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Published on: January 12, 2016
Natural activation of caspase-3 is required for the development of operant behavior in postnatal ontogenesis
I V Kudryashova1, M Yu Stepanichev, N V Gulyaeva
1Institute of Higher Nervous Activity and Neurophysiology, Russian Academy of Sciences, Moscow, Russia. iv_kudryashova@mail.ru
Insights
Inhibiting caspase-3 in developing rats impairs learning and decision-making in avoidance tasks. This suggests caspase-3 plays a critical role in the development of operant behavior.
Area of Science:
- Neuroscience
- Developmental Biology
- Behavioral Science
Background:
- Transient increases in caspase-3 activity are observed in the rat pup hippocampus around postnatal day 17.
- Caspase-3 is a key enzyme in apoptosis, but its role in neurodevelopmental learning processes is less understood.
Purpose of the Study:
- To investigate the impact of caspase-3 inhibition during a critical developmental window on the acquisition of a two-way avoidance reaction in rat pups.
- To determine if blocking caspase-3 activity affects specific types of conditioned behaviors.
Main Methods:
- Rat pups received intracerebroventricular administration of a caspase-3 inhibitor (Z-DEVD-FMK) or an inactive control peptide (Z-FA-FMK) on postnatal day 18.
- Behavioral testing focused on the acquisition of active avoidance reactions, including measures of learning efficiency, intersignal reactions, emotional reactions, and orientational-investigative reactions.
Main Results:
- Inhibition of caspase-3 significantly impaired the efficiency of learning during the acquisition of active avoidance reactions.
- A decrease in intersignal reactions and a significant increase in incomplete acts were observed in caspase-3 inhibited rats.
- No specific effects on emotional reactions or orientational-investigative conditioned reactions were found, suggesting the impairment is specific to decision-making in operant learning.
Conclusions:
- Caspase-3 inhibition during early ontogenesis disrupts the development of operant behavior, specifically impacting the decision-making stage of active avoidance learning.
- The findings highlight a crucial role for caspase-3 in the maturation of neural circuits underlying complex learned behaviors.
Abstract:
We have previously demonstrated transient increases in caspase-3 activity in the hippocampus of rat pups from age 17 days. We report here our studies on the effects of inhibition of caspase-3 during this period on the acquisition of a two-way avoidance reaction. Rat pups received intracerebroventricular doses of the caspase-3 inhibitor Z-DEVD-FMK On postnatal day 18. Control animals of the same age received the inactive peptide Z-FA-FMK or isotonic saline solution. Inhibition of caspase-3 during the period of its natural activation in the hippocampus during early ontogenesis was found to impair the development of operant behavior in rats. This was apparent as a reduction in the efficiency of learning during acquisition of active avoidance reactions and decreases in the numbers of intersignal reactions. Administration of the inhibitor had no specific action on the types of conditioned reflex activity less associated with operant learning. Thus, there were no differences between the experimental and control groups in the numbers of emotional reactions to the conditioned stimulus. The number of orientational-investigative conditioned reactions also showed no change after administration of Z-DEVD-FMK. On the background of the reduction in the efficiency of the acquisition of the conditioned active avoidance reflex, the number of incomplete acts, in contrast to other types of conditioned reactions, increased significantly after administration of Z-DEVD-FMK, which is evidence for the persistence of the ability to form associative connections between activation of the conditioned signal and the need to move to the other sector. The difficulty in these animals arose at the decision-taking stage on choosing the appropriate form of behavior. Changes in orientational-investigative behavior were not associated with inhibition of caspase-3 during the critical period of development, as the effects of Z-DEVD-FMK and Z-FA-FMK were similar.
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