Myo1c binding to submembrane actin mediates insulin-induced tethering of GLUT4 vesicles
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Boguslavsky, Shlomit
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Myo1c binding to submembrane actin mediates insulin-induced tethering of GLUT4 vesicles
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GLUT4-containing vesicles cycle between the plasma membrane and intracellular compartments. Insulin promotes GLUT4 exocytosis by regulating GLUT4 vesicle arrival at the cell periphery and its subsequent tethering, docking, and fusion with the plasma membrane. The molecular machinery involved in GLUT4 vesicle tethering is unknown. We show here that Myo1c, an actin-based motor protein that associates with membranes and actin filaments, is required for insulin-induced vesicle tethering in muscle cells. Myo1c was found to associate with both mobile and tethered GLUT4 vesicles and to be required for vesicle capture in the total internal reflection fluorescence (TIRF) zone beneath the plasma membrane. Myo1c knockdown or overexpression of an actin binding-deficient Myo1c mutant abolished insulin-induced vesicle immobilization, increased GLUT4 vesicle velocity in the TIRF zone, and prevented their externalization. Conversely, Myo1c overexpression immobilized GLUT4 vesicles in the TIRF zone and
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URI: https://repositorio.uchile.cl/handle/2250/155045
DOI: 10.1091/mbc.E12-04-0263
ISSN: 10591524
19394586
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Molecular Biology of the Cell, Volumen 23, Issue 20, 2018, Pages 4065-4078
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