AbstractThe four-stranded i-motif (iM) conformation of cytosine-rich DNA has importance to a wide variety of biochemical systems that range from their use in nanomaterials to potential roles in oncogene regulation. The iM structure is formed at slightly acidic pH, where hemiprotonation of cytosine results in a stable C-C+ basepair. Here, we performed fundamental studies to examine iM formation from a C-rich strand from the promoter of the human c-MYC gene. We used a number of biophysical techniques to characterize both the hydrodynamic properties and folding kinetics of a folded iM. Our hydrodynamic studies using fluorescence anisotropy decay and analytical ultracentrifugation show that the iM structure has a compact size in solution and di...
Sequences containing at least four runs of repetitive cytosines or guanines can form tetra-helical n...
C-myb proto-oncogene is a potential therapeutic target for some human solid tumors and leukemias. A ...
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...
Cytosine-rich DNA can fold into four-stranded intercalated structures called i-motifs (iMs) under ac...
The four-stranded i-motif (iM) conformation of DNA has importance to a variety of biochemical system...
i-Motifs are alternative DNA secondary structures formed in cytosine-rich sequences. Particular exam...
Although the canonical right-handed B-DNA is the predominant form of DNA in cells, DNA can adopt oth...
The cytosine (C)-rich sequences that can fold into tetraplex structures known as i-motif are prevale...
i-Motifs are four-stranded DNA structures consisting of two parallel DNA duplexes held together by h...
ABSTRACT: DNA sequences with the potential to form secondary structures such as i-motifs (iMs) and G...
DNA i-motif is an intercalated quadruplex structure formed by association of hemi- protonated C•CH+ ...
Recently, the presence of i-motif structures at C-rich sequences in human cells and their regulatory...
The i-motif is a DNA structure formed by cytosine-rich sequences that consists of parallel- stranded...
Lay Summary Among the secondary structures alternative to the DNA double helix, i-Motifs (iMs) and G...
Sequences containing at least four runs of repetitive cytosines or guanines can form tetra-helical n...
C-myb proto-oncogene is a potential therapeutic target for some human solid tumors and leukemias. A ...
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...
Cytosine-rich DNA can fold into four-stranded intercalated structures called i-motifs (iMs) under ac...
The four-stranded i-motif (iM) conformation of DNA has importance to a variety of biochemical system...
i-Motifs are alternative DNA secondary structures formed in cytosine-rich sequences. Particular exam...
Although the canonical right-handed B-DNA is the predominant form of DNA in cells, DNA can adopt oth...
The cytosine (C)-rich sequences that can fold into tetraplex structures known as i-motif are prevale...
i-Motifs are four-stranded DNA structures consisting of two parallel DNA duplexes held together by h...
ABSTRACT: DNA sequences with the potential to form secondary structures such as i-motifs (iMs) and G...
DNA i-motif is an intercalated quadruplex structure formed by association of hemi- protonated C•CH+ ...
Recently, the presence of i-motif structures at C-rich sequences in human cells and their regulatory...
The i-motif is a DNA structure formed by cytosine-rich sequences that consists of parallel- stranded...
Lay Summary Among the secondary structures alternative to the DNA double helix, i-Motifs (iMs) and G...
Sequences containing at least four runs of repetitive cytosines or guanines can form tetra-helical n...
C-myb proto-oncogene is a potential therapeutic target for some human solid tumors and leukemias. A ...
Under the appropriate experimental conditions of pH and temperature, cytosine-rich segments in DNA o...