Scaffold Proteins at the Postsynaptic Density
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Publisher
Springer Vienna
Link
http://link.springer.com/content/pdf/10.1007/978-3-7091-0932-8_2
Reference232 articles.
1. Aarts, M., Liu, Y., Liu, L., Besshoh, S., Arundine, M., Gurd, J. W., Wang, Y. T., Salter, M. W., & Tymianski, M. (2002). Treatment of ischemic brain damage by perturbing NMDA receptor-PSD-95 protein interactions. Science, 298, 846–850.
2. Adlard, P. A., Parncutt, J. M., Finkelstein, D. I., & Bush, A. I. (2010). Cognitive loss in zinc transporter-3 knock-out mice: A phenocopy for the synaptic and memory deficits of Alzheimer’s disease? Journal of Neuroscience, 30, 1631–1636.
3. Anggono, V., Clem, R. L., & Huganir, R. L. (2011). PICK1 loss of function occludes homeostatic synaptic scaling. Journal of Neuroscience, 31, 2188–2196.
4. Aoki, C., Miko, I., Oviedo, H., Mikeladze-Dvali, T., Alexandre, L., Sweeney, N., & Bredt, D. S. (2001). Electron microscopic immunocytochemical detection of PSD-95, PSD-93, SAP-102, and SAP-97 at postsynaptic, presynaptic, and nonsynaptic sites of adult and neonatal rat visual cortex. Synapse, 40, 239–257.
5. Assaf, S. Y., & Chung, S. H. (1984). Release of endogenous Zn2+ from brain tissue during activity. Nature, 308, 734–736.
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