There are two models of topology for the membrane domains of the erythrocyte/brain facilitative glucose transporter, GLUT1. The first is composed of 12 membrane-spanning a-helices, the second of 16 membrane-spanning b-strands. We have used Jähnig’s and Eisenberg’s methods to identify possible transmembrane segments (10 spanning a-helices and 4 b-strands). The topology proposed is more consistent with available experimental data from FTIR, CD and mapping experiment than the previous models . We suggest that GLUT1 might form two channels, one of which is responsible for glucose transport. This agrees with the theoretical and experimental arguments. Finally, an analysis of the mutation periodicity and of the mean hydrophobicity for the GLUT f...
GLUT4 is a predominant insulin regulated glucose transporter expressed in major glucose disposal tis...
BACKGROUND: GLUT4 is a predominant insulin regulated glucose transporter expressed in major glucose ...
Every student of biochemistry quickly appreciates the central role of glycolysis in cellular metabol...
A family of structurally related intrinsic membrane proteins (facilitative glucose transporters) cat...
Homology modeling and scanning cysteine mutagenesis studies suggest that the human glucose transport...
Hydrodynamic analysis and electron microscopy of GLUT1/lipid/detergent micelles and freeze fracture ...
AbstractThe glucose transporters (GLUT/SLC2A) are members of the major facilitator superfamily. Here...
Molecular dynamics simulations amounting to ≈8 μs demonstrate that the glucose transporter GLUT1 und...
The glucose transporter 1 (GLUT1) belongs to the major facilitator superfamily (MFS) and is responsi...
Glucose transporters (GLUT) are twelve-transmembrane spanning proteins that contain two pores capabl...
GLUT1-mediated, facilitated sugar transport is proposed to be an example of transport by a carrier t...
Glucose is a monosaccharide and fuel for body, it cannot pass through membrane by simple diffusion s...
The relationship between human erythrocyte glucose transporter (GLUT1) oligomeric structure and func...
Glucose transporters (GLUTs) provide a pathway for glucose transport across membranes. Human GLUTs a...
The structure-function relationship explains how the human erythrocyte glucose transport protein (GL...
GLUT4 is a predominant insulin regulated glucose transporter expressed in major glucose disposal tis...
BACKGROUND: GLUT4 is a predominant insulin regulated glucose transporter expressed in major glucose ...
Every student of biochemistry quickly appreciates the central role of glycolysis in cellular metabol...
A family of structurally related intrinsic membrane proteins (facilitative glucose transporters) cat...
Homology modeling and scanning cysteine mutagenesis studies suggest that the human glucose transport...
Hydrodynamic analysis and electron microscopy of GLUT1/lipid/detergent micelles and freeze fracture ...
AbstractThe glucose transporters (GLUT/SLC2A) are members of the major facilitator superfamily. Here...
Molecular dynamics simulations amounting to ≈8 μs demonstrate that the glucose transporter GLUT1 und...
The glucose transporter 1 (GLUT1) belongs to the major facilitator superfamily (MFS) and is responsi...
Glucose transporters (GLUT) are twelve-transmembrane spanning proteins that contain two pores capabl...
GLUT1-mediated, facilitated sugar transport is proposed to be an example of transport by a carrier t...
Glucose is a monosaccharide and fuel for body, it cannot pass through membrane by simple diffusion s...
The relationship between human erythrocyte glucose transporter (GLUT1) oligomeric structure and func...
Glucose transporters (GLUTs) provide a pathway for glucose transport across membranes. Human GLUTs a...
The structure-function relationship explains how the human erythrocyte glucose transport protein (GL...
GLUT4 is a predominant insulin regulated glucose transporter expressed in major glucose disposal tis...
BACKGROUND: GLUT4 is a predominant insulin regulated glucose transporter expressed in major glucose ...
Every student of biochemistry quickly appreciates the central role of glycolysis in cellular metabol...