1,109
Views
14
CrossRef citations to date
0
Altmetric
Article Addendum

Synaptic Activity Responsive Element (SARE)

a unique genomic structure with an unusual sensitivity to neuronal activity

, , , , &
Pages 443-446 | Received 06 May 2010, Accepted 06 May 2010, Published online: 01 Sep 2010

References

  • Bliss TV, Collingridge GL. A synaptic model of memory: long-term potentiation in the hippocampus. Nature 1993; 361:31 - 39
  • Morris RG. Elements of a neurobiological theory of hippocampal function: the role of synaptic plasticity, synaptic tagging and schemas. Eur J Neurosci 2006; 23:2829 - 2846
  • Bourtchuladze R, et al. Deficient long-term memory in mice with a targeted mutation of the cAMP-responsive element-binding protein. Cell 1994; 79:59 - 68
  • Bito H, Deisseroth K, Tsien RW. CREB phosphorylation and dephosphorylation: a Ca(2+)- and stimulus duration-dependent switch for hippocampal gene expression. Cell 1996; 87:1203 - 1214
  • Silva AJ, et al. CREB and memory. Annu Rev Neurosci 1998; 21:127 - 148
  • Kida S, et al. CREB required for the stability of new and reactivated fear memories. Nat Neurosci 2002; 5:348 - 355
  • Conkright MD, Montminy M. CREB: the unindicted cancer co-conspirator. Trends Cell Biol 2005; 15:457 - 459
  • Nonaka M. A Janus-like role of CREB protein: enhancement of synaptic property in mature neurons and suppression of synaptogenesis and reduced network synchrony in early development. J Neurosci 2009; 29:6389 - 6391
  • Gonzalez GA, Montminy MR. Cyclic AMP stimulates somatostatin gene transcription by phosphorylation of CREB at serine 133. Cell 1989; 59:675 - 680
  • Ginty DD, Bonni A, Greenberg ME. Nerve growth factor activates a Ras-dependent protein kinase that stimulates c-fos transcription via phosphorylation of CREB. Cell 1994; 77:713 - 725
  • Bito H, Deisseroth K, Tsien RW. Ca2+-dependent regulation in neuronal gene expression. Curr Opin Neurobiol 1997; 7:419 - 429
  • Shaywitz AJ, Greenberg ME. CREB: a stimulus-induced transcription factor activated by a diverse array of extracellular signals. Annu Rev Biochem 1999; 68:821 - 861
  • Bito H, Takemoto-Kimura S. Ca2+/CREB/CBP-dependent gene regulation: a shared mechanism critical in long-term synaptic plasticity and neuronal survival. Cell Calcium 2003; 34:425 - 430
  • Impey S, et al. Defining the CREB regulon: a genome-wide analysis of transcription factor regulatory regions. Cell 2004; 119:1041 - 1054
  • Zhang X, et al. Genome-wide analysis of cAMP-response element binding protein occupancy, phosphorylation, and target gene activation in human tissues. Proc Natl Acad Sci USA 2005; 102:4459 - 4464
  • Robertson LM, et al. Regulation of c-fos expression in transgenic mice requires multiple interdependent transcription control elements. Neuron 1995; 14:241 - 252
  • West AE, Griffith EC, Greenberg ME. Regulation of transcription factors by neuronal activity. Nat Rev Neurosci 2002; 3:921 - 931
  • Flavell SW, Greenberg ME. Signaling mechanisms linking neuronal activity to gene expression and plasticity of the nervous system. Annu Rev Neurosci 2008; 31:563 - 590
  • Link W, et al. Somatodendritic expression of an immediate early gene is regulated by synaptic activity. Proc Natl Acad Sci USA 1995; 92:5734 - 578
  • Lyford GL, et al. Arc, a growth factor and activityregulated gene, encodes a novel cytoskeleton-associated protein that is enriched in neuronal dendrites. Neuron 1995; 14:433 - 445
  • Tagawa Y, et al. Multiple periods of functional ocular dominance plasticity in mouse visual cortex. Nat Neurosci 2005; 8:380 - 388
  • Chowdhury S, et al. Arc/Arg3.1 interacts with the endocytic machinery to regulate AMPA receptor trafficking. Neuron 2006; 52:445 - 459
  • Plath N, et al. Arc/Arg3.1 is essential for the consolidation of synaptic plasticity and memories. Neuron 2006; 52:437 - 444
  • Shepherd JD, et al. Arc/Arg3.1 mediates homeostatic synaptic scaling of AMPA receptors. Neuron 2006; 52:475 - 484
  • McCurry CL, et al. Loss of Arc renders the visual cortex impervious to the effects of sensory experience or deprivation. Nat Neurosci 2010; 13:450 - 457
  • Guzowski JF, et al. Environment-specific expression of the immediate-early gene Arc in hippocampal neuronal ensembles. Nat Neurosci 1999; 2:1120 - 1124
  • Ramirez-Amaya V, et al. Spatial exploration-induced Arc mRNA and protein expression: evidence for selective, network-specific reactivation. J Neurosci 2005; 25:1761 - 1768
  • Han JH, et al. Neuronal competition and selection during memory formation. Science 2007; 316:457 - 460
  • Waltereit R, et al. Arg3.1/Arc mRNA induction by Ca2+ and cAMP requires protein kinase A and mitogen-activated protein kinase/extracellular regulated kinase activation. J Neurosci 2001; 21:5484 - 5493
  • Kawashima T, et al. Synaptic activity-responsive element in the Arc/Arg3.1 promoter essential for synapse-to-nucleus signaling in activated neurons. Proc Natl Acad Sci USA 2009; 106:316 - 321