Cheryl Lichti

Affiliations: 
Pathology and Immunology Washington University School of Medicine, St. Louis, MO, United States 
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"Cheryl Lichti"
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Sowers ML, Re JD, Wadsworth PA, et al. (2019) Sex-Specific Proteomic Changes Induced by Genetic Deletion of Fibroblast Growth Factor 14 (FGF14), a Regulator of Neuronal Ion Channels. Proteomes. 7
Scala F, Nenov MN, Crofton EJ, et al. (2018) Environmental Enrichment and Social Isolation Mediate Neuroplasticity of Medium Spiny Neurons through the GSK3 Pathway. Cell Reports. 23: 555-567
Mostovenko E, Végvári Á, Rezeli M, et al. (2017) Large Scale Identification of Variant Proteins in Glioma Stem Cells. Acs Chemical Neuroscience
Burel S, Coyan FC, Lorenzini M, et al. (2017) C-Terminal Phosphorylation of NaV1.5 Impairs FGF13-Dependent Regulation of Channel Inactivation. The Journal of Biological Chemistry
Hsu WJ, Wildburger N, Haidacher SJ, et al. (2017) PPARgamma agonists rescue increased phosphorylation of FGF14 at S226 in the Tg2576 mouse model of Alzheimer's disease. Experimental Neurology
Hsu WJ, Scala F, Nenov MN, et al. (2016) CK2 activity is required for the interaction of FGF14 with voltage-gated sodium channels and neuronal excitability. Faseb Journal : Official Publication of the Federation of American Societies For Experimental Biology
Wildburger NC, Wood PL, Gumin J, et al. (2015) ESI-MS/MS and MALDI-IMS Localization Reveal Alterations in Phosphatidic Acid, Diacylglycerol, and DHA in Glioma Stem Cell Xenografts. Journal of Proteome Research. 14: 2511-9
Wildburger NC, Ali SR, Hsu WC, et al. (2015) Quantitative proteomics reveals protein-protein interactions with fibroblast growth factor 12 as a component of the voltage-gated sodium channel 1.2 (nav1.2) macromolecular complex in Mammalian brain. Molecular & Cellular Proteomics : McP. 14: 1288-300
James TF, Nenov MN, Wildburger NC, et al. (2015) The Nav1.2 channel is regulated by GSK3. Biochimica Et Biophysica Acta. 1850: 832-44
Lichti CF, Mostovenko E, Wadsworth PA, et al. (2015) Systematic identification of single amino acid variants in glioma stem-cell-derived chromosome 19 proteins. Journal of Proteome Research. 14: 778-86
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