Under the appropriate experimental conditions of pH and temperature, cytosine-rich segments in DNA o...
AbstractThe four-stranded i-motif (iM) conformation of cytosine-rich DNA has importance to a wide va...
Although the canonical right-handed B-DNA is the predominant form of DNA in cells, DNA can adopt oth...
Recently, the presence of i-motif structures at C-rich sequences in human cells and their regulatory...
We study here a DNA oligonucleotide having the ability to form two different i-motif structures whos...
It is well known that oligonucleotides containing tracts cytosines can form i-motif structures under...
Given the increasing interest in i-motif structures, obtaining such structures as well as detailed s...