The study of ligand interaction with G-quadruplex DNA is an active research area, because many ligands are shown to bind G-quadruplex structures, showing anticancer effects. Here, we show, for the first time, how fluorescence correlation spectroscopy (FCS) can be used to study binding kinetics of ligands with G-quadruplex DNA at the single molecule level. As an example, we study interaction of a benzo-phenoxazine ligand (Cresyl Violet, CV) with antiparallel and (3 + 1) hybrid G-quadruplex structures formed by human telomeric sequence. By using simple modifications in FCS setup, we describe how one can extract the reaction kinetics from diffusion-coupled correlation curves. It is found that the ligand (CV) binds stronger, by an order of magn...
G-quadruplex represents a group of unusual DNA secondary structures, based on Hoogsteen G-G pairing ...
AbstractStructural complexity is an inherent feature of the human telomeric sequence, and it present...
This article describes how a natural alkaloid allocryptopine (ALL) is able to differentiate two form...
none5siSpecific guanine-rich regions in human genome can form higher-order DNA structures called G-q...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
There is currently significant interest in the development of G-quadruplex-interactive compounds, gi...
G-Quadruplexes are noncanonical structures formed by certain guanine-rich sequences of DNA.1 The G-q...
Today, G-quadruplexes are an active research area because of their potential as an anticancer method...
Guanine-rich sequences may fold into highly ordered structures known as G-quadruplexes. Apart from t...
G-quadruplex (or G4 DNA) specific ligands are important potential anticancer molecules as telomerase...
Nowadays, the molecular basis of interaction between low molecular weight compounds and biological m...
G-quadruplex ligands are potential anticancer agents as telomerase inhibitors and potential transcri...
Nowadays, the molecular basis of interaction between low molecular weight compounds and biological m...
G-quadruplexes (G4s) are higher-order DNA structures typically present at promoter regions of genes ...
Nowadays, it has been demonstrated that DNA G-quadruplex arrangements are involved in cellular aging...
G-quadruplex represents a group of unusual DNA secondary structures, based on Hoogsteen G-G pairing ...
AbstractStructural complexity is an inherent feature of the human telomeric sequence, and it present...
This article describes how a natural alkaloid allocryptopine (ALL) is able to differentiate two form...
none5siSpecific guanine-rich regions in human genome can form higher-order DNA structures called G-q...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
There is currently significant interest in the development of G-quadruplex-interactive compounds, gi...
G-Quadruplexes are noncanonical structures formed by certain guanine-rich sequences of DNA.1 The G-q...
Today, G-quadruplexes are an active research area because of their potential as an anticancer method...
Guanine-rich sequences may fold into highly ordered structures known as G-quadruplexes. Apart from t...
G-quadruplex (or G4 DNA) specific ligands are important potential anticancer molecules as telomerase...
Nowadays, the molecular basis of interaction between low molecular weight compounds and biological m...
G-quadruplex ligands are potential anticancer agents as telomerase inhibitors and potential transcri...
Nowadays, the molecular basis of interaction between low molecular weight compounds and biological m...
G-quadruplexes (G4s) are higher-order DNA structures typically present at promoter regions of genes ...
Nowadays, it has been demonstrated that DNA G-quadruplex arrangements are involved in cellular aging...
G-quadruplex represents a group of unusual DNA secondary structures, based on Hoogsteen G-G pairing ...
AbstractStructural complexity is an inherent feature of the human telomeric sequence, and it present...
This article describes how a natural alkaloid allocryptopine (ALL) is able to differentiate two form...