Conditioned place avoidance is associated with a distinct hippocampal phenotype, partly preserved pattern separation, and reduced reactive oxygen species production after stress

Author:

Kelley D. Parker12ORCID,Albrechet‐Souza Lucas34ORCID,Cruise Shealan2ORCID,Maiya Rajani2ORCID,Destouni Aspasia1ORCID,Sakamuri Siva S. V. P.5ORCID,Duplooy Alexander1ORCID,Hibicke Meghan6ORCID,Nichols Charles46ORCID,Katakam Prasad V. G.5ORCID,Gilpin Nicholas W.2478ORCID,Francis Joseph1

Affiliation:

1. Comparative Biomedical Sciences Louisiana State University School of Veterinary Medicine Baton Rouge Louisiana USA

2. Department of Physiology Louisiana State University Health Sciences Center New Orleans Louisiana USA

3. Department of Cell Biology & Anatomy Louisiana State University Health Sciences Center New Orleans Louisiana USA

4. Alcohol & Drug Abuse Center of Excellence Louisiana State University Health Sciences Center New Orleans Louisiana USA

5. Department of Pharmacology Tulane University School of Medicine New Orleans Louisiana USA

6. Department of Pharmacology and Experimental Therapeutics Louisiana State University Health Sciences Center New Orleans Louisiana USA

7. Neuroscience Center of Excellence Louisiana State University Health Sciences Center New Orleans Louisiana USA

8. Southeast Louisiana VA Healthcare System (SLVHCS) New Orleans Louisiana USA

Abstract

AbstractStress is associated with contextual memory deficits, which may mediate avoidance of trauma‐associated contexts in posttraumatic stress disorder. These deficits may emerge from impaired pattern separation, the independent representation of similar experiences by the dentate gyrus‐Cornu Ammonis 3 (DG‐CA3) circuit of the dorsal hippocampus, which allows for appropriate behavioral responses to specific environmental stimuli. Neurogenesis in the DG is controlled by mitochondrial reactive oxygen species (ROS) production, and may contribute to pattern separation. In Experiment 1, we performed RNA sequencing of the dorsal hippocampus 16 days after stress in rats that either develop conditioned place avoidance to a predator urine‐associated context (Avoiders), or do not (Non‐Avoiders). Weighted genome correlational network analysis showed that increased expression of oxidative phosphorylation‐associated gene transcripts and decreased expression of gene transcripts for axon guidance and insulin signaling were associated with avoidance behavior. Based on these data, in Experiment 2, we hypothesized that Avoiders would exhibit elevated hippocampal (HPC) ROS production and degraded object pattern separation (OPS) compared with Nonavoiders. Stress impaired pattern separation performance in Non‐Avoider and Avoider rats compared with nonstressed Controls, but surprisingly, Avoiders exhibited partly preserved pattern separation performance and significantly lower ROS production compared with Non‐Avoiders. Lower ROS production was associated with better OPS performance in Stressed rats, but ROS production was not associated with OPS performance in Controls. These results suggest a strong negative association between HPC ROS production and pattern separation after stress, and that stress effects on these outcome variables may be associated with avoidance of a stress‐paired context.

Funder

National Heart, Lung, and Blood Institute

National Institute of Neurological Disorders and Stroke

National Institute on Aging

National Institute on Alcohol Abuse and Alcoholism

Publisher

Wiley

Subject

Behavioral Neuroscience,Neurology,Genetics

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