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Science Signaling|June 12, 2014
T cell receptor-dependent activation of mTOR signaling in T cells is mediated by Carma1 and MALT1, but not Bcl10Kristia S Hamilton, Binh Phong, Catherine Corey, et al.Redox Biology|March 24, 2017
Biochemical signaling by remote ischemic conditioning of the arm versus thigh: Is one raise of the cuff enough?Cameron Dezfulian, Maia Taft, Catherine Corey, et al.Free Radical Biology & Medicine|August 16, 2012
Nitrite activates AMP kinase to stimulate mitochondrial biogenesis independent of soluble guanylate cyclaseLi Mo, Yinna Wang, Lisa Geary, et al.Pharmacoepidemiology and Drug Safety|November 4, 2022
A new analytic tool for assessing the impact of the US Food and Drug Administration regulatory actionsChristine Y Lu, Laura Hou, Joy Kolonoski, et al.The Journal of Biological Chemistry|March 18, 2015
The Proapoptotic F-box Protein Fbxl7 Regulates Mitochondrial Function by Mediating the Ubiquitylation and Proteasomal Degradation of SurvivinYuan Liu, Travis Lear, Olivia Iannone, et al.Pharmacoepidemiology and Drug Safety|November 9, 2022
Assessing medical product safety during pregnancy using parameterizable tools in the sentinel distributed databaseJennifer G Lyons, Elizabeth A Suarez, Elnara Fazio-Eynullayeva, et al.The Biochemical Journal|May 30, 2019
Loss of GCN5L1 in cardiac cells disrupts glucose metabolism and promotes cell death via reduced Akt/mTORC2 signalingJanet R Manning, Dharendra Thapa, Manling Zhang, et al.Oxidative Medicine and Cellular Longevity|March 7, 2018
Nocturnal Hypoxia Improves Glucose Disposal, Decreases Mitochondrial Efficiency, and Increases Reactive Oxygen Species in the Muscle and Liver of C57BL/6J Mice Independent of Weight ChangeSimona Ioja, Srikanth Singamsetty, Catherine Corey, et al.The Journal of Physiology|May 9, 2015
Inorganic nitrite improves components of the metabolic syndrome independent of weight change in a murine model of obesity and insulin resistanceSrikanth Singamsetty, Yoshio Watanabe, Lanping Guo, et al.Journal of Molecular and Cellular Cardiology|February 19, 2019
Cardiac-specific deletion of GCN5L1 restricts recovery from ischemia-reperfusion injuryJanet R Manning, Dharendra Thapa, Manling Zhang, et al.Pageof 3