Negr1欠損は社会的孤立に対する性特異的な神経行動学的適応を調節する
Arpana Reinsberg1, Katyayani Singh1, Mohan Jayaram1
1Institute of Biomedicine and Translational Medicine, Department of Physiology, University of Tartu, 19 Ravila Street, 50411 Tartu, Estonia.
Abstract:
Objective: Neuronal growth regulator 1 (Negr1) is a GPI-anchored neuronal cell adhesion molecule of the IgLON superfamily associated with multiple psychiatric disorders. This study aimed to investigate behavioral and molecular adaptations to social isolation (SI) stress in Negr1-deficient (Negr1-/-) mice. Methods: Male and female Negr1-/- and wild-type (Wt) mice (n = 10 per group) were exposed to two weeks of SI or group housing (Ctl). Behavioral assays assessed exploratory and anxiety-like behavior. Gene expression analyses in the prefrontal cortex and hippocampus were performed using RT-qPCR, focusing on GABAergic, neurotrophic, and IgLON family genes. Results: SI-induced weight loss in Negr1-/- mice compared to Wt was evident in both sexes but more pronounced in males. Behaviorally, SI Wt males showed stress-induced hyperactivity compared to Ctl Wt, whereas SI Negr1-/- males exhibited blunted exploratory behavior relative to SI Wt in the open field test (OFT). Negr1-/- females showed reduced exploration in the elevated plus maze (EPM), suggesting increased anxiety. Hippocampal Pvalb was downregulated in SI Negr1-/- mice of both sexes compared to Wts, with a stronger decrease in males, indicating heightened male vulnerability in GABAergic interneuron function. In males, SI reduced hippocampal Bdnf in both genotypes, whereas Ntrk2 (TrkB) upregulation occurred only in Negr1-/- mice, suggesting a genotype-specific compensatory response. Hippocampal expression of Fgfr2 and IgLON members (Ntm1a/1b, Lsamp1a/1b) was increased in SI Negr1-/- males compared to SI Wt, with minimal changes in females. Conclusions: Negr1 deficiency leads to sex-specific behavioral and molecular adaptations to social isolation stress, highlighting the role of Negr1 in modulating neurotrophic and GABAergic signaling pathways under adverse environmental conditions.


