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June 1, 1999Molecular and Cellular Biology594 citationsOpen Access

Protein Kinase B/Akt Participates in GLUT4 Translocation by Insulin in L6 Myoblasts

QWQinghua WangRSRomel SomwarPBPhilip J. Bilan

Key Points

  • To investigate how protein kinase B alpha (PKBalpha)/Akt1 mediates insulin-induced GLUT4 translocation to the cell surface in L6 myoblasts.
  • L6 myoblasts were stably transfected with GLUT4myc for detection of surface GLUT4.
  • Dominant-negative constructs of PKBalpha/Akt1 were used to assess their effects on GLUT4 translocation.
  • Immunofluorescent labeling was employed to visualize GLUT4myc on the plasma membrane.
  • Insulin caused a rapid translocation of GLUT4 to the plasma membrane within 20 minutes.
  • AAA-PKB significantly inhibited insulin-induced GLUT4 translocation and phosphorylation of BAD.
  • Overexpression of constitutively active PKBalpha enhanced GLUT4myc surface density compared to nontransfected cells.

Abstract

L6 myoblasts stably transfected with a GLUT4 cDNA harboring an exofacial myc epitope tag (L6-GLUT4myc myoblasts) were used to study the role of protein kinase B alpha (PKBalpha)/Akt1 in the insulin-induced translocation of GLUT4 to the cell surface. Surface GLUT4myc was detected by immunofluorescent labeling of the myc epitope in nonpermeabilized cells. Insulin induced a marked translocation of GLUT4myc to the plasma membrane within 20 min. This was prevented by transient transfection of a dominant inhibitory construct of phosphatidylinositol (PI) 3-kinase (Deltap85alpha). Transiently transfected cells were identified by cotransfection of green fluorescent protein. A constitutively active PKBalpha, created by fusion of a viral Gag protein at its N terminus (GagPKB), increased the cell surface density of GLUT4myc compared to that of neighboring nontransfected cells. A kinase-inactive, phosphorylation-deficient PKBalpha/Akt1 construct with the mutations K179A (substitution of alanine for the lysine at position 179), T308A, and S473A (AAA-PKB) behaved as a dominant-negative inhibitor of insulin-dependent activation of cotransfected wild-type hemagglutinin (HA)-tagged PKB. Furthermore, AAA-PKB markedly inhibited the insulin-induced phosphorylation of cotransfected BAD, demonstrating inhibition of the endogenous PKB/Akt. Under the same conditions, AAA-PKB almost entirely blocked the insulin-dependent increase in surface GLUT4myc. PKBalpha with alanine substitutions T308A and S473A (AA-PKB) or K179A (A-PKB) alone was a less potent inhibitor of insulin-dependent activation of wild-type HA-PKB or GLUT4myc translocation than was AAA-PKB. Cotransfection of AAA-PKB with a fourfold DNA excess of HA-PKB rescued insulin-stimulated GLUT4myc translocation. AAA-PKB did not prevent actin bundling (membrane ruffling), though this response was PI 3-kinase dependent. Therefore, it is unlikely that AAA-PKB acted by inhibiting PI 3-kinase signaling. These results outline an important role for PKBalpha/Akt1 in the stimulation of glucose transport by insulin in muscle cells in culture.

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Cite This Study

Wang et al. (1999) studied this question.

synapsesocial.com/papers/6a1bb26f666b677c61a8e397https://doi.org/10.1128/mcb.19.6.4008
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