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Endogenous Truncated TrkB.T1 Receptor Regulates Neuronal Complexity and TrkB Kinase Receptor FunctionIn Vivo

Endogenous Truncated TrkB.T1 Receptor Regulates Neuronal Complexity and TrkB Kinase Receptor FunctionIn Vivo
Pathological orin vitrooverexpression of the truncated TrkB (TrkB.T1) receptor inhibits signaling through the full-length TrkB (TrkB.FL) tyrosine kinase receptor. However, to date, the role of endogenous TrkB.T1 is still unknown. By studying mice lacking the truncated TrkB.T1 isoform but retaining normal spatiotemporal expression of TrkB.FL, we have analyzed TrkB.T1-specific physiological functions and its effect on endogenous TrkB kinase signalingin vivo. We found that TrkB.T1-deficient mice develop normally but show increased anxiety in association with morphological abnormalities in the length and complexity of neurites of neurons in the basolateral amygdala. However, no behavioral abnormalities were detected in hippocampal-dependent memory tasks, which correlated with lack of any obvious hippocampal morphological deficits or alterations in basal synaptic transmission and long-term potentiation.In vivoreduction of TrkB signaling by removal of one BDNF allele could be partially rescued by TrkB.T1 deletion, which was revealed by an amelioration of the enhanced aggression and weight gain associated with BDNF haploinsufficiency. Our results suggest that, at the physiological level, TrkB.T1 receptors are important regulators of TrkB.FL signalingin vivo. Moreover, TrkB.T1 selectively affects dendrite complexity of certain neuronal populations.
- University of Maryland, Baltimore United States
- National Cancer Institute United States
- Center for Cancer Research United States
- National Institute of Health Pakistan
- National Heart Lung and Blood Institute United States
Mice, Knockout, Neurons, Silver Staining, Brain-Derived Neurotrophic Factor, Body Weight, Brain, Fear, In Vitro Techniques, Hippocampus, Mice, Inbred C57BL, Mice, Conditioning, Psychological, Mutation, Exploratory Behavior, Animals, Receptor, trkB, Maze Learning
Mice, Knockout, Neurons, Silver Staining, Brain-Derived Neurotrophic Factor, Body Weight, Brain, Fear, In Vitro Techniques, Hippocampus, Mice, Inbred C57BL, Mice, Conditioning, Psychological, Mutation, Exploratory Behavior, Animals, Receptor, trkB, Maze Learning
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