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1.
Mol Cell ; 84(4): 621-639.e9, 2024 Feb 15.
Article in English | MEDLINE | ID: mdl-38244545

ABSTRACT

The DNA-binding protein SATB2 is genetically linked to human intelligence. We studied its influence on the three-dimensional (3D) epigenome by mapping chromatin interactions and accessibility in control versus SATB2-deficient cortical neurons. We find that SATB2 affects the chromatin looping between enhancers and promoters of neuronal-activity-regulated genes, thus influencing their expression. It also alters A/B compartments, topologically associating domains, and frequently interacting regions. Genes linked to SATB2-dependent 3D genome changes are implicated in highly specialized neuronal functions and contribute to cognitive ability and risk for neuropsychiatric and neurodevelopmental disorders. Non-coding DNA regions with a SATB2-dependent structure are enriched for common variants associated with educational attainment, intelligence, and schizophrenia. Our data establish SATB2 as a cell-type-specific 3D genome modulator, which operates both independently and in cooperation with CCCTC-binding factor (CTCF) to set up the chromatin landscape of pyramidal neurons for cognitive processes.


Subject(s)
Matrix Attachment Region Binding Proteins , Transcription Factors , Humans , Transcription Factors/genetics , Transcription Factors/metabolism , Neurons/metabolism , CCCTC-Binding Factor/metabolism , Chromatin/genetics , Chromatin/metabolism , Genome , Cognition , Matrix Attachment Region Binding Proteins/genetics , Matrix Attachment Region Binding Proteins/metabolism
2.
PLoS Genet ; 20(9): e1011093, 2024 Sep.
Article in English | MEDLINE | ID: mdl-39259737

ABSTRACT

Myocyte Enhancer Factor 2C (MEF2C) is a transcription factor that plays a crucial role in neurogenesis and synapse development. Genetic studies have identified MEF2C as a gene that influences cognition and risk for neuropsychiatric disorders, including autism spectrum disorder (ASD) and schizophrenia (SCZ). Here, we investigated the involvement of MEF2C in these phenotypes using human-derived neural stem cells (NSCs) and glutamatergic induced neurons (iNs), which represented early and late neurodevelopmental stages. For these cellular models, MEF2C function had previously been disrupted, either by direct or indirect mutation, and gene expression assayed using RNA-seq. We integrated these RNA-seq data with MEF2C ChIP-seq data to identify dysregulated direct target genes of MEF2C in the NSCs and iNs models. Several MEF2C direct target gene-sets were enriched for SNP-based heritability for intelligence, educational attainment and SCZ, as well as being enriched for genes containing rare de novo mutations reported in ASD and/or developmental disorders. These gene-sets are enriched in both excitatory and inhibitory neurons in the prenatal and adult brain and are involved in a wide range of biological processes including neuron generation, differentiation and development, as well as mitochondrial function and energy production. We observed a trans expression quantitative trait locus (eQTL) effect of a single SNP at MEF2C (rs6893807, which is associated with IQ) on the expression of a target gene, BNIP3L. BNIP3L is a prioritized risk gene from the largest genome-wide association study of SCZ and has a function in mitophagy in mitochondria. Overall, our analysis reveals that either direct or indirect disruption of MEF2C dysregulates sets of genes that contain multiple alleles associated with SCZ risk and cognitive function and implicates neuron development and mitochondrial function in the etiology of these phenotypes.

3.
Hum Mol Genet ; 32(22): 3194-3203, 2023 11 03.
Article in English | MEDLINE | ID: mdl-37672226

ABSTRACT

The myocyte enhancer factor 2 C (MEF2C) gene encodes a transcription factor important for neurogenesis and synapse development and contains common variants associated with intelligence (IQ) and educational attainment (EA). Here, we took gene expression data from the mouse cortex of a Mef2c mouse model with a heterozygous DNA binding-deficient mutation of Mef2c (Mef2c-het) and combined these data with MEF2C ChIP-seq data from cortical neurons and single-cell data from the mouse brain. This enabled us to create a set of genes that were differentially regulated in Mef2c-het mice, represented direct target genes of MEF2C and had elevated in expression in cortical neurons. We found this gene-set to be enriched for genes containing common genetic variation associated with IQ and EA. Genes within this gene-set that were down-regulated, i.e. have reduced expression in Mef2c-het mice versus controls, were specifically significantly enriched for both EA and IQ associated genes. These down-regulated genes were enriched for functionality in the adenylyl cyclase signalling system, which is known to positively regulate synaptic transmission and has been linked to learning and memory. Within the adenylyl cyclase signalling system, three genes regulated by MEF2C, CRHR1, RGS6, and GABRG3, are associated at genome-wide significant levels with IQ and/or EA. Our results indicate that genetic variation in MEF2C and its direct target genes within cortical neurons contribute to variance in cognition within the general population, and the molecular mechanisms involved include the adenylyl cyclase signalling system's role in synaptic function.


