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Author Spotlight: Exploring Neural Correlates of Defensive Behaviors in Fear Learning and Extinction
Published on: December 15, 2023
Involvement of GluD2 in Fear-Conditioned Bradycardia in Mice
Hiroko Kotajima-Murakami1, Sakae Narumi2, Michisuke Yuzaki2
1Department of Life Sciences, Graduate School of Arts and Sciences, The University of Tokyo, Meguro-ku, Tokyo, Japan.
Abstract:
Lesions in the cerebellar vermis abolish acquisition of fear-conditioned bradycardia in animals and human patients. The δ2 glutamate receptor (GluD2) is predominantly expressed in cerebellar Purkinje cells. The mouse mutant ho15J carries a spontaneous mutation in GluD2 and these mice show a primary deficiency in parallel fiber-Purkinje cell synapses, multiple innervations of Purkinje cells by climbing fibers, and impairment of long-term depression. In the present study, we used ho15J mice to investigate the role of the cerebellum in fear-conditioned bradycardia. We recorded changes in heart rate of ho15J mice induced by repeated pairing of an acoustic (conditioned) stimulus (CS) with an aversive (unconditioned) stimulus (US). The mice acquired conditioned bradycardia on Day 1 of the CS-US phase, similarly to wild-type mice. However, the magnitude of the conditioned bradycardia was not stable in the mutant mice, but rather was exaggerated on Days 2-5 of the CS-US phase. We examined the effects of reversibly inactivating the cerebellum by injection of an antagonist against the α-amino-3-hydroxy-5-methyl-4-isoxazole propionate receptor (AMPAR). The antagonist abolished expression of conditioned responses in both wild-type and ho15J mice. We conclude that the GluD2 mutation in the ho15J mice affects stable retention of the acquired conditioned bradycardia.
Insights
Mice with a mutation in the δ2 glutamate receptor (GluD2) showed unstable fear-conditioned bradycardia. This suggests GluD2 is crucial for the stable retention of learned fear responses in the cerebellum.
Area of Science:
- Neuroscience
- Behavioral Neuroscience
- Molecular Biology
Background:
- The cerebellar vermis is essential for fear-conditioned bradycardia.
- The δ2 glutamate receptor (GluD2) is mainly found in cerebellar Purkinje cells.
- The ho15J mouse mutant has a GluD2 mutation, affecting cerebellar synapses and long-term depression.
Purpose of the Study:
- To investigate the role of the cerebellum and GluD2 in fear-conditioned bradycardia using ho15J mice.
- To understand how GluD2 mutations impact the acquisition and retention of learned fear responses.
Main Methods:
- Recorded heart rate changes in ho15J mice during fear conditioning (pairing acoustic CS with aversive US).
- Compared fear conditioning in ho15J mice with wild-type littermates.
- Used an AMPA receptor antagonist to reversibly inactivate the cerebellum.
Main Results:
- ho15J mice acquired conditioned bradycardia similarly to wild-type mice on Day 1.
- Mutant mice exhibited exaggerated and unstable conditioned bradycardia from Day 2 onwards.
- Cerebellar inactivation abolished conditioned responses in both ho15J and wild-type mice.
Conclusions:
- The GluD2 mutation in ho15J mice impairs the stable retention of acquired fear-conditioned bradycardia.
- These findings highlight the importance of GluD2 and cerebellar function for maintaining learned fear responses.

