Browsing by Author Stoeckli, Jacqueline

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Issue DateTitleAuthor(s)Citation
2015Global Phosphoproteomic Analysis of Human Skeletal Muscle Reveals a Network of Exercise-Regulated Kinases and AMPK SubstratesBurchfield, James; Chaudhuri, Rima; Fazakerley, Daniel; Hoffman, Nolan; Holliday, Mira; James, David; Parker, Benjamin Leo; Stoeckli, Jacqueline; Fisher-Wellman, Kelsey H; Humphrey, Sean; Jensen, Thomas E.; Jothi, Raja; Kiens, Bente; Kleinert, Maximillian; Richter, Erik A; Trefely, Sophie; Wojtaszewski, Jorgen F P; Yang, Pengyi; Molecular Bioscience; Molecular Bioscience; Molecular Bioscience; Molecular Bioscience; Biological Sciences; Molecular Bioscience; Molecular Bioscience; Molecular BioscienceGlobal Phosphoproteomic Analysis of Human Skeletal Muscle Reveals a Network of Exercise-Regulated Kinases and AMPK Substrates, Cell Metabolism, vol.22, 5, 2015,pp 922-935
2016Hyperactivation of the Insulin Signaling Pathway Improves Intracellular Proteostasis by Coordinately Up-regulating the Proteostatic Machinery in AdipocytesChaudhuri, Rima; Cooney, Gregory; Humphrey, Sean; James, David; Minard, Annabel; Parker, Benjamin Leo; Stoeckli, Jacqueline; Wong, Martin Kin Lok; Yang, Jean Yee Hwa; Coster, Adelle; Laybutt, D. Ross; Tan, Shi-Xiong; Molecular Bioscience; School of Medical Sciences: School of Medical Sciences; School of Life and Environmental Sciences (SOLES); School of Life and Environmental Sciences (SOLES); School of Life and Environmental Sciences (SOLES); Molecular Bioscience; School of Life and Environmental Sciences (SOLES); Physics; Mathematics & StatisticsHyperactivation of the Insulin Signaling Pathway Improves Intracellular Proteostasis by Coordinately Up-regulating the Proteostatic Machinery in Adipocytes, Journal of Biological Chemistry, vol.291, 49, 2016,pp 25629-25640
2016Hyperactivation of the Insulin Signaling Pathway Improves Intracellular Proteostasis by Coordinately Up-regulating the Proteostatic Machinery in AdipocytesChaudhuri, Rima; Cooney, Gregory; Humphrey, Sean; James, David; Minard, Annabel; Parker, Benjamin Leo; Stoeckli, Jacqueline; Wong, Martin Kin Lok; Yang, Jean Yee Hwa; Coster, Adelle; Laybutt, D. Ross; Tan, Shi-Xiong; Molecular Bioscience; School of Medical Sciences: School of Medical Sciences; School of Life and Environmental Sciences (SOLES); School of Life and Environmental Sciences (SOLES); School of Life and Environmental Sciences (SOLES); Molecular Bioscience; School of Life and Environmental Sciences (SOLES); Physics; Mathematics & StatisticsHyperactivation of the Insulin Signaling Pathway Improves Intracellular Proteostasis by Coordinately Up-regulating the Proteostatic Machinery in Adipocytes, The Journal of Biological Chemistry, vol.291, 49, 2016,pp 25629-25640
2015Kinome Screen Identifies PFKFB3 and Glucose Metabolism as Important Regulators of the Insulin/IGF-1 Signalling PathwayChaudhuri, Rima; Fazakerley, Daniel; James, David; Krycer, James; Parker, Benjamin Leo; Stoeckli, Jacqueline; Jung, Kenneth; Junutula, Jagath R.; Khoo, Poh-Sim; Kuijl, Coenraad; Lee, James; Stephan, Jean-Philippe; Sultani, Ghazal; Torres, Eric; Trefely, Sophie; Molecular Bioscience; Molecular Bioscience; School of Life and Environmental Sciences (SOLES); Molecular Bioscience; Molecular Bioscience; Molecular BioscienceKinome Screen Identifies PFKFB3 and Glucose Metabolism as Important Regulators of the Insulin/IGF-1 Signalling Pathway, The Journal of Biological Chemistry, vol.290, 43, 2015,pp 25834-25846