Subject(s)
Adenylyl Cyclases , Neurons , Humans , Mice , Animals , Adenylyl Cyclases/genetics , Neurons/metabolism , MEF2 Transcription Factors/genetics , Educational Status , Genetic Variation
4.
EMBO J ; 40(3): e103701, 2021 02 01.
Article in English | MEDLINE | ID: mdl-33319920

ABSTRACT

SATB2 is a schizophrenia risk gene and is genetically associated with human intelligence. How it affects cognition at molecular level is currently unknown. Here, we show that interactions between SATB2, a chromosomal scaffolding protein, and the inner nuclear membrane protein LEMD2 orchestrate the response of pyramidal neurons to neuronal activation. Exposure to novel environment in vivo causes changes in nuclear shape of CA1 hippocampal neurons via a SATB2-dependent mechanism. The activity-driven plasticity of the nuclear envelope requires not only SATB2, but also its protein interactor LEMD2 and the ESCRT-III/VPS4 membrane-remodeling complex. Furthermore, LEMD2 depletion in cortical neurons, similar to SATB2 ablation, affects neuronal activity-dependent regulation of multiple rapid and delayed primary response genes. In human genetic data, LEMD2-regulated genes are enriched for de novo mutations reported in intellectual disability and schizophrenia and are, like SATB2-regulated genes, enriched for common variants associated with schizophrenia and cognitive function. Hence, interactions between SATB2 and the inner nuclear membrane protein LEMD2 influence gene expression programs in pyramidal neurons that are linked to cognitive ability and psychiatric disorder etiology.


Subject(s)
Gene Regulatory Networks , Hippocampus/cytology , Intellectual Disability/genetics , Matrix Attachment Region Binding Proteins/metabolism , Membrane Proteins/metabolism , Mutation , Nuclear Proteins/metabolism , Schizophrenia/genetics , Transcription Factors/metabolism , ATPases Associated with Diverse Cellular Activities/metabolism , Animals , Cell Nucleus/metabolism , Cell Plasticity , Cells, Cultured , Cognition , Endosomal Sorting Complexes Required for Transport/metabolism , HeLa Cells , Hippocampus/metabolism , Humans , Intellectual Disability/metabolism , Male , Matrix Attachment Region Binding Proteins/chemistry , Matrix Attachment Region Binding Proteins/genetics , Membrane Proteins/chemistry , Membrane Proteins/genetics , Mice , Neurons/cytology , Neurons/metabolism , Nuclear Envelope/metabolism , Nuclear Proteins/chemistry , Nuclear Proteins/genetics , Schizophrenia/metabolism , Transcription Factors/chemistry , Transcription Factors/genetics , Vacuolar Proton-Translocating ATPases/metabolism
5.
Brain Behav Immun ; 115: 26-37, 2024 01.
Article in English | MEDLINE | ID: mdl-37748567

ABSTRACT

Recent studies have reported a negative association between exposure to childhood trauma, including physical neglect, and cognitive functioning in patients with schizophrenia. Childhood trauma has been found to influence immune functioning, which may contribute to the risk of schizophrenia and cognitive symptoms of the disorder. In this study, we aimed to test the hypothesis that physical neglect is associated with cognitive ability, and that this association is mediated by a combined latent measure of inflammatory response, and moderated by higher genetic risk for schizophrenia. The study included 279 Irish participants, comprising 102 patients and 177 healthy participants. Structural equation modelling was used to perform mediation and moderation analyses. Inflammatory response was measured via basal plasma levels of IL-6, TNF-α, and CRP, and cognitive performance was assessed across three domains: full-scale IQ, logical memory, and the emotion recognition task. Genetic variation for schizophrenia was estimated using a genome-wide polygenic score based on genome-wide association study summary statistics. The results showed that inflammatory response mediated the association between physical neglect and all measures of cognitive functioning, and explained considerably more variance than any of the inflammatory markers alone. Furthermore, genetic risk for schizophrenia was observed to moderate the direct pathway between physical neglect and measures of non-social cognitive functioning in both patient and healthy participants. However, genetic risk did not moderate the mediated pathway associated with inflammatory response. Therefore, we conclude that the mediating role of inflammatory response and the moderating role of higher genetic risk may independently influence the association between adverse early life experiences and cognitive function in patients and healthy participants.


