Recent work has shown that the choice of the type and concentration of detergent used for the solubilization of membrane proteins can strongly influence the results of functional experiments. In particular, the amino acid transporter LeuT can bind two substrate molecules in low concentrations of <i>n</i>-dodecyl β-d-maltopyranoside (DDM), whereas high concentrations reduce the molar binding stoichiometry to 1:1. Subsequent molecular dynamics (MD) simulations of LeuT in DDM proteomicelles revealed that DDM can penetrate to the extracellular vestibule and make stable contacts in the functionally important secondary substrate binding site (S2), suggesting a potential competitive mechanism for the reduction in binding stoichiometry. Because ann...
AbstractThe present study explores intermediate stages in detergent solubilization of liposomes and ...
Biological membranes form barriers that are essential for cellular integrity and compartmentalisatio...
Characterizing the structure of membrane proteins (MPs) generally requires extraction from their nat...
Structural and functional properties of integral membrane proteins are often studied in detergent mi...
Membrane proteins engage in a variety of contacts with theirsurrounding lipids, but distinguishing b...
Molecular dynamics simulations have been used to characterize the effects of transfer from aqueous s...
A large fraction of membrane proteins assemble into long-lived, non-covalent complexes, in a process...
AbstractMolecular dynamics simulations have been used to characterize the effects of transfer from a...
The bacterial leucine transporter (LeuT), a close homologue of the eukaryote monoamine transporters ...
Many membrane proteins bind specifically to lipids as an integral component of their structures. The...
AbstractTranslocation through the extracellular vestibule and binding of leucine in the leucine tran...
AbstractDetergents are indispensable in the isolation of integral membrane proteins from biological ...
ABSTRACT Translocation through the extracellular vestibule and binding of leucine in the leucine tra...
Human neurotransmitter transporters are found in the nervous system terminating synaptic signals by ...
AbstractHigh-resolution structural analysis of membrane proteins by X-ray crystallography or solutio...
AbstractThe present study explores intermediate stages in detergent solubilization of liposomes and ...
Biological membranes form barriers that are essential for cellular integrity and compartmentalisatio...
Characterizing the structure of membrane proteins (MPs) generally requires extraction from their nat...
Structural and functional properties of integral membrane proteins are often studied in detergent mi...
Membrane proteins engage in a variety of contacts with theirsurrounding lipids, but distinguishing b...
Molecular dynamics simulations have been used to characterize the effects of transfer from aqueous s...
A large fraction of membrane proteins assemble into long-lived, non-covalent complexes, in a process...
AbstractMolecular dynamics simulations have been used to characterize the effects of transfer from a...
The bacterial leucine transporter (LeuT), a close homologue of the eukaryote monoamine transporters ...
Many membrane proteins bind specifically to lipids as an integral component of their structures. The...
AbstractTranslocation through the extracellular vestibule and binding of leucine in the leucine tran...
AbstractDetergents are indispensable in the isolation of integral membrane proteins from biological ...
ABSTRACT Translocation through the extracellular vestibule and binding of leucine in the leucine tra...
Human neurotransmitter transporters are found in the nervous system terminating synaptic signals by ...
AbstractHigh-resolution structural analysis of membrane proteins by X-ray crystallography or solutio...
AbstractThe present study explores intermediate stages in detergent solubilization of liposomes and ...
Biological membranes form barriers that are essential for cellular integrity and compartmentalisatio...
Characterizing the structure of membrane proteins (MPs) generally requires extraction from their nat...