Genetic determinants of aggression and impulsivity in humans
Human aggression/impulsivity-related traits have a complex background that is greatly influenced by genetic and non-genetic factors. The relationship between aggression and anxiety is regulated by highly conserved brain regions including amygdala, which controls neural circuits triggering defensive,...
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Published in | Journal of applied genetics Vol. 53; no. 1; pp. 61 - 82 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Berlin/Heidelberg
Springer-Verlag
01.02.2012
Springer |
Subjects | |
Online Access | Get full text |
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Abstract | Human aggression/impulsivity-related traits have a complex background that is greatly influenced by genetic and non-genetic factors. The relationship between aggression and anxiety is regulated by highly conserved brain regions including amygdala, which controls neural circuits triggering defensive, aggressive, or avoidant behavioral models. The dysfunction of neural circuits responsible for emotional control was shown to represent an etiological factor of violent behavior. In addition to the amygdala, these circuits also involve the anterior cingulated cortex and regions of the prefrontal cortex. Excessive reactivity in the amygdala coupled with inadequate prefrontal regulation serves to increase the likelihood of aggressive behavior. Developmental alterations in prefrontal-subcortical circuitry as well as neuromodulatory and hormonal abnormality appear to play a role. Imbalance in testosterone/serotonin and testosterone/cortisol ratios (e.g., increased testosterone levels and reduced cortisol levels) increases the propensity toward aggression because of reduced activation of the neural circuitry of impulse control and self-regulation. Serotonin facilitates prefrontal inhibition, and thus insufficient serotonergic activity can enhance aggression. Genetic predisposition to aggression appears to be deeply affected by the polymorphic genetic variants of the serotoninergic system that influences serotonin levels in the central and peripheral nervous system, biological effects of this hormone, and rate of serotonin production, synaptic release and degradation. Among these variants, functional polymorphisms in the monoamine oxidase A (MAOA) and serotonin transporter (5-HTT) may be of particular importance due to the relationship between these polymorphic variants and anatomical changes in the limbic system of aggressive people. Furthermore, functional variants of MAOA and 5-HTT are capable of mediating the influence of environmental factors on aggression-related traits. In this review, we consider genetic determinants of human aggression, with special emphasis on genes involved in serotonin and dopamine metabolism and function. |
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AbstractList | Human aggression/impulsivity-related traits have a complex background that is greatly influenced by genetic and non-genetic factors. The relationship between aggression and anxiety is regulated by highly conserved brain regions including amygdala, which controls neural circuits triggering defensive, aggressive, or avoidant behavioral models. The dysfunction of neural circuits responsible for emotional control was shown to represent an etiological factor of violent behavior. In addition to the amygdala, these circuits also involve the anterior cingulated cortex and regions of the prefrontal cortex. Excessive reactivity in the amygdala coupled with inadequate prefrontal regulation serves to increase the likelihood of aggressive behavior. Developmental alterations in prefrontal-subcortical circuitry as well as neuromodulatory and hormonal abnormality appear to play a role. Imbalance in testosterone/serotonin and testosterone/cortisol ratios (e.g., increased testosterone levels and reduced cortisol levels) increases the propensity toward aggression because of reduced activation of the neural circuitry of impulse control and self-regulation. Serotonin facilitates prefrontal inhibition, and thus insufficient serotonergic activity can enhance aggression. Genetic predisposition to aggression appears to be deeply affected by the polymorphic genetic variants of the serotoninergic system that influences serotonin levels in the central and peripheral nervous system, biological effects of this hormone, and rate of serotonin production, synaptic release and degradation. Among these variants, functional polymorphisms in the monoamine oxidase A (MAOA) and serotonin transporter (5-HTT) may be of particular importance due to the relationship between these polymorphic variants and anatomical changes in the limbic system of aggressive people. Furthermore, functional variants of MAOA and 5-HTT are capable of mediating the influence of environmental factors on aggression-related traits. In this review, we consider genetic determinants of human aggression, with special emphasis on genes involved in serotonin and dopamine metabolism and function. |
Audience | Academic |
Author | Chekhonin, Vladimir P. Pavlov, Konstantin A. Chistiakov, Dimitry A. |
Author_xml | – sequence: 1 givenname: Konstantin A. surname: Pavlov fullname: Pavlov, Konstantin A. organization: Department of Fundamental and Applied Neurobiology, Serbsky State Research Center of Forensic and Social Psychiatry – sequence: 2 givenname: Dimitry A. surname: Chistiakov fullname: Chistiakov, Dimitry A. email: dimitry.chistiakov@lycos.com organization: Department of Medicinal Nanobiotechnology, Pirogov Russian State Medical University – sequence: 3 givenname: Vladimir P. surname: Chekhonin fullname: Chekhonin, Vladimir P. organization: Department of Medicinal Nanobiotechnology, Pirogov Russian State Medical University, Department of Fundamental and Applied Neurobiology, Serbsky State Research Center of Forensic and Social Psychiatry |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/21994088$$D View this record in MEDLINE/PubMed |
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ISSN | 1234-1983 |
IngestDate | Mon Jul 21 11:09:01 EDT 2025 Fri Jul 11 06:40:32 EDT 2025 Tue Jun 17 21:55:38 EDT 2025 Tue Jun 10 20:25:57 EDT 2025 Thu Jan 02 22:31:48 EST 2025 Sun Jul 06 05:04:30 EDT 2025 Thu Apr 24 22:56:44 EDT 2025 Fri Feb 21 02:40:13 EST 2025 |
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Issue | 1 |
Keywords | Impulsivity Association Dopamine Serotonin Aggression Polymorphism |
Language | English |
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PublicationDate | 2012-02-01 |
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PublicationPlace | Berlin/Heidelberg |
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PublicationTitle | Journal of applied genetics |
PublicationTitleAbbrev | J Appl Genetics |
PublicationTitleAlternate | J Appl Genet |
PublicationYear | 2012 |
Publisher | Springer-Verlag Springer |
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Snippet | Human aggression/impulsivity-related traits have a complex background that is greatly influenced by genetic and non-genetic factors. The relationship between... |
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SubjectTerms | aggression Aggression - physiology amine oxidase (flavin-containing) amygdala Animal Genetics and Genomics anxiety Behavior Biomedical and Life Sciences cortex Dopamine Dopamine - genetics Dopamine - metabolism environmental factors genes Genetic Determinism Genetic Markers genetic polymorphism Genetic Predisposition to Disease genetics Human Genetics Human Genetics • Review Humans Impulsive Behavior Impulsive Behavior - genetics Impulsive Behavior - metabolism Indexing in process Life Sciences Membrane Transport Proteins Membrane Transport Proteins - genetics Membrane Transport Proteins - metabolism metabolism Microbial Genetics and Genomics Monoamine Oxidase Monoamine Oxidase - genetics Monoamine Oxidase - metabolism Neural circuitry Neurophysiology peripheral nervous system Physiological aspects physiology Plant Genetics and Genomics Receptors, Estrogen Receptors, Estrogen - genetics Receptors, Estrogen - physiology Serotonin Serotonin - genetics Serotonin - metabolism Serotonin Plasma Membrane Transport Proteins Serotonin Plasma Membrane Transport Proteins - genetics Serotonin Plasma Membrane Transport Proteins - metabolism Sex Factors Stress, Physiological Testosterone Testosterone - genetics Testosterone - metabolism |
Title | Genetic determinants of aggression and impulsivity in humans |
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