AbstractThe structure of a glycerol channel from Escherichia coli at 2.2 Å resolution serves as a basis for the understanding of selective transmembrane substrate permeation. In the course of permeation, glycerol molecules diffuse through a tripathic channel with their alkyl backbone wedged against a hydrophobic corner, such that OH groups become acceptors and donors of hydrogen bonds at the same time. The structure of the channel explains the preferential permeability for linear carbohydrates and absolute exclusion of ions and charged solutes. Its gene-duplicated sequence has a structural counterpart in a pseudo two-fold symmetry within the monomeric channel protein
AbstractWater permeation and electrostatic interactions between water and channel are investigated i...
Aquaporins are transmembrane channel proteins with key function being transportation of water or oth...
Aquaporins are transmembrane channel proteins with key function being transportation of water or oth...
The aqua (glycero) porins conduct water (and glycerol) across cell membranes. The structure of these...
The three-dimensional structure of GlpF, the glycerol facilitator of Escherichia coli, was determine...
Aquaporins are transmembrane channels that facilitate the permeation of water and small, uncharged a...
SummaryThe recent availability of high-resolution structures of two structurally highly homologous, ...
The three-dimensional structure of GlpF, the glycerol facilitator of Escherichia coli, was determine...
AbstractBackground: The E. coli glycerol facilitator, GlpF, selectively conducts glycerol and water,...
Aquaporins comprise a family of water-transporting membrane proteins. All aquaporins are efficient w...
Aquaporins are a family of water and small molecule channels found in organisms ranging from bacteri...
Membrane proteins are a major class of the drug targets. Rational design of drugs requires knowledge...
Aquaporins are a family of water and small molecule channels found in organisms ranging from bacteri...
AbstractAmong aquaglyceroporins that transport both water and glycerol across the cell membrane, Esc...
Membrane proteins are a major class of the drug targets. Rational design of drugs requires knowledge...
AbstractWater permeation and electrostatic interactions between water and channel are investigated i...
Aquaporins are transmembrane channel proteins with key function being transportation of water or oth...
Aquaporins are transmembrane channel proteins with key function being transportation of water or oth...
The aqua (glycero) porins conduct water (and glycerol) across cell membranes. The structure of these...
The three-dimensional structure of GlpF, the glycerol facilitator of Escherichia coli, was determine...
Aquaporins are transmembrane channels that facilitate the permeation of water and small, uncharged a...
SummaryThe recent availability of high-resolution structures of two structurally highly homologous, ...
The three-dimensional structure of GlpF, the glycerol facilitator of Escherichia coli, was determine...
AbstractBackground: The E. coli glycerol facilitator, GlpF, selectively conducts glycerol and water,...
Aquaporins comprise a family of water-transporting membrane proteins. All aquaporins are efficient w...
Aquaporins are a family of water and small molecule channels found in organisms ranging from bacteri...
Membrane proteins are a major class of the drug targets. Rational design of drugs requires knowledge...
Aquaporins are a family of water and small molecule channels found in organisms ranging from bacteri...
AbstractAmong aquaglyceroporins that transport both water and glycerol across the cell membrane, Esc...
Membrane proteins are a major class of the drug targets. Rational design of drugs requires knowledge...
AbstractWater permeation and electrostatic interactions between water and channel are investigated i...
Aquaporins are transmembrane channel proteins with key function being transportation of water or oth...
Aquaporins are transmembrane channel proteins with key function being transportation of water or oth...