AbstractBackground: Gene-specific targeting of any protein-DNA complex by small molecules is a challenging goal at the interface of chemistry and biology. Polyamides containing N-methylimidazole and N-methylpyrrole amino acids are synthetic ligands that have an affinity and specificity for DNA comparable to many naturally occurring DNA-binding proteins. It has been shown that an eight-ring hairpin polyamide targeted to a specific minor-groove contact within a transcription factor binding site can inhibit protein-DNA binding and gene transcription. Polyamides and certain major-groove-binding proteins have been found to co-occupy the DNA helix, however. To expand the number of genes that can be targeted by pyrrole/imidazole polyamides, we set...
Small molecules that specifically bind with high affinity to any designated DNA sequence in the huma...
AbstractBackground: Three-ring polyamides containing N-methylimidazole and N-methylpyrrole amino aci...
Polyamides containing N-methylimidazole (Im) and N-methylpyrrole (Py) amino acids can be combined in...
AbstractBackground: Gene-specific targeting of any protein-DNA complex by small molecules is a chall...
Gene-specific targeting of any protein-DNA complex by small molecules is a challenging goal at the i...
Hairpin pyrrole-imidazole (Py-Im) polyamides are programmable oligomers that bind the DNA minor groo...
Hairpin pyrrole-imidazole (Py-Im) polyamides are programmable oligomers that bind the DNA minor groo...
Polyamides containing N-methylimidazole and N-methylpyrrole amino acids are synthetic ligands that b...
Many human diseases are caused by dysregulated gene expression. The oversupply of transcription fact...
Exogenous control of gene expression is an essential goal to better understand and ultimately treat ...
Exogenous control of gene expression is an essential goal to better understand and ultimately treat ...
Cell permeable synthetic ligands that bind to predetermined DNA sequences offer a chemical approach ...
Cell permeable synthetic ligands that bind to predetermined DNA sequences offer a chemical approach ...
Cell permeable synthetic ligands that bind to predetermined DNA sequences offer a chemical approach ...
Cell permeable synthetic ligands that bind to predetermined DNA sequences offer a chemical approach ...
Small molecules that specifically bind with high affinity to any designated DNA sequence in the huma...
AbstractBackground: Three-ring polyamides containing N-methylimidazole and N-methylpyrrole amino aci...
Polyamides containing N-methylimidazole (Im) and N-methylpyrrole (Py) amino acids can be combined in...
AbstractBackground: Gene-specific targeting of any protein-DNA complex by small molecules is a chall...
Gene-specific targeting of any protein-DNA complex by small molecules is a challenging goal at the i...
Hairpin pyrrole-imidazole (Py-Im) polyamides are programmable oligomers that bind the DNA minor groo...
Hairpin pyrrole-imidazole (Py-Im) polyamides are programmable oligomers that bind the DNA minor groo...
Polyamides containing N-methylimidazole and N-methylpyrrole amino acids are synthetic ligands that b...
Many human diseases are caused by dysregulated gene expression. The oversupply of transcription fact...
Exogenous control of gene expression is an essential goal to better understand and ultimately treat ...
Exogenous control of gene expression is an essential goal to better understand and ultimately treat ...
Cell permeable synthetic ligands that bind to predetermined DNA sequences offer a chemical approach ...
Cell permeable synthetic ligands that bind to predetermined DNA sequences offer a chemical approach ...
Cell permeable synthetic ligands that bind to predetermined DNA sequences offer a chemical approach ...
Cell permeable synthetic ligands that bind to predetermined DNA sequences offer a chemical approach ...
Small molecules that specifically bind with high affinity to any designated DNA sequence in the huma...
AbstractBackground: Three-ring polyamides containing N-methylimidazole and N-methylpyrrole amino aci...
Polyamides containing N-methylimidazole (Im) and N-methylpyrrole (Py) amino acids can be combined in...