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Published on: August 5, 2017
Dissociable deficits of executive function caused by gestational adversity are linked to specific transcriptional
Nicola M Grissom1, Christopher T Herdt1, Jeffery Desilets1
1Department of Pharmacology, Perelman School of Medicine, Institute for Translational Medicine and Therapeutics, University of Pennsylvania, 10-131 Smilow Center for Translational Research, Philadelphia, PA, USA.
Insights
Maternal malnutrition during pregnancy, through high-fat or low-protein diets, causes distinct neurodevelopmental deficits in offspring. These include altered reward processing and executive functions like attention and impulse control, linked to epigenetic changes in the brain.
Area of Science:
- Neuroscience
- Developmental Biology
- Nutritional Science
Background:
- Poor maternal nutrition during pregnancy is linked to neurodevelopmental disorders like ADHD, schizophrenia, and autism.
- These disorders often involve abnormal reward processing and executive function deficits.
Purpose of the Study:
- To investigate how maternal malnutrition affects offspring's reward processing and executive functions.
- To identify molecular mechanisms, particularly epigenetic changes in the medial prefrontal cortex (PFC), underlying these deficits.
Main Methods:
- Mice were exposed to high-fat or low-protein diets during gestation.
- Offspring underwent behavioral testing for reward processing (operant conditioning, Pavlovian approach) and executive functions (5-choice serial reaction time task).
- Medial prefrontal cortex (PFC) gene expression was analyzed using targeted PCR arrays.
Main Results:
- High-fat diet offspring showed delayed learning, reduced motivation, and impulsivity.
- Low-protein diet offspring exhibited heightened cue-predicting-reward salience (sign-tracking) and inattention.
- Overexpression of epigenetic regulators, including DNMT1, OPRD1, CNR1, and COMT, in the PFC correlated with specific behavioral deficits.
Conclusions:
- Maternal malnutrition leads to dissociable deficits in reward processing and executive functions in offspring.
- These deficits are associated with specific patterns of epigenetic dysregulation in the medial prefrontal cortex.
- The findings highlight the critical role of maternal nutrition in neurodevelopment and offer molecular targets for understanding these disorders.
Abstract:
Poor-quality maternal diet during pregnancy, and subsequent gestational growth disturbances in the offspring, have been implicated in the etiology of multiple neurodevelopmental disorders, including ADHD, schizophrenia, and autism. These disorders are characterized, in part, by abnormalities in responses to reward and errors of executive function. Here, we demonstrate dissociable deficits in reward processing and executive function in male and female mice, solely due to maternal malnutrition via high-fat or low-protein diets. Gestational exposure to a high-fat diet delayed acquisition of a fixed ratio response, and decreased motivation as assessed by progressive ratio. In contrast, offspring of a low-protein diet displayed no deficits in operant learning, but were more prone to assign salience to a cue that predicts reward (sign-tracking) in a Pavlovian-conditioned approach task. In the 5-choice serial reaction time task (5-CSRTT), gestational exposure to a high-fat diet promoted impulsivity, whereas exposure to a low-protein diet led to marked inattention. These dissociable executive function deficits are known to be mediated by the medial prefrontal cortex (PFC), which displays markers of epigenetic dysregulation in neurodevelopmental disorders. Following behavioral characterization, we assayed PFC gene expression using a targeted PCR array and found that both maternal diets increased overall transcription in PFC. Cluster analysis of the relationships between individual transcripts and behavioral outcomes revealed a cluster of primarily epigenetic modulators, whose overexpression was linked to executive function deficits. The overexpression of four genes, DNA methyltransferase 1 (DNMT1), δ-opioid receptor (OPRD1), cannabinoid receptor 1 (CNR1), and catechol-o-methyltransferase (COMT), was strongly associated with overall poor performance. All 5-CSRTT deficits were associated with DNMT1 upregulation, whereas impulsive behavior could be dissociated from inattention by overexpression of OPRD1 or COMT, respectively, as well as a distinct cluster of epigenetic regulators. These data provide molecular support for dissociable domains of executive function.
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