Drugs do not act solely by canonical ligand–receptor binding interactions. Amphiphilic drugs partition into membranes, thereby perturbing bulk lipid bilayer properties and possibly altering the function of membrane proteins. Distinguishing membrane perturbation from more direct protein–ligand interactions is an ongoing challenge in chemical biology. Herein, we present one strategy for doing so, using dimeric 6-bromo-2-mercaptotryptamine (BrMT) and synthetic analogues. BrMT is a chemically unstable marine snail toxin that has unique effects on voltage-gated K+ channel proteins, making it an attractive medicinal chemistry lead. BrMT is amphiphilic and perturbs lipid bilayers, raising the question of whether its action against K+ channels is m...
Botulinum neurotoxins (BoNTs) are a family of bacterial toxins with seven major serotypes (BoNT/A-G)...
Botulinum neurotoxins (BoNTs) are a family of bacterial toxins with seven major serotypes (BoNT/A-G)...
Kv7 channels, especially Kv7.2 (KCNQ2) and Kv7.3 (KCNQ3), are key determinants for membrane excitabi...
Drugs do not act solely by canonical ligand–receptor binding interactions. Amphiphilic drugs partiti...
Drugs do not act solely by canonical ligand-receptor binding interactions. Amphiphilic drugs partiti...
Distinguishing membrane perturbation from more direct protein-ligand interactions is an ongoing chal...
AbstractRecent studies of several ICK ion-channel blockers suggest that lipid bilayer interactions p...
AbstractBackground: Brevetoxins, involved in the ‘red tide’ as well as shellfish poisoning, are know...
My research focused on voltage-dependent K+ (Kv) channels. Kv channels serve many di erent functions...
Two-pore potassium (K2P) channels are responsible for regulating the resting membrane potential of e...
AbstractOur recent molecular dynamics simulation study of hanatoxin 1 (HaTx1), a gating modifier tha...
AbstractThe mechanism of membrane permeabilization by the antimicrobial peptide distinctin was inves...
Using three complementary approaches, this work sought to tackle the widespread problem of antibioti...
AbstractThe lipodepsipeptide syringomycin E (SR-E) interacts with two mercury-supported biomimetic m...
© 2017 American Chemical Society. Cyclotides are cyclic disulfide-rich peptides that are chemically ...
Botulinum neurotoxins (BoNTs) are a family of bacterial toxins with seven major serotypes (BoNT/A-G)...
Botulinum neurotoxins (BoNTs) are a family of bacterial toxins with seven major serotypes (BoNT/A-G)...
Kv7 channels, especially Kv7.2 (KCNQ2) and Kv7.3 (KCNQ3), are key determinants for membrane excitabi...
Drugs do not act solely by canonical ligand–receptor binding interactions. Amphiphilic drugs partiti...
Drugs do not act solely by canonical ligand-receptor binding interactions. Amphiphilic drugs partiti...
Distinguishing membrane perturbation from more direct protein-ligand interactions is an ongoing chal...
AbstractRecent studies of several ICK ion-channel blockers suggest that lipid bilayer interactions p...
AbstractBackground: Brevetoxins, involved in the ‘red tide’ as well as shellfish poisoning, are know...
My research focused on voltage-dependent K+ (Kv) channels. Kv channels serve many di erent functions...
Two-pore potassium (K2P) channels are responsible for regulating the resting membrane potential of e...
AbstractOur recent molecular dynamics simulation study of hanatoxin 1 (HaTx1), a gating modifier tha...
AbstractThe mechanism of membrane permeabilization by the antimicrobial peptide distinctin was inves...
Using three complementary approaches, this work sought to tackle the widespread problem of antibioti...
AbstractThe lipodepsipeptide syringomycin E (SR-E) interacts with two mercury-supported biomimetic m...
© 2017 American Chemical Society. Cyclotides are cyclic disulfide-rich peptides that are chemically ...
Botulinum neurotoxins (BoNTs) are a family of bacterial toxins with seven major serotypes (BoNT/A-G)...
Botulinum neurotoxins (BoNTs) are a family of bacterial toxins with seven major serotypes (BoNT/A-G)...
Kv7 channels, especially Kv7.2 (KCNQ2) and Kv7.3 (KCNQ3), are key determinants for membrane excitabi...