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.

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