AbstractA number of channel-forming peptides derived from the second transmembrane (TM) segment (M2) of the glycine receptor α1 subunit (M2GlyR), including the 22-residue sequence NK4-M2GlyR p22 wild type (WT) (KKKKPARVGLGITTVLTMTTQS), induce anion permeation across epithelial cell monolayers. In vitro assays suggest that this peptide or related sequences might function as a candidate for ion channel replacement therapy in treating channelopathies such as cystic fibrosis (CF). The wild-type sequence forms soluble associations in water that diminish its efficacy. Introduction of a single substitution S22W at the C-terminus, NK4-M2GlyR p22 S22W, eliminates the formation of higher molecular weight associations in solution. The S22W peptide als...
AbstractThe pentameric glycine receptor (GlyR), a member of the nicotinicoid superfamily of ligand-g...
Ion channel-forming peptides enable us to study the conformational dynamics of a transmembrane helix...
AbstractThe structures of functional peptides corresponding to the predicted channel-lining M2 segme...
AbstractA number of channel-forming peptides derived from the second transmembrane (TM) segment (M2)...
Doctor of PhilosophyDepartment of BiochemistryJohn M. TomichChannel replacement therapy represents a...
AbstractWe recently reported that the peptide C-K4-M2GlyR mimics the action of chloride channels whe...
AbstractSignificant progresses have been made in the design, synthesis, modeling and in vitro testin...
Significant progresses have been made in the design, synthesis, modeling and in vitro testing of cha...
The design, synthesis, modeling and in vitro testing of channel-forming peptides derived from the cy...
Doctor of PhilosophyBiochemistry and Molecular BiophysicsOm PrakashJohn M. TomichAs part of the ongo...
AbstractThe design, synthesis, modeling and in vitro testing of channel-forming peptides derived fro...
AbstractCK4-M2GlyR, an aqueous soluble peptide derived from the transmembrane M2 segment of the glyc...
AbstractIon channel-forming peptides enable us to study the conformational dynamics of a transmembra...
As part of the ongoing development of a channel forming peptide with the potential to be used clinic...
Citation: Bukovnik, U., Sala-Rabanal, M., Francis, S., Frazier, S. J., Schultz, B. D., Nichols, C. G...
AbstractThe pentameric glycine receptor (GlyR), a member of the nicotinicoid superfamily of ligand-g...
Ion channel-forming peptides enable us to study the conformational dynamics of a transmembrane helix...
AbstractThe structures of functional peptides corresponding to the predicted channel-lining M2 segme...
AbstractA number of channel-forming peptides derived from the second transmembrane (TM) segment (M2)...
Doctor of PhilosophyDepartment of BiochemistryJohn M. TomichChannel replacement therapy represents a...
AbstractWe recently reported that the peptide C-K4-M2GlyR mimics the action of chloride channels whe...
AbstractSignificant progresses have been made in the design, synthesis, modeling and in vitro testin...
Significant progresses have been made in the design, synthesis, modeling and in vitro testing of cha...
The design, synthesis, modeling and in vitro testing of channel-forming peptides derived from the cy...
Doctor of PhilosophyBiochemistry and Molecular BiophysicsOm PrakashJohn M. TomichAs part of the ongo...
AbstractThe design, synthesis, modeling and in vitro testing of channel-forming peptides derived fro...
AbstractCK4-M2GlyR, an aqueous soluble peptide derived from the transmembrane M2 segment of the glyc...
AbstractIon channel-forming peptides enable us to study the conformational dynamics of a transmembra...
As part of the ongoing development of a channel forming peptide with the potential to be used clinic...
Citation: Bukovnik, U., Sala-Rabanal, M., Francis, S., Frazier, S. J., Schultz, B. D., Nichols, C. G...
AbstractThe pentameric glycine receptor (GlyR), a member of the nicotinicoid superfamily of ligand-g...
Ion channel-forming peptides enable us to study the conformational dynamics of a transmembrane helix...
AbstractThe structures of functional peptides corresponding to the predicted channel-lining M2 segme...