Using steady-state spectroscopic and zeta potential methods, we have unraveled the interaction of the purple membrane (PM) and bacteriorhodopsin (bR) with various surfactants below their critical micelle concentrations. We found that the charged hydrophilic heads of ionic surfactants play a role in perturbing the structure and conformation of PM and bR and that ionic surfactants of opposite charges cause opposing effects. Specifically, the addition of a low concentration (0.2 mM) of the cationic surfactant cetyl trimethylammonium bromide (CTAB) is capable of neutralizing the negatively charged lipids on the PM surface via electrostatic forces. This results in increased hydrophobicity of PM that leads to the aggregation of PM. In contrast, d...
AbstractWe propose classifying surfactants with respect to their effect on membrane order, which is ...
Surfactin, a bacterial amphiphilic lipopeptide is attracting more and more attention in view of its ...
The aggregation/deaggregation of chlorin p(6) with the surfactants CTAB, SDS, and TX 100 have been s...
Manipulation of membrane proteins outside native cell embranes is challenging as these proteins are ...
Understanding how surfactants bind to membrane proteins and affect their stability is essential for ...
The process of solubilization/isothermal bleaching of bacteriorhodopsin (bR) in a series of alkylamm...
Several observations have already suggested that the carboxyl groups are involved in the association...
The binding of alkyl polyglucoside surfactants to the integral membrane protein bacteriorhodopsin (B...
The rate of solubilization and isothermal bleaching of bacteriorhodopsin (bR) in a series of nine al...
Analysis of the far-ultraviolet solution and the oriented-film circular dichroic (CD) spectra of the...
Membrane proteins are amphiphilic proteins that are associated with biological membranes. They regul...
AbstractThe binding of alkyl polyglucoside surfactants to the integral membrane protein bacteriorhod...
Purple membrane (PM), which is a membrane patch formed by the self-assembly of the membrane protein ...
AbstractThe purple membrane is a two-dimensional crystalline lattice formed by bacteriorhodopsin and...
We have developed a surface model of purple membrane and applied it in an analysis of the purple-to-...
AbstractWe propose classifying surfactants with respect to their effect on membrane order, which is ...
Surfactin, a bacterial amphiphilic lipopeptide is attracting more and more attention in view of its ...
The aggregation/deaggregation of chlorin p(6) with the surfactants CTAB, SDS, and TX 100 have been s...
Manipulation of membrane proteins outside native cell embranes is challenging as these proteins are ...
Understanding how surfactants bind to membrane proteins and affect their stability is essential for ...
The process of solubilization/isothermal bleaching of bacteriorhodopsin (bR) in a series of alkylamm...
Several observations have already suggested that the carboxyl groups are involved in the association...
The binding of alkyl polyglucoside surfactants to the integral membrane protein bacteriorhodopsin (B...
The rate of solubilization and isothermal bleaching of bacteriorhodopsin (bR) in a series of nine al...
Analysis of the far-ultraviolet solution and the oriented-film circular dichroic (CD) spectra of the...
Membrane proteins are amphiphilic proteins that are associated with biological membranes. They regul...
AbstractThe binding of alkyl polyglucoside surfactants to the integral membrane protein bacteriorhod...
Purple membrane (PM), which is a membrane patch formed by the self-assembly of the membrane protein ...
AbstractThe purple membrane is a two-dimensional crystalline lattice formed by bacteriorhodopsin and...
We have developed a surface model of purple membrane and applied it in an analysis of the purple-to-...
AbstractWe propose classifying surfactants with respect to their effect on membrane order, which is ...
Surfactin, a bacterial amphiphilic lipopeptide is attracting more and more attention in view of its ...
The aggregation/deaggregation of chlorin p(6) with the surfactants CTAB, SDS, and TX 100 have been s...