Signaling of the p21-activated kinase (PAK1) coordinates insulin-stimulated actin remodeling and glucose uptake in skeletal muscle cells

dc.contributor.authorTunduguru, Ragadeepthi
dc.contributor.authorChiu, Tim T.
dc.contributor.authorRamalingam, Latha
dc.contributor.authorElmendorf, Jeffrey S.
dc.contributor.authorKlip, Amira
dc.contributor.authorThurmond, Debbie C.
dc.contributor.departmentDepartment of Biochemistry & Molecular Biology, IU School of Medicineen_US
dc.date.accessioned2016-03-02T18:52:16Z
dc.date.available2016-03-02T18:52:16Z
dc.date.issued2014-11-15
dc.description.abstractSkeletal muscle accounts for ~80% of postprandial glucose clearance, and skeletal muscle glucose clearance is crucial for maintaining insulin sensitivity and euglycemia. Insulin-stimulated glucose clearance/uptake entails recruitment of glucose transporter 4 (GLUT4) to the plasma membrane (PM) in a process that requires cortical F-actin remodeling; this process is dysregulated in Type 2 Diabetes. Recent studies have implicated PAK1 as a required element in GLUT4 recruitment in mouse skeletal muscle in vivo, although its underlying mechanism of action and requirement in glucose uptake remains undetermined. Toward this, we have employed the PAK1 inhibitor, IPA3, in studies using L6-GLUT4-myc muscle cells. IPA3 fully ablated insulin-stimulated GLUT4 translocation to the PM, corroborating the observation of ablated insulin-stimulated GLUT4 accumulation in the PM of skeletal muscle from PAK1−/− knockout mice. IPA3-treatment also abolished insulin-stimulated glucose uptake into skeletal myotubes. Mechanistically, live-cell imaging of myoblasts expressing the F-actin biosensor LifeAct-GFP treated with IPA3 showed blunting of the normal insulin-induced cortical actin remodeling. This blunting was underpinned by a loss of normal insulin-stimulated cofilin dephosphorylation in IPA3-treated myoblasts. These findings expand upon the existing model of actin remodeling in glucose uptake, by placing insulin-stimulated PAK1 signaling as a required upstream step to facilitate actin remodeling and subsequent cofilin dephosphorylation. Active, dephosphorylated cofilin then provides the G-actin substrate for continued F-actin remodeling to facilitate GLUT4 vesicle translocation for glucose uptake into the skeletal muscle cell.en_US
dc.eprint.versionAuthor's manuscripten_US
dc.identifier.citationTunduguru, R., Chiu, T. T., Ramalingam, L., Elmendorf, J. S., Klip, A., & Thurmond, D. C. (2014). Signaling of the p21-activated kinase (PAK1) coordinates insulin-stimulated actin remodeling and glucose uptake in skeletal muscle cells. Biochemical Pharmacology, 92(2), 380–388. http://doi.org/10.1016/j.bcp.2014.08.033en_US
dc.identifier.urihttps://hdl.handle.net/1805/8627
dc.language.isoen_USen_US
dc.publisherElsevier B.V.en_US
dc.relation.isversionof10.1016/j.bcp.2014.08.033en_US
dc.relation.journalBiochemical Pharmacologyen_US
dc.rightsPublisher Policyen_US
dc.sourcePMCen_US
dc.subjectF-actin remodelingen_US
dc.subjectDiabetesen_US
dc.subjectPAK1en_US
dc.subjectL6-GLUT4myc muscle cellsen_US
dc.subjectSkeletal muscleen_US
dc.subjectGLUT4 vesicle exocytosisen_US
dc.subjectSmall Rho family GTPaseen_US
dc.subjectRac1en_US
dc.titleSignaling of the p21-activated kinase (PAK1) coordinates insulin-stimulated actin remodeling and glucose uptake in skeletal muscle cellsen_US
dc.typeArticleen_US
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