Subject(s)
Adverse Childhood Experiences , Schizophrenia , Humans , Genome-Wide Association Study , Healthy Volunteers , Cognition/physiology
6.
Article in English | MEDLINE | ID: mdl-38549512

ABSTRACT

Chronotype is a proxy sleep measure that has been associated with neuropsychiatric disorders. By investigating how chronotype influences risk for neuropsychiatric disorders and vice versa, we may identify modifiable risk factors for each phenotype. Here we used Mendelian randomization (MR), to explore causal effects by (1) studying the causal relationships between neuropsychiatric disorders and chronotype and (2) characterizing the genetic components of these phenotypes. Firstly, we investigated if a causal role exists between five neuropsychiatric disorders and chronotype using the largest genome-wide association studies (GWAS) available. Secondly, we integrated data from expression quantitative trait loci (eQTLs) to investigate the role of gene expression alterations on these phenotypes. Evening chronotype was causal for increased risk of schizophrenia and autism spectrum disorder and schizophrenia was causal for a tendency toward evening chronotype. We identified 12 eQTLs where gene expression changes in brain or blood were causal for one of the phenotypes, including two eQTLs for SNX19 in hippocampus and hypothalamus that were causal for schizophrenia. These findings provide important evidence for the complex, bidirectional relationship that exists between a sleep-based phenotype and neuropsychiatric disorders, and use gene expression data to identify causal roles for genes at associated loci.

7.
Hum Mol Genet ; 30(11): 961-970, 2021 05 31.
Article in English | MEDLINE | ID: mdl-32975584

ABSTRACT

Myocyte enhancer factor 2 C (MEF2C) is an important transcription factor during neurodevelopment. Mutation or deletion of MEF2C causes intellectual disability (ID), and common variants within MEF2C are associated with cognitive function and schizophrenia risk. We investigated if genes influenced by MEF2C during neurodevelopment are enriched for genes associated with neurodevelopmental phenotypes and if this can be leveraged to identify biological mechanisms and individual brain cell types affected. We used a set of 1055 genes that were differentially expressed in the adult mouse brain following early embryonic deletion of Mef2c in excitatory cortical neurons. Using genome-wide association studies data, we found these differentially expressed genes (DEGs) to be enriched for genes associated with schizophrenia, intelligence and educational attainment but not autism spectrum disorder (ASD). For this gene set, genes that overlap with target genes of the Fragile X mental retardation protein (FMRP) are a major driver of these enrichments. Using trios data, we found these DEGs to be enriched for genes containing de novo mutations reported in ASD and ID, but not schizophrenia. Using single-cell RNA sequencing data, we identified that a number of different excitatory glutamatergic neurons in the cortex were enriched for these DEGs including deep layer pyramidal cells and cells in the retrosplenial cortex, entorhinal cortex and subiculum, and these cell types are also enriched for FMRP target genes. The involvement of MEF2C and FMRP in synapse elimination suggests that disruption of this process in these cell types during neurodevelopment contributes to cognitive function and risk of neurodevelopmental disorders.


Subject(s)
Brain/metabolism , Intellectual Disability/genetics , Neurodevelopmental Disorders/genetics , Animals , Autism Spectrum Disorder/genetics , Autism Spectrum Disorder/pathology , Gene Expression Regulation/genetics , Genome-Wide Association Study , Humans , Intellectual Disability/physiopathology , MEF2 Transcription Factors/genetics , Mice , Neurodevelopmental Disorders/pathology , Neurons/metabolism , Neurons/pathology , Schizophrenia/genetics , Schizophrenia/pathology , Single-Cell Analysis
8.
Hum Mol Genet ; 29(3): 407-417, 2020 02 01.
Article in English | MEDLINE | ID: mdl-31868218

ABSTRACT

Mutations in genes that encode centrosomal/ciliary proteins cause severe cognitive deficits, while common single-nucleotide polymorphisms in these genes are associated with schizophrenia (SZ) and cognition in genome-wide association studies. The role of these genes in neuropsychiatric disorders is unknown. The ciliopathy gene SDCCAG8 is associated with SZ and educational attainment (EA). Genome editing of SDCCAG8 caused defects in primary ciliogenesis and cilium-dependent cell signalling. Transcriptomic analysis of SDCCAG8-deficient cells identified differentially expressed genes that are enriched in neurodevelopmental processes such as generation of neurons and synapse organization. These processes are enriched for genes associated with SZ, human intelligence (IQ) and EA. Phenotypic analysis of SDCCAG8-deficent neuronal cells revealed impaired migration and neuronal differentiation. These data implicate ciliary signalling in the aetiology of SZ and cognitive dysfunction. We found that centrosomal/ciliary genes are enriched for association with IQ, suggesting altered gene regulation as a general model for neurodevelopmental impacts of centrosomal/ciliary genes.


