SMALL molecules that specifically bind with high affinity to any predetermined DNA sequence in the human genome would be useful tools in molecular biology and potentially in human medicine. Simple rules have been developed to control rationally the sequence specificity of minor-groove-binding polyamides containing N-methylimidazole and N-methylpyrrole amino acids. Two eight-ring pyrrole–imidazole polyamides differing in sequence by a single amino acid bind specifically to respective six-base-pair target sites which differ in sequence by a single base pair. Binding is observed at subnanomolar concentrations of ligand. The replacement of a single nitrogen atom with a C-H regulates affinity and specificity by two orders of magnitude. The broad...
A new upper limit of binding site size is defined for the 2:1 overlapped polyamide:DNA motif. Eight-...
A new upper limit of binding site size is defined for the 2:1 overlapped polyamide:DNA motif. Eight-...
The sequence-specific recognition of the minor groove of DNA by pyrrole−imidazole polyamides has bee...
Small molecules that specifically bind with high affinity to any predetermined DNA sequence in the h...
Small molecules that specifically bind with high affinity to any predetermined DNA sequence in the h...
Small molecules that specifically bind with high affinity to any predetermined DNA sequence in the h...
Cell-permeable small molecules that bind predetermined DNA sequences with affinities and specificit...
Three-ring polyamides containing N-methylimidazole and N-methylpyrrole amino acids bind sequence-spe...
Three-ring polyamides containing N-methylimidazole and N-methylpyrrole amino acids bind sequence-spe...
Small molecules that target specific DNA sequences offer a potentially general approach for the regu...
Polyamides composed of pyrrole (Py) and imidazole (Im) amino acids bind as antiparallel, side-by sid...
Small molecules that specifically bind with high affinity to any designated DNA sequence in the huma...
Polyamides consisting of N-methylpyrrole (Py), N-methylimidazole (Im), and N-methyl-3-hydroxypyrrole...
Small molecules that target specific DNA sequences offer a potentially general approach for the regu...
A new upper limit of binding site size is defined for the 2:1 overlapped polyamide:DNA motif. Eight-...
A new upper limit of binding site size is defined for the 2:1 overlapped polyamide:DNA motif. Eight-...
A new upper limit of binding site size is defined for the 2:1 overlapped polyamide:DNA motif. Eight-...
The sequence-specific recognition of the minor groove of DNA by pyrrole−imidazole polyamides has bee...
Small molecules that specifically bind with high affinity to any predetermined DNA sequence in the h...
Small molecules that specifically bind with high affinity to any predetermined DNA sequence in the h...
Small molecules that specifically bind with high affinity to any predetermined DNA sequence in the h...
Cell-permeable small molecules that bind predetermined DNA sequences with affinities and specificit...
Three-ring polyamides containing N-methylimidazole and N-methylpyrrole amino acids bind sequence-spe...
Three-ring polyamides containing N-methylimidazole and N-methylpyrrole amino acids bind sequence-spe...
Small molecules that target specific DNA sequences offer a potentially general approach for the regu...
Polyamides composed of pyrrole (Py) and imidazole (Im) amino acids bind as antiparallel, side-by sid...
Small molecules that specifically bind with high affinity to any designated DNA sequence in the huma...
Polyamides consisting of N-methylpyrrole (Py), N-methylimidazole (Im), and N-methyl-3-hydroxypyrrole...
Small molecules that target specific DNA sequences offer a potentially general approach for the regu...
A new upper limit of binding site size is defined for the 2:1 overlapped polyamide:DNA motif. Eight-...
A new upper limit of binding site size is defined for the 2:1 overlapped polyamide:DNA motif. Eight-...
A new upper limit of binding site size is defined for the 2:1 overlapped polyamide:DNA motif. Eight-...
The sequence-specific recognition of the minor groove of DNA by pyrrole−imidazole polyamides has bee...