<div><p>In adipocytes, vesicles containing glucose transporter-4 (GLUT4) redistribute from intracellular stores to the cell periphery in response to insulin stimulation. Vesicles then fuse with the plasma membrane, facilitating glucose transport into the cell. To gain insight into the details of microtubule involvement, we examined the spatial organization and dynamics of microtubules in relation to GLUT4 vesicle trafficking in living 3T3-L1 adipocytes using total internal reflection fluorescence (TIRF) microscopy. Insulin stimulated an increase in microtubule density and curvature within the TIRF-illuminated region of the cell. The high degree of curvature and abrupt displacements of microtubules indicate that substantial forces act on mic...
The regulated translocation of the glucose transporter, GLUT4, to the surface of adipocytes and musc...
Docking and fusion of Glut4 vesicles with the plasma membrane are essential but poorly understood st...
Total internal reflection fluorescence (TIRF) microscopy reveals highly mobile structures containing...
In adipocytes, vesicles containing glucose transporter-4 (GLUT4) redistribute from intracellular sto...
A novel imaging technology, high-speed microscopy, has been used to visualize the process of GLUT4 t...
SummaryWhile the glucose transporter-4 (GLUT4) is fundamental to insulin-regulated glucose metabolis...
Total internal reflection fluorescence (TIRF) microscopy reveals highly mobile structures containing...
The myosin myo1c dynamically localizes to cellular membranes through high affinity phosphoinositide ...
The myosin myo1c dynamically localizes to cellular membranes through high affinity phosphoinositide ...
The myosin myo1c dynamically localizes to cellular membranes through high affinity phosphoinositide ...
Microtubules (MT) play a role in the intracellular response to insulin stimulation and subsequent gl...
Insulin regulates glucose uptake in adipocytes and muscle by stimulating the movement of sequestered...
The GLUT4 glucose transporter resides mostly in perinuclear membranes in unstimulated 3T3-L1 adipocy...
The regulated translocation of the glucose transporter, GLUT4, to the surface of adipocytes and musc...
The regulated translocation of the glucose transporter, GLUT4, to the surface of adipocytes and musc...
The regulated translocation of the glucose transporter, GLUT4, to the surface of adipocytes and musc...
Docking and fusion of Glut4 vesicles with the plasma membrane are essential but poorly understood st...
Total internal reflection fluorescence (TIRF) microscopy reveals highly mobile structures containing...
In adipocytes, vesicles containing glucose transporter-4 (GLUT4) redistribute from intracellular sto...
A novel imaging technology, high-speed microscopy, has been used to visualize the process of GLUT4 t...
SummaryWhile the glucose transporter-4 (GLUT4) is fundamental to insulin-regulated glucose metabolis...
Total internal reflection fluorescence (TIRF) microscopy reveals highly mobile structures containing...
The myosin myo1c dynamically localizes to cellular membranes through high affinity phosphoinositide ...
The myosin myo1c dynamically localizes to cellular membranes through high affinity phosphoinositide ...
The myosin myo1c dynamically localizes to cellular membranes through high affinity phosphoinositide ...
Microtubules (MT) play a role in the intracellular response to insulin stimulation and subsequent gl...
Insulin regulates glucose uptake in adipocytes and muscle by stimulating the movement of sequestered...
The GLUT4 glucose transporter resides mostly in perinuclear membranes in unstimulated 3T3-L1 adipocy...
The regulated translocation of the glucose transporter, GLUT4, to the surface of adipocytes and musc...
The regulated translocation of the glucose transporter, GLUT4, to the surface of adipocytes and musc...
The regulated translocation of the glucose transporter, GLUT4, to the surface of adipocytes and musc...
Docking and fusion of Glut4 vesicles with the plasma membrane are essential but poorly understood st...
Total internal reflection fluorescence (TIRF) microscopy reveals highly mobile structures containing...