We have investigated for the first time the structure of i-motif DNA in solution at various pH conditions by using synchrotron small-angle X-ray scattering technique. To facilitate direct structural. comparison between solution structures of i-motif DNA at various pH values, we created atomic coordinates of i-motif DNA from a fully folded to unfolded atomic model. Under mild acidic conditions, the conformations for i-motif DNA appeared to be similar to that of the partially unfolded i-motif atomic model in overall shape, rather than the fully folded i-motif atomic model. Collectively, our observations indicate that i-motif DNA molecule is structurally dynamic over a wide pH range, adopting multiple conformations ranging from the folded i-mo...
Under slightly acidic conditions, cytosine-rich DNA sequences can form non-canonical secondary struc...
pH-responsive DNA motifs have attracted substantial attention attributed to their high designability...
i-Motifs are four-stranded DNA structures formed from sequences rich in cytosine, held together by h...
We have investigated for the first time the structure of i-motif DNA in solution at various pH condi...
Under the appropriate experimental conditions of pH and temperature, cytosine-rich segments in DNA o...
The i-motif is a biologically relevant non-canonical DNA structure formed by cytosine-rich sequences...
We study here a DNA oligonucleotide having the ability to form two different i-motif structures whos...
International audiencei-Motif (the name stems from “intercalated”), also known as i-DNA, is a pH-dep...
i-Motifs are four-stranded DNA structures consisting of two parallel DNA duplexes held together by h...
International audiencei-Motifs of DNA (hereafter, i-DNA), known in vitro for nearly three decades, a...
dissertationThe intramolecular DNA i-motif is a non-canonical, tetraplex structure that is formed fr...
Cytosine-rich DNA sequences are able to fold into noncanonical structures, in which semi-protonated ...
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...
It is well known that oligonucleotides containing tracts cytosines can form i-motif structures under...
Under slightly acidic conditions, cytosine-rich DNA sequences can form non-canonical secondary struc...
pH-responsive DNA motifs have attracted substantial attention attributed to their high designability...
i-Motifs are four-stranded DNA structures formed from sequences rich in cytosine, held together by h...
We have investigated for the first time the structure of i-motif DNA in solution at various pH condi...
Under the appropriate experimental conditions of pH and temperature, cytosine-rich segments in DNA o...
The i-motif is a biologically relevant non-canonical DNA structure formed by cytosine-rich sequences...
We study here a DNA oligonucleotide having the ability to form two different i-motif structures whos...
International audiencei-Motif (the name stems from “intercalated”), also known as i-DNA, is a pH-dep...
i-Motifs are four-stranded DNA structures consisting of two parallel DNA duplexes held together by h...
International audiencei-Motifs of DNA (hereafter, i-DNA), known in vitro for nearly three decades, a...
dissertationThe intramolecular DNA i-motif is a non-canonical, tetraplex structure that is formed fr...
Cytosine-rich DNA sequences are able to fold into noncanonical structures, in which semi-protonated ...
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...
It is well known that oligonucleotides containing tracts cytosines can form i-motif structures under...
Under slightly acidic conditions, cytosine-rich DNA sequences can form non-canonical secondary struc...
pH-responsive DNA motifs have attracted substantial attention attributed to their high designability...
i-Motifs are four-stranded DNA structures formed from sequences rich in cytosine, held together by h...