Pyrrole-imidazole (Py-Im) polyamides are synthetic molecules that can be rationally designed to target specific DNA sequences to both disrupt and recruit transcriptional machinery. While in vitro binding has been extensively studied, in vivo effects are often difficult to predict using current models of DNA binding. Determining the impact of genomic architecture and the local chromatin landscape on polyamide-DNA sequence specificity remains an unresolved question that impedes their effective deployment in vivo. In this report we identified polyamide-DNA interaction sites across the entire genome, by covalently crosslinking and capturing these events in the nuclei of human LNCaP cells. This technique confirms the ability of two eight ring ha...
A new upper limit of binding site size is defined for the hairpin polyamide-DNA motif. Ten-ring hair...
Pyrrole−imidazole (Py-Im) hairpin polyamides are a class of small molecule DNA minor groove binding ...
Background: Pyrrole–imidazole polyamides are synthetic ligands that recognize predetermined sequence...
Hairpin pyrrole-imidazole (Py-Im) polyamides are programmable oligomers that bind the DNA minor groo...
Genomic applications of DNA-binding molecules require an unbiased knowledge of their high affinity s...
Pyrrole-imidazole polyamides bind DNA with affinities comparable to those of transcriptional regulat...
ABSTRACT: Genomic applications of DNA-binding mole-cules require an unbiased knowledge of their high...
Polyamides composed of pyrrole (Py) and imidazole (Im) amino acids bind as antiparallel, side-by sid...
Chemically engineered small molecules targeting specific genomic sequences play an important role in...
Pyrrole-imidazole polyamides are versatile DNA minor groove binders and attractive therapeutic optio...
AbstractPyrrole-imidazole polyamides bind DNA with affinities comparable to those of transcriptional...
Hairpin pyrrole-imidazole (Py-Im) polyamides are programmable oligomers that bind the DNA minor groo...
Pyrrole-imidazole polyamides are versatile DNA minor groove binders and attractive therapeutic optio...
AbstractBackground: Gene-specific targeting of any protein-DNA complex by small molecules is a chall...
Polyamides containing N-methylimidazole and N-methylpyrrole amino acids are synthetic ligands that b...
A new upper limit of binding site size is defined for the hairpin polyamide-DNA motif. Ten-ring hair...
Pyrrole−imidazole (Py-Im) hairpin polyamides are a class of small molecule DNA minor groove binding ...
Background: Pyrrole–imidazole polyamides are synthetic ligands that recognize predetermined sequence...
Hairpin pyrrole-imidazole (Py-Im) polyamides are programmable oligomers that bind the DNA minor groo...
Genomic applications of DNA-binding molecules require an unbiased knowledge of their high affinity s...
Pyrrole-imidazole polyamides bind DNA with affinities comparable to those of transcriptional regulat...
ABSTRACT: Genomic applications of DNA-binding mole-cules require an unbiased knowledge of their high...
Polyamides composed of pyrrole (Py) and imidazole (Im) amino acids bind as antiparallel, side-by sid...
Chemically engineered small molecules targeting specific genomic sequences play an important role in...
Pyrrole-imidazole polyamides are versatile DNA minor groove binders and attractive therapeutic optio...
AbstractPyrrole-imidazole polyamides bind DNA with affinities comparable to those of transcriptional...
Hairpin pyrrole-imidazole (Py-Im) polyamides are programmable oligomers that bind the DNA minor groo...
Pyrrole-imidazole polyamides are versatile DNA minor groove binders and attractive therapeutic optio...
AbstractBackground: Gene-specific targeting of any protein-DNA complex by small molecules is a chall...
Polyamides containing N-methylimidazole and N-methylpyrrole amino acids are synthetic ligands that b...
A new upper limit of binding site size is defined for the hairpin polyamide-DNA motif. Ten-ring hair...
Pyrrole−imidazole (Py-Im) hairpin polyamides are a class of small molecule DNA minor groove binding ...
Background: Pyrrole–imidazole polyamides are synthetic ligands that recognize predetermined sequence...