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Full-Text Articles in Neuroscience and Neurobiology

Seasonal Hippocampal Plasticity In Food-Storing Birds., David F Sherry, Jennifer S Hoshooley Mar 2010

Seasonal Hippocampal Plasticity In Food-Storing Birds., David F Sherry, Jennifer S Hoshooley

Psychology Publications

Both food-storing behaviour and the hippocampus change annually in food-storing birds. Food storing increases substantially in autumn and winter in chickadees and tits, jays and nutcrackers and nuthatches. The total size of the chickadee hippocampus increases in autumn and winter as does the rate of hippocampal neurogenesis. The hippocampus is necessary for accurate cache retrieval in food-storing birds and is much larger in food-storing birds than in non-storing passerines. It therefore seems probable that seasonal change in caching and seasonal change in the hippocampus are causally related. The peak in recruitment of new neurons into the hippocampus occurs before birds …


Dopamine Neuron Stimulating Actions Of A Gdnf Propeptide, Luke H. Bradley, Josh Fuqua, April Richardson, Jadwiga Turchan-Cholewo, Yi Ai, Kristen A. Kelps, John D. Glass, Xiuquan He, Zhiming Zhang, Richard Grondin, O. Meagan Littrell, Peter Huettl, Francois Pomerleau, Don M. Gash, Greg A. Gerhardt Mar 2010

Dopamine Neuron Stimulating Actions Of A Gdnf Propeptide, Luke H. Bradley, Josh Fuqua, April Richardson, Jadwiga Turchan-Cholewo, Yi Ai, Kristen A. Kelps, John D. Glass, Xiuquan He, Zhiming Zhang, Richard Grondin, O. Meagan Littrell, Peter Huettl, Francois Pomerleau, Don M. Gash, Greg A. Gerhardt

Neuroscience Faculty Publications

BACKGROUND: Neurotrophic factors, such as glial cell line-derived neurotrophic factor (GDNF), have shown great promise for protection and restoration of damaged or dying dopamine neurons in animal models and in some Parkinson's disease (PD) clinical trials. However, the delivery of neurotrophic factors to the brain is difficult due to their large size and poor bio-distribution. In addition, developing more efficacious trophic factors is hampered by the difficulty of synthesis and structural modification. Small molecules with neurotrophic actions that are easy to synthesize and modify to improve bioavailability are needed.

METHODS AND FINDINGS: Here we present the neurobiological actions of dopamine …


Dopamine D1 Receptor-Mediated Nmda Receptor Insertion Depends On Fyn But Not Src Kinase Pathway In Prefrontal Cortical Neurons, Jian-Li Hu, Gang Liu, Yan-Chun Li, Wen-Jun Gao, Yueqiao Huang Jan 2010

Dopamine D1 Receptor-Mediated Nmda Receptor Insertion Depends On Fyn But Not Src Kinase Pathway In Prefrontal Cortical Neurons, Jian-Li Hu, Gang Liu, Yan-Chun Li, Wen-Jun Gao, Yueqiao Huang

PCOM Scholarly Papers

Background. Interactions between dopamine and glutamate in the prefrontal cortex are essential for cognitive functions such as working memory. Modulation of N-methyl-D-aspartic acid (NMDA) receptor functions by dopamine D1 receptor is believed to play a critical role in these functions. The aim of the work reported here is to explore the signaling pathway underlying D1 receptor-mediated trafficking of NMDA receptors in cultured rat prefrontal cortical neurons. Results. Activation of D1 receptor by selective agonist SKF-81297 significantly increased the expression of NR2B subunits. This effect was completely blocked by small interfering RNA knockdown of Fyn, but not Src. Under control conditions, …


Dopamine D1 Receptor-Mediated Enhancement Of Nmda Receptor Trafficking Requires Rapid Pkc-Dependent Synaptic Insertion In The Prefrontal Neurons, Yan-Chun Li, Gang Liu, Jian-Li Hu, Wen-Jun Gao, Yueqiao Huang Jan 2010

Dopamine D1 Receptor-Mediated Enhancement Of Nmda Receptor Trafficking Requires Rapid Pkc-Dependent Synaptic Insertion In The Prefrontal Neurons, Yan-Chun Li, Gang Liu, Jian-Li Hu, Wen-Jun Gao, Yueqiao Huang

PCOM Scholarly Papers

Understanding the interaction between dopamine and glutamate, particularly the interaction of dopamine and NMDA receptors, may enable a more rational approach to the treatment of schizophrenia, drug addiction, and other psychiatric disorders. We show that, in prefrontal cortical neurons, dopamine D1-induced enhancement of NMDA receptor function depends on rapid insertion of new NMDA receptor 2B subunits on the synaptic surface. Protein kinase A (PKA) inhibitor, but not protein kinase C (PKC) inhibitor, completely blocked dopamine D1 agonist SKF-81297-induced increase of the total expression of NMDA receptors. Furthermore, SKF-81297 failed to alter the surface expression and synaptic insertion of NMDA receptors …