Solving how insulin regulates glucose transport into skeletal muscle and adipose tissue remains a fundamental challenge in biology and a significant issue in medicine. A central feature of this process is the coordinated accumulation of the glucose transporter GLUT4 into the plasma membrane. New signaling and cytoskeletal mechanisms of insulin-stimulated GLUT4 exocytosis are of emerging interest, particularly those at or just beneath the plasma membrane. This review examines signals that functionally engage GLUT4 exocytosis, considers cytoskeletal regulation of the stimulated GLUT4 itinerary, and appraises the involvement of plasma membrane parameters in GLUT4 control. We also explore how these newly-defined signaling, cytoskeletal and memb...
Regulation of blood glucose homeostasis is a critical process; defects in this process can lead to i...
Insulin stimulates glucose transport in muscle and fat cells by causing the redistribution of a faci...
In recent years, there have been major advances in the understanding of both the cell biology of ves...
Following the discovery of insulin 85 yr ago and the realization thereafter that in some individuals...
The dissection of mechanisms that regulate glucose transport by insulin has revealed an intricate ne...
The facilitative glucose transporter GLUT4, a recycling membrane protein, is required for dietary gl...
Glucose transporter GLUT4 allows glucose uptake into muscle and adipose cells. Insulin promotes recr...
GLUT4 is a mammalian facilitative glucose transporter that is highly expressed in adipose tissue and...
grantor: University of TorontoInsulin stimulates glucose transport in skeletal muscle and ...
Skeletal muscle and adipose tissue serve as the major storage sites for glucose, and insulin is the ...
International audienceIn muscle and fat cells, insulin stimulates the delivery of the glucose transp...
GLUT4 is the principal insulin-responsive glucose transporter in skeletal muscle. Insulin stimulatio...
International audienceInsulin resistance is strongly linked to type 2 diabetes and associated with a...
International audienceThe insulin-responsive glucose transporter GLUT4 plays an essential role in gl...
The insulin-responsive glucose transporter GLUT4 plays an essential role in glucose homeostasis. A n...
Regulation of blood glucose homeostasis is a critical process; defects in this process can lead to i...
Insulin stimulates glucose transport in muscle and fat cells by causing the redistribution of a faci...
In recent years, there have been major advances in the understanding of both the cell biology of ves...
Following the discovery of insulin 85 yr ago and the realization thereafter that in some individuals...
The dissection of mechanisms that regulate glucose transport by insulin has revealed an intricate ne...
The facilitative glucose transporter GLUT4, a recycling membrane protein, is required for dietary gl...
Glucose transporter GLUT4 allows glucose uptake into muscle and adipose cells. Insulin promotes recr...
GLUT4 is a mammalian facilitative glucose transporter that is highly expressed in adipose tissue and...
grantor: University of TorontoInsulin stimulates glucose transport in skeletal muscle and ...
Skeletal muscle and adipose tissue serve as the major storage sites for glucose, and insulin is the ...
International audienceIn muscle and fat cells, insulin stimulates the delivery of the glucose transp...
GLUT4 is the principal insulin-responsive glucose transporter in skeletal muscle. Insulin stimulatio...
International audienceInsulin resistance is strongly linked to type 2 diabetes and associated with a...
International audienceThe insulin-responsive glucose transporter GLUT4 plays an essential role in gl...
The insulin-responsive glucose transporter GLUT4 plays an essential role in glucose homeostasis. A n...
Regulation of blood glucose homeostasis is a critical process; defects in this process can lead to i...
Insulin stimulates glucose transport in muscle and fat cells by causing the redistribution of a faci...
In recent years, there have been major advances in the understanding of both the cell biology of ves...