Jessica S. Kelsey, Ph.D.

Affiliations: 
2011 Biological Sciences University of Maryland, Baltimore County, Baltimore, MD, United States 
Area:
Genetics, Cell Biology, Molecular Biology
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"Jessica Kelsey"

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Daphne D. Blumberg grad student 2011 UMBC
 (Investigation of a pathway influencing cell migration led to the characterization of novel migration modulators.)
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Publications

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Das J, Kedei N, Kelsey JS, et al. (2017) Critical role of Trp-588 of presynaptic Munc13-1 for ligand binding and membrane translocation. Biochemistry
Kelsey JS, Géczy T, Kaler CJ, et al. (2017) The C1 domain of Vav3, a novel potential therapeutic target. Cellular Signalling. 40: 133-142
Kelsey JS, Cataisson C, Chen J, et al. (2016) Biological activity of the bryostatin analog Merle 23 on mouse epidermal cells and mouse skin. Molecular Carcinogenesis
Garcia LC, Donadío LG, Mann E, et al. (2014) Synthesis, biological, and biophysical studies of DAG-indololactones designed as selective activators of RasGRP. Bioorganic & Medicinal Chemistry. 22: 3123-40
Kelsey JS, Geczy T, Lewin NE, et al. (2014) Charge density influences C1 domain ligand affinity and membrane interactions. Chembiochem : a European Journal of Chemical Biology. 15: 1131-44
Kelsey J, Kedei N, Cataisson C, et al. (2014) Abstract 1642: Bryostatin 1 and the simplified analog Merle 23 have similar and opposing properties on mouse epidermal cells and mouse skin Cancer Research. 74: 1642-1642
Song X, Lopez-Campistrous A, Sun L, et al. (2013) RasGRPs are targets of the anti-cancer agent ingenol-3-angelate. Plos One. 8: e72331
Kelsey JS, Blumberg DD. (2013) A SAP domain-containing protein shuttles between the nucleus and cell membranes and plays a role in adhesion and migration in D. discoideum. Biology Open. 2: 396-406
Kelsey J, Kedei N, Cataisson C, et al. (2013) Abstract 2454: Comparison of the activity of the bryostatin derivative Merle 23 with that of bryostatin 1 and phorbol ester in mouse epidermal cells. Cancer Research. 73: 2454-2454
Noratel EF, Petty CL, Kelsey JS, et al. (2012) The adhesion modulation protein, AmpA localizes to an endocytic compartment and influences substrate adhesion, actin polymerization and endocytosis in vegetative Dictyostelium cells. Bmc Cell Biology. 13: 29
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