Long-Distance Signaling from Synapse to Nucleus via Protein Messengers
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Publisher
Springer Vienna
Link
http://link.springer.com/content/pdf/10.1007/978-3-7091-0932-8_16
Reference130 articles.
1. Adams, J. P., & Dudek, S. M. (2005). Late-phase long-term potentiation: Getting to the nucleus. Nature Reviews Neuroscience, 6, 737–743.
2. Alberi, L., Liu, S., Wang, Y., Badie, R., Smith-Hicks, C., Wu, J., Pierfelice, T. J., Abazyan, B., Mattson, M. P., Kuhl, D., Pletnikov, M., Worley, P. F., & Gaiano, N. (2011). Activity-induced Notch signaling in neurons requires Arc/Arg3.1 and is essential for synaptic plasticity in hippocampal networks. Neuron, 69, 437–444.
3. Alberini, C. M. (2009). Transcription factors in long-term memory and synaptic plasticity. Physiological Reviews, 89, 121–145.
4. Ataman, B., Ashley, J., Gorczyca, D., Gorczyca, M., Mathew, D., Wichmann, C., Sigrist, S. J., & Budnik, V. (2006). Nuclear trafficking of Drosophila Frizzled-2 during synapse development requires the PDZ protein dGRIP. Proceedings of the National Academy of Sciences of the United States of America, 103, 7841–7846.
5. Bakalkin, G. Ya., Yakovleva, T., & Terenius, L. (1993). NF-kappa B-like factors in the murine brain. Developmentally-regulated and tissue-specific expression. Brain Research. Molecular Brain Research, 20, 137–146.
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