Insulin-stimulated translocation of GLUT4 glucose transporters requires SNARE-complex proteins

B Cheatham, A Volchuk, CR Kahn… - Proceedings of the …, 1996 - National Acad Sciences
B Cheatham, A Volchuk, CR Kahn, L Wang, CJ Rhodes, A Klip
Proceedings of the National Academy of Sciences, 1996National Acad Sciences
A major physiological role of insulin is the regulation of glucose uptake into skeletal and
cardiac muscle and adipose tissue, mediated by an insulin-stimulated translocation of
GLUT4 glucose transporters from an intracellular vesicular pool to the plasma membrane.
This process is similar to the regulated docking and fusion of vesicles in neuroendocrine
cells, a process that involves SNARE-complex proteins. Recently, several SNARE proteins
were found in adipocytes: vesicle-associated membrane protein (VAMP-2), its related …
A major physiological role of insulin is the regulation of glucose uptake into skeletal and cardiac muscle and adipose tissue, mediated by an insulin-stimulated translocation of GLUT4 glucose transporters from an intracellular vesicular pool to the plasma membrane. This process is similar to the regulated docking and fusion of vesicles in neuroendocrine cells, a process that involves SNARE-complex proteins. Recently, several SNARE proteins were found in adipocytes: vesicle-associated membrane protein (VAMP-2), its related homologue cellubrevin, and syntaxin-4. In this report we show that treatment of permeabilized 3T3-L1 adipocytes with botulinum neurotoxin D, which selectively cleaves VAMP-2 and cellubrevin, inhibited the ability of insulin to stimulate translocation of GLUT4 vesicles to the plasma membrane. Furthermore, treatment of the permeabilized adipocytes with glutathione S-transferase fusion proteins encoding soluble forms of VAMP-2 or syntaxin-4 also effectively blocked insulin-regulated GLUT4 translocation. These results provide evidence of a functional role for SNARE-complex proteins in insulin-stimulated glucose uptake and suggest that adipocytes utilize a mechanism of regulating vesicle docking and fusion analogous to that found in neuroendocrine tissues.
National Acad Sciences