Peripuberty stress leads to abnormal aggression, altered amygdala and orbitofrontal reactivity and increased prefrontal MAOA gene expression

被引:0
作者
C Márquez
G L Poirier
M I Cordero
M H Larsen
A Groner
J Marquis
P J Magistretti
D Trono
C Sandi
机构
[1] Laboratory of Behavioral Genetics,
[2] Brain Mind Institute,undefined
[3] School of Life Sciences,undefined
[4] Ecole Polytechnique Federale de Lausanne (EPFL),undefined
[5] Laboratory of Virology and Genetics,undefined
[6] Global Health Institute,undefined
[7] School of Life Sciences,undefined
[8] Ecole Polytechnique Federale de Lausanne (EPFL),undefined
[9] Laboratory of Neuroenergetics and Cellular Dynamics,undefined
[10] Brain Mind Institute,undefined
[11] School of Life Sciences,undefined
[12] Ecole Polytechnique Federale de Lausanne (EPFL),undefined
来源
Translational Psychiatry | 2013年 / 3卷
关键词
abnormal aggression; amygdala; early life; H3 acetylation; prefrontal cortex;
D O I
暂无
中图分类号
学科分类号
摘要
Although adverse early life experiences have been found to increase lifetime risk to develop violent behaviors, the neurobiological mechanisms underlying these long-term effects remain unclear. We present a novel animal model for pathological aggression induced by peripubertal exposure to stress with face, construct and predictive validity. We show that male rats submitted to fear-induction experiences during the peripubertal period exhibit high and sustained rates of increased aggression at adulthood, even against unthreatening individuals, and increased testosterone/corticosterone ratio. They also exhibit hyperactivity in the amygdala under both basal conditions (evaluated by 2-deoxy-glucose autoradiography) and after a resident–intruder (RI) test (evaluated by c-Fos immunohistochemistry), and hypoactivation of the medial orbitofrontal (MO) cortex after the social challenge. Alterations in the connectivity between the orbitofrontal cortex and the amygdala were linked to the aggressive phenotype. Increased and sustained expression levels of the monoamine oxidase A (MAOA) gene were found in the prefrontal cortex but not in the amygdala of peripubertally stressed animals. They were accompanied by increased activatory acetylation of histone H3, but not H4, at the promoter of the MAOA gene. Treatment with an MAOA inhibitor during adulthood reversed the peripuberty stress-induced antisocial behaviors. Beyond the characterization and validation of the model, we present novel data highlighting changes in the serotonergic system in the prefrontal cortex—and pointing at epigenetic control of the MAOA gene—in the establishment of the link between peripubertal stress and later pathological aggression. Our data emphasize the impact of biological factors triggered by peripubertal adverse experiences on the emergence of violent behaviors.
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页码:e216 / e216
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[1]  
Jonson-Reid M(2010)Effects of child maltreatment and inherited liability on antisocial development: an official records study J Am Acad Child Adolesc Psychiatry 49 321-332
[2]  
Presnall N(2010)Social cognitive and emotional mediators link violence exposure and parental nurturance to adolescent aggression J Clin Child Adolesc Psychol 39 814-824
[3]  
Drake B(2009)Early life stress, the development of aggression and neuroendocrine and neurobiological correlates: what can we learn from animal models? Front Neuroendocrinol 30 497-518
[4]  
Fox L(2009)The vicious cycle towards violence: focus on the negative feedback mechanisms of brain serotonin neurotransmission Front Behav Neurosci 3 52-413
[5]  
Bierut L(2011)Cognitive and neurobiological mechanisms of alcohol-related aggression Nat Rev Neurosci 12 400-546
[6]  
Reich W(2007)Neural mechanisms of aggression Nat Rev Neurosci 8 536-580
[7]  
Su W(1993)Abnormal behavior associated with a point mutation in the structural gene for monoamine oxidase A Science 262 578-1766
[8]  
Mrug S(1995)Aggressive behavior and altered amounts of brain serotonin and norepinephrine in mice lacking MAOA Science 268 1763-854
[9]  
Windle M(2002)Role of genotype in the cycle of violence in maltreated children Science 297 851-172
[10]  
Veenema AH(2005)Monoamine oxidase A gene promoter variation and rearing experience influences aggressive behavior in rhesus monkeys Biol Psychiatry 57 167-2383