Subject(s)
Autoantigens/genetics , Cognition Disorders/pathology , Gene Expression Regulation , Genome-Wide Association Study , Mutation , Neoplasm Proteins/genetics , Polymorphism, Single Nucleotide , Schizophrenia/pathology , Cognition Disorders/etiology , Cognition Disorders/genetics , Humans , Schizophrenia/etiology , Schizophrenia/genetics
9.
PLoS Genet ; 15(2): e1007890, 2019 02.
Article in English | MEDLINE | ID: mdl-30726206

ABSTRACT

During CNS development, the nuclear protein SATB2 is expressed in superficial cortical layers and determines projection neuron identity. In the adult CNS, SATB2 is expressed in pyramidal neurons of all cortical layers and is a regulator of synaptic plasticity and long-term memory. Common variation in SATB2 locus confers risk of schizophrenia, whereas rare, de novo structural and single nucleotide variants cause severe intellectual disability and absent or limited speech. To characterize differences in SATB2 molecular function in developing vs adult neocortex, we isolated SATB2 protein interactomes at the two ontogenetic stages and identified multiple novel SATB2 interactors. SATB2 interactomes are highly enriched for proteins that stabilize de novo chromatin loops. The comparison between the neonatal and adult SATB2 protein complexes indicates a developmental shift in SATB2 molecular function, from transcriptional repression towards organization of chromosomal superstructure. Accordingly, gene sets regulated by SATB2 in the neocortex of neonatal and adult mice show limited overlap. Genes encoding SATB2 protein interactors were grouped for gene set analysis of human GWAS data. Common variants associated with human cognitive ability are enriched within the genes encoding adult but not neonatal SATB2 interactors. Our data support a shift in the function of SATB2 in cortex over lifetime and indicate that regulation of spatial chromatin architecture by the SATB2 interactome contributes to cognitive function in the general population.


Subject(s)
Cognition/physiology , Matrix Attachment Region Binding Proteins/genetics , Neocortex/physiology , Transcription Factors/genetics , Adult , Animals , Humans , Memory, Long-Term/physiology , Mice , Mice, Inbred C57BL , Neurons/physiology , Polymorphism, Single Nucleotide/genetics , Transcription, Genetic/genetics
10.
Brain Behav Immun ; 98: 388-396, 2021 11.
Article in English | MEDLINE | ID: mdl-34242739

ABSTRACT

OBJECTIVE: Exposure to childhood trauma (CT) is associated with cognitive impairment in schizophrenia, and deficits in social cognition in particular. Here, we sought to test whether IL-6 mediated the association between CT and social cognition both directly, and sequentially via altered default mode network (DMN) connectivity. METHODS: Three-hundred-and-eleven participants (104 patients and 207 healthy participants) were included, with MRI data acquired in a subset of n = 147. CT was measured using the childhood trauma questionnaire (CTQ). IL-6 was measured in both plasma and in toll like receptor (TLR) stimulated whole blood. The CANTAB emotion recognition task (ERT) was administered to assess social cognition, and cortical connectivity was assessed based on resting DMN connectivity. RESULTS: Higher IL-6 levels, measured both in plasma and in toll-like receptor (TLR-2) stimulated blood, were significantly correlated with higher CTQ scores and lower cognitive and social cognitive function. Plasma IL-6 was further observed to partly mediate the association between higher CT scores and lower emotion recognition performance (CTQ total: ßindirect -0.0234, 95% CI: -0.0573 to -0.0074; CTQ physical neglect: ßindirect = -0.0316, 95% CI: -0.0741 to -0.0049). Finally, sequential mediation was observed between plasma IL-6 levels and DMN connectivity in mediating the effects of higher CTQ on lower social cognitive function (ßindirect = -0.0618, 95% CI: -0.1523 to -0.285). CONCLUSION: This work suggests that previous associations between CT and social cognition may be partly mediated via an increased inflammatory response. IL-6's association with changes in DMN activity further suggest at least one cortical network via which CT related effects on cognition may be transmitted.


