PI3K-C2γ is a Rab5 effector selectively controlling endosomal Akt2 activation downstream of insulin signalling
doi: 10.1038/ncomms8400
pmid: 26100075
pmc: PMC4479417
handle: 2434/286680 , 11381/2959607 , 20.500.11937/32480
doi: 10.1038/ncomms8400
pmid: 26100075
pmc: PMC4479417
handle: 2434/286680 , 11381/2959607 , 20.500.11937/32480
PI3K-C2γ is a Rab5 effector selectively controlling endosomal Akt2 activation downstream of insulin signalling
AbstractIn the liver, insulin-mediated activation of the phosphatidylinositol 3-kinase (PI3K)/Akt pathway is at the core of metabolic control. Multiple PI3K and Akt isoenzymes are found in hepatocytes and whether isoform-selective interplays exist is currently unclear. Here we report that insulin signalling triggers the association of the liver-specific class II PI3K isoform γ (PI3K-C2γ) with Rab5-GTP, and its recruitment to Rab5-positive early endosomes. In these vesicles, PI3K-C2γ produces a phosphatidylinositol-3,4-bisphosphate pool specifically required for delayed and sustained endosomal Akt2 stimulation. Accordingly, loss of PI3K-C2γ does not affect insulin-dependent Akt1 activation as well as S6K and FoxO1-3 phosphorylation, but selectively reduces Akt2 activation, which specifically inhibits glycogen synthase activity. As a consequence, PI3K-C2γ-deficient mice display severely reduced liver accumulation of glycogen and develop hyperlipidemia, adiposity as well as insulin resistance with age or after consumption of a high-fat diet. Our data indicate PI3K-C2γ supports an isoenzyme-specific forking of insulin-mediated signal transduction to an endosomal pool of Akt2, required for glucose homeostasis.
- University of Parma Italy
- French Institute of Health and Medical Research France
- Albert Einstein College of Medicine United States
- Curtin University Australia
- University of Turin Italy
570, Aging, 610, Hyperlipidemias, Endosomes, Diet, High-Fat, Article, Mice, Phosphatidylinositol 3-Kinases, Phosphatidylinositol Phosphates, Animals, Homeostasis, Insulin, Adiposity, Mice, Knockout, Forkhead Transcription Factors, Mice, Inbred C57BL, Glucose, Glycogen Synthase, Liver, Hepatocytes, Insulin Resistance, Glycogen
570, Aging, 610, Hyperlipidemias, Endosomes, Diet, High-Fat, Article, Mice, Phosphatidylinositol 3-Kinases, Phosphatidylinositol Phosphates, Animals, Homeostasis, Insulin, Adiposity, Mice, Knockout, Forkhead Transcription Factors, Mice, Inbred C57BL, Glucose, Glycogen Synthase, Liver, Hepatocytes, Insulin Resistance, Glycogen
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