2016mTORC1 Is a Major Regulatory Node in the FGF21 Signaling Network in AdipocytesDomanova, Westa; Fazakerley, Daniel; Humphrey, Sean; James, David; Minard, Annabel; Parker, Benjamin Leo; Stoeckli, Jacqueline; Yang, Pengyi; Jothi, Raja; Tan, Shi-Xiong; Physics; Molecular Bioscience; School of Life and Environmental Sciences (SOLES); School of Life and Environmental Sciences (SOLES); School of Life and Environmental Sciences (SOLES); Molecular Bioscience; School of Life and Environmental Sciences (SOLES); Mathematics & StatisticsmTORC1 Is a Major Regulatory Node in the FGF21 Signaling Network in Adipocytes, Cell Reports, vol.17, 1, 2016,pp 29-36
2016mTORC1 Is a Major Regulatory Node in the FGF21 Signaling Network in AdipocytesDomanova, Westa; Fazakerley, Daniel; Humphrey, Sean; James, David; Minard, Annabel; Parker, Benjamin Leo; Stoeckli, Jacqueline; Yang, Pengyi; Jothi, Raja; Tan, Shi-Xiong; Physics; School of Molecular Bioscience (SMB); School of Life and Environmental Sciences (SOLES); School of Life and Environmental Sciences (SOLES); School of Life and Environmental Sciences (SOLES); School of Molecular Bioscience (SMB); School of Life and Environmental Sciences (SOLES); Mathematics & StatisticsmTORC1 Is a Major Regulatory Node in the FGF21 Signaling Network in Adipocytes, Cell Reports, vol.17, 1, 2016,pp 29-36
2015PhosphOrtholog: a web-based tool for cross-species mapping of orthologous protein post-translational modificationChaudhuri, Rima; Hoffman, Nolan; James, David; Parker, Benjamin Leo; Stoeckli, Jacqueline; Yang, Jean Yee Hwa; Hill, Adam; Humphrey, Sean J; Sadrieh, Arash; Molecular Bioscience; Molecular Bioscience; Molecular Bioscience; Molecular Bioscience; Molecular Bioscience; Mathematics & StatisticsPhosphOrtholog: a web-based tool for cross-species mapping of orthologous protein post-translational modification, BMC Genomics, vol.16, 1, 2015,pp 1-14
2015Proteomic Analysis of GLUT4 Storage Vesicles Reveals Tumour Suppressor Candidate 5 (TUSC5) as a Novel Regulator of Insulin Action in AdipocytesBurchfield, James; Chaudhuri, Rima; Fazakerley, Daniel; James, David; Krycer, James; Meoli, Christopher; Naghiloo, Sheyda; Parker, Benjamin Leo; Stoeckli, Jacqueline; Thomas, Kristen; Holman, Geoffrey David; Koumanov, Francoise; Murrow, Beverley; Prior, Matthew; Molecular Bioscience; Molecular Bioscience; Molecular Bioscience; Molecular Bioscience; Molecular Bioscience; Molecular Bioscience; Molecular Bioscience; Molecular Bioscience; Molecular Bioscience; Charles Perkins CentreProteomic Analysis of GLUT4 Storage Vesicles Reveals Tumour Suppressor Candidate 5 (TUSC5) as a Novel Regulator of Insulin Action in Adipocytes, The Journal of Biological Chemistry, vol.290, 39, 2015,pp 23528-23542
2015The RabGAP TBC1D1 Plays a Central Role in Exercise-Regulated Glucose Metabolism in Skeletal MuscleFazakerley, Daniel; Hoffman, Nolan; James, David; Meoli, Christopher; Stoeckli, Jacqueline; Brandon, Amanda; Cleasby, Mark E; Cooney, Gregory; Kleinert, Maximillian; Lopez, Jamie A; Ma, Xiuquan; Pant, Himani; Molecular Bioscience; Molecular Bioscience; Molecular Bioscience; Molecular Bioscience; Molecular BioscienceThe RabGAP TBC1D1 Plays a Central Role in Exercise-Regulated Glucose Metabolism in Skeletal Muscle, Diabetes, vol.64, 6, 2015,pp 1914-1922
2015Selective insulin resistance in adipocytesFazakerley, Daniel; James, David; Meoli, Christopher; Stoeckli, Jacqueline; Coster, Adelle; Fisher_Wellman, Kelsey; Li, Jia; Ng, Yvonne; Pant, Himani; Tan, Shi-Xiong; Molecular Bioscience; Molecular Bioscience; Molecular Bioscience; Molecular BioscienceSelective insulin resistance in adipocytes, The Journal of Biological Chemistry, vol.290, 18, 2015,pp 11337-11348