Pyrrole−imidazole (Py-Im) hairpin polyamides are a class of small molecule DNA minor groove binding compounds that have been shown to modulate endogenous gene expression in cell culture. Gene regulation by polyamides requires efficient cellular uptake and nuclear localization properties for candidate compounds. To further optimize Py-Im polyamides for enhanced potency in cell culture, a focused library of polyamides possessing various modifications at the C-terminus was synthesized and tested. Comparison of polyamide biological activity in two cell lines revealed tolerance for structural modifications and agreement in activity trends between cell lines. The use of an oxime linkage between the polyamide and an aromatic functionality on the C...
Gene regulation by DNA binding small molecules could have important therapeutic applications. This s...
Many human diseases are caused by dysregulated gene expression. The oversupply of transcription fact...
Pyrrole-imidazole (Py–Im) polyamides are synthetic non-genotoxic minor groove-binding small molecule...
Pyrrole−imidazole (Py-Im) hairpin polyamides are a class of small molecule DNA minor groove binding ...
Pyrrole–imidazole (Py–Im) hairpin polyamides are a class of programmable, sequence-specific DNA bind...
Pyrrole–imidazole (Py–Im) hairpin polyamides are a class of programmable, sequence-specific DNA bind...
Pyrrole–imidazole (Py–Im) hairpin polyamides are a class of programmable, sequence-specific DNA bind...
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...
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 ...
Many human diseases are caused by dysregulated gene expression. The oversupply or overactivity of on...
Pyrrole-imidazole polyamides are a class of small molecules that can be programmed to bind a broad r...
This thesis focuses on biological activity of pyrrole-imidazole polyamides in vivo. The work present...
Pyrrole−imidazole polyamides are DNA-binding molecules that are programmable for a large repertoire ...
Gene regulation by DNA binding small molecules could have important therapeutic applications. This s...
Many human diseases are caused by dysregulated gene expression. The oversupply of transcription fact...
Pyrrole-imidazole (Py–Im) polyamides are synthetic non-genotoxic minor groove-binding small molecule...
Pyrrole−imidazole (Py-Im) hairpin polyamides are a class of small molecule DNA minor groove binding ...
Pyrrole–imidazole (Py–Im) hairpin polyamides are a class of programmable, sequence-specific DNA bind...
Pyrrole–imidazole (Py–Im) hairpin polyamides are a class of programmable, sequence-specific DNA bind...
Pyrrole–imidazole (Py–Im) hairpin polyamides are a class of programmable, sequence-specific DNA bind...
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...
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 ...
Many human diseases are caused by dysregulated gene expression. The oversupply or overactivity of on...
Pyrrole-imidazole polyamides are a class of small molecules that can be programmed to bind a broad r...
This thesis focuses on biological activity of pyrrole-imidazole polyamides in vivo. The work present...
Pyrrole−imidazole polyamides are DNA-binding molecules that are programmable for a large repertoire ...
Gene regulation by DNA binding small molecules could have important therapeutic applications. This s...
Many human diseases are caused by dysregulated gene expression. The oversupply of transcription fact...
Pyrrole-imidazole (Py–Im) polyamides are synthetic non-genotoxic minor groove-binding small molecule...