Numerous studies have been published stressing the importance of finding ligands that can bind specifically to DNA secondary structures. Several have identified ligands that are presented as having specific binding to the G-quadruplex; however, these were not originally tested on the complementary i-motif structure. The i-motif was overlooked and presumed to be irrelevant due to the belief that the hemiprotonated (cytosine+–cytosine) base pair at the core of the structure required acidic pH. The pathophysiological relevance of i-motifs has since been documented, as well as the discovery of several genomic sequences, which can form i-motif at neutral pH. Using different biophysical methodologies, we provide experimental evidence to show that...
YesThere are hundreds of ligands which can interact with G-quadruplex DNA, yet very few which target...
Tetrameric DNA structures such as G-quadruplex (G4) and i-motif (i-DNA) have attracted increasing in...
Concatemers of d(TCCC) that were first detected through their association with deletions at the RACK...
Numerous studies have been published stressing the importance of finding ligands that can bind speci...
International audiencei-Motif (the name stems from “intercalated”), also known as i-DNA, is a pH-dep...
International audiencei-Motifs of DNA (hereafter, i-DNA), known in vitro for nearly three decades, a...
G-quadruplex (G4) and i-motif (iM) are four-stranded non-canonical nucleic acid structural arrangeme...
G-quadruplex (G4) and i-motif (iM) are four-stranded non-canonical nucleic acid structural arrangeme...
i-Motifs are alternative DNA secondary structures formed in cytosine-rich sequences. Particular exam...
<p>G-quadruplex (G4) and i-motif (iM) are four-stranded non-canonical nucleic acid structural arrang...
AbstractG-quadruplex has demonstrated its biological functions in vivo. Although G-quadruplex in sin...
It is well known that B-form DNA is not the only structure formed in the genome. In addition to the ...
The i-motif is a biologically relevant non-canonical DNA structure formed by cytosine-rich sequences...
Cytosine-rich DNA can fold into four-stranded intercalated structures called i-motifs (iMs) under ac...
Some sequences of DNA that possess certain guanine or cytosine-riched stretches are capable of asso...
YesThere are hundreds of ligands which can interact with G-quadruplex DNA, yet very few which target...
Tetrameric DNA structures such as G-quadruplex (G4) and i-motif (i-DNA) have attracted increasing in...
Concatemers of d(TCCC) that were first detected through their association with deletions at the RACK...
Numerous studies have been published stressing the importance of finding ligands that can bind speci...
International audiencei-Motif (the name stems from “intercalated”), also known as i-DNA, is a pH-dep...
International audiencei-Motifs of DNA (hereafter, i-DNA), known in vitro for nearly three decades, a...
G-quadruplex (G4) and i-motif (iM) are four-stranded non-canonical nucleic acid structural arrangeme...
G-quadruplex (G4) and i-motif (iM) are four-stranded non-canonical nucleic acid structural arrangeme...
i-Motifs are alternative DNA secondary structures formed in cytosine-rich sequences. Particular exam...
<p>G-quadruplex (G4) and i-motif (iM) are four-stranded non-canonical nucleic acid structural arrang...
AbstractG-quadruplex has demonstrated its biological functions in vivo. Although G-quadruplex in sin...
It is well known that B-form DNA is not the only structure formed in the genome. In addition to the ...
The i-motif is a biologically relevant non-canonical DNA structure formed by cytosine-rich sequences...
Cytosine-rich DNA can fold into four-stranded intercalated structures called i-motifs (iMs) under ac...
Some sequences of DNA that possess certain guanine or cytosine-riched stretches are capable of asso...
YesThere are hundreds of ligands which can interact with G-quadruplex DNA, yet very few which target...
Tetrameric DNA structures such as G-quadruplex (G4) and i-motif (i-DNA) have attracted increasing in...
Concatemers of d(TCCC) that were first detected through their association with deletions at the RACK...