Subject(s)
Adverse Childhood Experiences , Schizophrenia , Brain , Brain Mapping , Cognition , Humans , Interleukin-6 , Magnetic Resonance Imaging , Neuropsychological Tests , Schizophrenia/diagnostic imaging
11.
PLoS Genet ; 14(7): e1007515, 2018 07.
Article in English | MEDLINE | ID: mdl-30040823

ABSTRACT

SATB2 is associated with schizophrenia and is an important transcription factor regulating neocortical organization and circuitry. Rare mutations in SATB2 cause a syndrome that includes developmental delay, and mouse studies identify an important role for SATB2 in learning and memory. Interacting partners BCL11B and GATAD2A are also schizophrenia risk genes indicating that other genes interacting with or are regulated by SATB2 are making a contribution to schizophrenia and cognition. We used data from Satb2 mouse models to generate three gene-sets that contain genes either functionally related to SATB2 or targeted by SATB2 at different stages of development. Each was tested for enrichment using the largest available genome-wide association studies (GWAS) datasets for schizophrenia and educational attainment (EA) and enrichment analysis was also performed for schizophrenia and other neurodevelopmental disorders using data from rare variant sequencing studies. These SATB2 gene-sets were enriched for genes containing common variants associated with schizophrenia and EA, and were enriched for genes containing rare variants reported in studies of schizophrenia, autism and intellectual disability. In the developing cortex, genes targeted by SATB2 based on ChIP-seq data, and functionally affected when SATB2 is not expressed based on differential expression analysis using RNA-seq data, show strong enrichment for genes associated with EA. For genes expressed in the hippocampus or at the synapse, those targeted by SATB2 are more strongly enriched for genes associated EA than gene-sets not targeted by SATB2. This study demonstrates that single gene findings from GWAS can provide important insights to pathobiological processes. In this case we find evidence that genes influenced by SATB2 and involved in synaptic transmission, axon guidance and formation of the corpus callosum are contributing to schizophrenia and cognition.


Subject(s)
Cognition , Gene Expression Regulation, Developmental , Matrix Attachment Region Binding Proteins/metabolism , Neurodevelopmental Disorders/genetics , Schizophrenia/genetics , Transcription Factors/metabolism , Academic Success , Animals , Axon Guidance/genetics , Corpus Callosum/growth & development , Corpus Callosum/metabolism , Datasets as Topic , Disease Models, Animal , Female , Genetic Predisposition to Disease , Genomics/methods , Hippocampus/growth & development , Hippocampus/metabolism , Humans , Matrix Attachment Region Binding Proteins/genetics , Mice , Mutation , Neurodevelopmental Disorders/pathology , Schizophrenia/pathology , Synaptic Transmission/genetics , Transcription Factors/genetics
12.
J Clin Psychol ; 77(1): 241-253, 2021 01.
Article in English | MEDLINE | ID: mdl-32783219

ABSTRACT

OBJECTIVE: This study investigated associations between childhood trauma, parental bonding, and social cognition (i.e., Theory of Mind and emotion recognition) in patients with schizophrenia and healthy adults. METHODS: Using cross-sectional data, we examined the recollections of childhood trauma experiences and social cognitive abilities in 74 patients with schizophrenia and 116 healthy adults. RESULTS: Patients had significantly higher scores compared with healthy participants on childhood trauma, and lower scores on parental bonding and social cognitive measures. Physical neglect was found to be the strongest predictor of emotion recognition impairments in both groups. Optimal parental bonding attenuated the impact of childhood trauma on emotion recognition. CONCLUSION: The present study provides evidence of an association between physical neglect and emotion recognition in patients with schizophrenia and healthy individuals and shows that both childhood trauma and parental bonding may influence social cognitive development. Psychosocial interventions should be developed to prevent and mitigate the long-term effects of childhood adversities.


