ABSTRACT We have monitored the membrane-bound channel and nonchannel conformations of gramicidin utilizing red-edge excitation shift (REES), and related fluorescence parameters. In particular, we have used fluorescence lifetime, polarization, quenching, chemical modification, and membrane penetration depth analysis in addition to REES measurements to distinguish these two conformations. Our results show that REES of gramicidin tryptophans can be effectively used to distinguish conformations of membrane-bound gramicidin. The interfacially localized tryptophans in the channel conformation display REES of 7 nm whereas the tryptophans in the nonchannel conformation exhibit REES of 2 nm which highlights the difference in their average environmen...
The linear peptide gramicidin forms prototypical ion channels specific for monovalent cations and ha...
Structural transition can be induced in charged micelles by increasing the ionic strength of the med...
Gramicidins are linear peptides that form ion channels that are specific for monovalent cations in m...
We have monitored the membrane-bound channel and nonchannel conformations of gramicidin utilizing re...
AbstractWe have monitored the membrane-bound channel and nonchannel conformations of gramicidin util...
AbstractThe matching of hydrophobic lengths of integral membrane proteins and the surrounding lipid ...
The tryptophans in the gramicidin channel play a crucial role in the organization and function of th...
ABSTRACT The linear peptide gramicidin forms prototypical ion channels specific for monovalent catio...
ABSTRACT: The linear ion channel peptide gramicidin serves as an excellent prototype for monitoring ...
AbstractThe linear peptide gramicidin forms prototypical ion channels specific for monovalent cation...
AbstractThe linear ion channel peptide gramicidin represents an excellent model for exploring the pr...
AbstractStructural transition can be induced in charged micelles by increasing the ionic strength of...
ABSTRACT Structural transition can be induced in charged micelles by increasing the ionic strength o...
AbstractWater plays an important role in determining the folding, structure, dynamics, and, in turn,...
ABSTRACT Water plays an important role in determining the folding, structure, dynamics, and, in turn...
The linear peptide gramicidin forms prototypical ion channels specific for monovalent cations and ha...
Structural transition can be induced in charged micelles by increasing the ionic strength of the med...
Gramicidins are linear peptides that form ion channels that are specific for monovalent cations in m...
We have monitored the membrane-bound channel and nonchannel conformations of gramicidin utilizing re...
AbstractWe have monitored the membrane-bound channel and nonchannel conformations of gramicidin util...
AbstractThe matching of hydrophobic lengths of integral membrane proteins and the surrounding lipid ...
The tryptophans in the gramicidin channel play a crucial role in the organization and function of th...
ABSTRACT The linear peptide gramicidin forms prototypical ion channels specific for monovalent catio...
ABSTRACT: The linear ion channel peptide gramicidin serves as an excellent prototype for monitoring ...
AbstractThe linear peptide gramicidin forms prototypical ion channels specific for monovalent cation...
AbstractThe linear ion channel peptide gramicidin represents an excellent model for exploring the pr...
AbstractStructural transition can be induced in charged micelles by increasing the ionic strength of...
ABSTRACT Structural transition can be induced in charged micelles by increasing the ionic strength o...
AbstractWater plays an important role in determining the folding, structure, dynamics, and, in turn,...
ABSTRACT Water plays an important role in determining the folding, structure, dynamics, and, in turn...
The linear peptide gramicidin forms prototypical ion channels specific for monovalent cations and ha...
Structural transition can be induced in charged micelles by increasing the ionic strength of the med...
Gramicidins are linear peptides that form ion channels that are specific for monovalent cations in m...