Rachel D. Groth

Affiliations: 
Stanford University, Palo Alto, CA 
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"Rachel Groth"
Mean distance: 13.45 (cluster 6)
 
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Paul G. Mermelstein grad student 2000-2006 UMN
 (NFAT-dependent transcription within the nervous system: A critical mediator of neurotrophin-induced plasticity.)
Richard W. Tsien post-doc 2006- Stanford
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Publications

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Ma H, Groth RD, Cohen SM, et al. (2014) γCaMKII shuttles Ca²⁺/CaM to the nucleus to trigger CREB phosphorylation and gene expression. Cell. 159: 281-94
Groth RD, Tirko NN, Tsien RW. (2014) CaV1.2 calcium channels: just cut out to be regulated? Neuron. 82: 939-40
Wheeler DG, Groth RD, Ma H, et al. (2012) Ca(V)1 and Ca(V)2 channels engage distinct modes of Ca(2+) signaling to control CREB-dependent gene expression. Cell. 149: 1112-24
Ma H, Groth RD, Wheeler DG, et al. (2011) Excitation-transcription coupling in sympathetic neurons and the molecular mechanism of its initiation. Neuroscience Research. 70: 2-8
Groth RD, Lindskog M, Thiagarajan TC, et al. (2011) Beta Ca2+/CaM-dependent kinase type II triggers upregulation of GluA1 to coordinate adaptation to synaptic inactivity in hippocampal neurons. Proceedings of the National Academy of Sciences of the United States of America. 108: 828-33
Lindskog M, Li L, Groth RD, et al. (2010) Postsynaptic GluA1 enables acute retrograde enhancement of presynaptic function to coordinate adaptation to synaptic inactivity. Proceedings of the National Academy of Sciences of the United States of America. 107: 21806-11
Groth RD, Yang NJ, Lin MZ, et al. (2010) Activity-dependent synthesis of αCaMKII in hippocampal neurons studied with Time-STAMP F1000research. 1
Tsien RW, Wheeler DG, Groth RD, et al. (2010) Excitation-transcription coupling mechanisms engaged by specific calcium channel types Neuroscience Research. 68: e20
Wheeler DG, Barrett CF, Groth RD, et al. (2008) CaMKII locally encodes L-type channel activity to signal to nuclear CREB in excitation-transcription coupling. The Journal of Cell Biology. 183: 849-63
Groth RD, Tsien RW. (2008) A role for retinoic acid in homeostatic plasticity. Neuron. 60: 192-4
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