Subject(s)
Schizophrenia , Theory of Mind , Adult , Cognition , Cross-Sectional Studies , Emotions , Humans , Parents , Social Cognition , Social Perception
13.
Br J Psychiatry ; 216(5): 275-279, 2020 05.
Article in English | MEDLINE | ID: mdl-31964429

ABSTRACT

BACKGROUND: Copy number variants (CNVs) play a significant role in disease pathogenesis in a small subset of individuals with schizophrenia (~2.5%). Chromosomal microarray testing is a first-tier genetic test for many neurodevelopmental disorders. Similar testing could be useful in schizophrenia. AIMS: To determine whether clinically identifiable phenotypic features could be used to successfully model schizophrenia-associated (SCZ-associated) CNV carrier status in a large schizophrenia cohort. METHOD: Logistic regression and receiver operating characteristic (ROC) curves tested the accuracy of readily identifiable phenotypic features in modelling SCZ-associated CNV status in a discovery data-set of 1215 individuals with psychosis. A replication analysis was undertaken in a second psychosis data-set (n = 479). RESULTS: In the discovery cohort, specific learning disorder (OR = 8.12; 95% CI 1.16-34.88, P = 0.012), developmental delay (OR = 5.19; 95% CI 1.58-14.76, P = 0.003) and comorbid neurodevelopmental disorder (OR = 5.87; 95% CI 1.28-19.69, P = 0.009) were significant independent variables in modelling positive carrier status for a SCZ-associated CNV, with an area under the ROC (AUROC) of 74.2% (95% CI 61.9-86.4%). A model constructed from the discovery cohort including developmental delay and comorbid neurodevelopmental disorder variables resulted in an AUROC of 83% (95% CI 52.0-100.0%) for the replication cohort. CONCLUSIONS: These findings suggest that careful clinical history taking to document specific neurodevelopmental features may be informative in screening for individuals with schizophrenia who are at higher risk of carrying known SCZ-associated CNVs. Identification of genomic disorders in these individuals is likely to have clinical benefits similar to those demonstrated for other neurodevelopmental disorders.


Subject(s)
DNA Copy Number Variations/genetics , Medical History Taking , Schizophrenia/diagnosis , Schizophrenia/genetics , Female , Humans , Logistic Models , Male , Neurodevelopmental Disorders/diagnosis , Neurodevelopmental Disorders/genetics , ROC Curve , Retrospective Studies , Young Adult
14.
Curr Psychiatry Rep ; 22(1): 2, 2020 01 10.
Article in English | MEDLINE | ID: mdl-31925558

ABSTRACT

PURPOSE OF REVIEW: We review recent progress in uncovering the complex genetic architecture of cognition, arising primarily from genome-wide association studies (GWAS). We explore the genetic correlations between cognitive performance and neuropsychiatric disorders, the genetic and environmental factors associated with age-related cognitive decline, and speculate about the future role of genomics in the understanding of cognitive processes. RECENT FINDINGS: Improvements in genomic methods, and the increasing availability of large datasets via consortia cooperation, have led to a greater understanding of the role played by common and rare variants in the genomics of cognition, the highly polygenic basis of cognitive function and dysfunction, and the multiple biological processes involved. Recent research has aided in our understanding of the complex biological nature of genomics of cognition. Further development of data banks and techniques to analyze this data hold significant promise for understanding cognitive ability, and for treating cognitively related disability.


Subject(s)
Cognition , Cognitive Dysfunction/genetics , Genetic Predisposition to Disease , Genomics , Genome-Wide Association Study , Humans , Multifactorial Inheritance
15.
Soc Psychiatry Psychiatr Epidemiol ; 55(6): 723-733, 2020 Jun.
Article in English | MEDLINE | ID: mdl-31897578

ABSTRACT

BACKGROUND: Early life adversity (ELA) is a significant risk factor for mental health disorders. One hypothesised mechanism by which this occurs is via an effect on immune response. In this analysis of epidemiological data, we tested whether ELA was associated with cognitive performance, and if so, whether these effects were influenced by immune function. METHODS: We investigated the longitudinal relationship between ELA, inflammatory markers, and cognition in data from Avon Longitudinal Study of Parents And Children (ALSPAC; n ~ 5000). ELA was defined in terms of physical/emotional abuse, harsh parenting, or domestic violence before 5 years. Social cognition was measured in terms of theory of mind, and general cognitive ability was measured using IQ. Inflammatory markers included serum C-reactive protein and interleukin-6 levels. RESULTS: A significant association was observed between IQ and harsh parenting, whereby children who were physically disciplined had lower IQ scores (accounting for relevant social factors). Both immune markers were associated with variation in cognition, however, neither accounted for the effects of ELA on cognition. DISCUSSION: This study highlights the impact of ELA on cognition. In the absence of evidence that these effects are explained by inflammation, other mechanisms by which the effects of ELA are mediated are discussed.


Subject(s)
Adverse Childhood Experiences , C-Reactive Protein/analysis , Cognition , Interleukin-6/blood , Mental Disorders/blood , Adolescent , Adult , Biomarkers/blood , Child , Child, Preschool , Female , Humans , Inflammation , