In utero programming of the dopamine system: behavior, neuroanatomy & epigenetics
In utero programming of the dopamine system: behavior, neuroanatomy & epigenetics
批准号:
8585101
负责人:
TERESA M REYES
金额:
$39.6万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-12-01 至 2015-11-30
关键词:
AffectAnimal ExperimentationAnimal ModelAnimalsAttentionAttention deficit hyperactivity disorderBehaviorBehavioralBrainCardiovascular systemCell Differentiation processChromatinClinicalCongenital neurologic anomaliesDNA MethylationDNA MethyltransferaseDNA Modification MethylasesDataDevelopmentDopamineDopaminergic CellEarly DiagnosisEarly InterventionEmbryoEpigenetic ProcessExhibitsFaceFetal Growth RetardationFunctional disorderGene ExpressionGenesGrantGrowthHumanHyperactive behaviorImmunohistochemistryImpulsivityIn Situ HybridizationInfantInterventionInvestigationKnowledgeLightLinkLiteratureLow Birth Weight InfantMapsMeasuresMetabolicMethionineMethyl-CpG-Binding Protein 2MethylationMicrodialysisModelingMorbidity - disease rateMusNeuraxisNeuroanatomyNeuronsNucleus AccumbensOutcomePatientsPhenotypePlayPrefrontal CortexProtein BiosynthesisProtein-Restricted DietReaction TimeRewardsRiskRodentRoleSchizophreniaSignal TransductionSmall for Gestational Age InfantSpecificityStimulusTechnologyTestingVentral Tegmental Areaaddictionbehavior changebrain behaviordisabilitydopamine systemdopaminergic neuronextracellularfeedinggenome wide association studygenome-widegenome-wide analysisimprintin uteroinattentioninsightmortalitymouse modelneurobehavioralneuron developmentnoveloffspringoverexpressionpreferencepregnantprogramsprotein expressionpublic health relevancereceptor functionresearch studyresponsereward processing
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Intrauterine growth retardation (IUGR) affects approximately 10% of all US infants. These small-for- gestational age (SGA) babies face increased risk for immediate morbidity and mortality, as well as long-term neurobehavioral disabilities (e.g., attention deficit hyperactivity disorder (ADHD), addiction, schizophrenia). While adverse metabolic and cardiovascular outcomes have been well characterized in these infants, the coincident neurobehavioral disabilities and specific central nervous system (CNS) abnormalities have received significantly less attention. The mechanisms linking IUGR and neurobehavioral disabilities are poorly understood and warrant further investigation, as this knowledge is critical for early diagnosis and intervention. To shed light on these issues, we propose the integration of behavioral, neuroanatomical, and epigenetic approaches to understand the long-term CNS impact of IUGR. Using a well-characterized rodent IUGR model (low protein diet fed to pregnant mice), we have found evidence for behavioral components of ADHD, including altered reward processing and hyperactivity. These behaviors involve dopamine (DA), and in both animal models of and human patients with ADHD, alterations in DA signaling have been documented. Our IUGR offspring have altered expression of genes that control dopamine synthesis and activity, suggesting that dopaminergic function is also altered as a result of the low protein diet and may underlie the observed neurobehavioral changes. We have also identified hypomethylation and increased expression of CDKN1c in IUGR animals, a gene critical for dopaminergic cell differentiation, which may alter the developmental trajectory of dopaminergic neurons. Additionally, we observe altered methylation, both globally and in a gene-specific manner, as well as significant increases in the expression of genes that play an important role in DNA methylation, including DNA methyltransferase 1 (DNMT1) and methyl CpG binding protein 2 (MeCP2). This proposal will test the central hypothesis that maternal low protein diet directly affects DNA methylation in the developing CNS, leading to behavioral changes and dopamine dysfunction, in a manner similar to what is observed in ADHD. In four aims, experiments will (1) test the hypothesis that IUGR animals demonstrate a behavioral profile consistent with ADHD (2) examine dopamine expression and function within the mesolimbic/ mesocortical circuitry (3) determine whether Cdkn1c overexpressing mice replicate the behavioral or gene expression phenotype of the IUGR mice and (4) complete a genome-wide screen of differentially methylated genes in the CNS of IUGR mice.
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DOI:
10.1016/j.ijdevneu.2016.09.008
发表时间:
2018-03
期刊:
International journal of developmental neuroscience : the official journal of the International Society for Developmental Neuroscience
影响因子:
--
作者:
[Thanos PK, Zhuo J, Robison L, Kim R, Ananth M, Choai I, Grunseich A, Grissom NM, George R, Delis F, Reyes TM]
通讯作者:
Reyes TM
DOI:
10.1016/j.neubiorev.2014.12.009
发表时间:
2015-11
期刊:
Neuroscience and biobehavioral reviews
影响因子:
8.2
作者:
[Hale MW, Spencer SJ, Conti B, Jasoni CL, Kent S, Radler ME, Reyes TM, Sominsky L]
通讯作者:
Sominsky L
DOI:
10.1016/j.ijdevneu.2012.11.006
发表时间:
2013-10
期刊:
International journal of developmental neuroscience : the official journal of the International Society for Developmental Neuroscience
影响因子:
--
作者:
[Grissom NM, Reyes TM]
通讯作者:
Reyes TM
DOI:
10.1016/j.neuroscience.2016.04.002
发表时间:
2016-06-21
期刊:
Neuroscience
影响因子:
3.3
作者:
[Carlin JL, McKee SE, Hill-Smith T, Grissom NM, George R, Lucki I, Reyes TM]
通讯作者:
Reyes TM
Setting the "clock": importance of maternal diet.
设置“时钟”:产妇饮食的重要性。
DOI:
10.1210/en.2010-0144
发表时间:
2010
期刊:
Endocrinology
影响因子:
4.8
作者:
[Reyes,TeresaM, Simmons,RebeccaA]
通讯作者:
Simmons,RebeccaA
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海外基金