Serena M. Dudek, Ph.D.

2001- NIEHS 
synaptic plasticity
"Serena Dudek"
Mean distance: 12.82 (cluster 6)


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Gary Lynch research assistant 1987 UC Irvine
Mark F. Bear grad student 1987-1992 Brown
Michael Friedlander post-doc University of Alabama


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John Raymond Hepler collaborator
W Scott Young collaborator NIEHS
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Gerber KJ, Dammer EB, Duong DM, et al. (2019) Specific Proteomes of Hippocampal Regions CA2 and CA1 Reveal Proteins Linked to the Unique Physiology of Area CA2. Journal of Proteome Research
Alexander GM, Brown LY, Farris S, et al. (2018) CA2 neuronal activity controls hippocampal low gamma and ripple oscillations. Elife. 7
Gu B, Carstens KE, Judson MC, et al. (2018) Ube3a reinstatement mitigates epileptogenesis in Angelman syndrome model mice. The Journal of Clinical Investigation
Carstens KE, Dudek SM. (2018) Regulation of synaptic plasticity in hippocampal area CA2. Current Opinion in Neurobiology
Evans PR, Parra-Bueno P, Smirnov MS, et al. (2018) RGS14 Restricts Plasticity in Hippocampal CA2 by Limiting Postsynaptic Calcium Signaling. Eneuro. 5
Tyssowski KM, DeStefino NR, Cho JH, et al. (2018) Different Neuronal Activity Patterns Induce Different Gene Expression Programs. Neuron
Evans PR, Gerber KJ, Dammer EB, et al. (2018) Interactome Analysis Reveals Regulator of G Protein Signaling 14 (RGS14) is a Novel Calcium/Calmodulin (Ca2+/CaM) and CaM Kinase II (CaMKII) Binding Partner. Journal of Proteome Research
Gu Z, Alexander GM, Dudek SM, et al. (2017) Hippocampus and Entorhinal Cortex Recruit Cholinergic and NMDA Receptors Separately to Generate Hippocampal Theta Oscillations. Cell Reports. 21: 3585-3595
Dunn CJ, Sarkar P, Bailey ER, et al. (2017) Histone Hypervariants H2A.Z.1 and H2A.Z.2 Play Independent and Context-Specific Roles in Neuronal Activity-Induced Transcription of Arc/Arg3.1 and Other Immediate Early Genes. Eneuro. 4
Farris S, Wang Y, Ward JM, et al. (2017) Optimized Method for Robust Transcriptome Profiling of Minute Tissues Using Laser Capture Microdissection and Low-Input RNA-Seq. Frontiers in Molecular Neuroscience. 10: 185
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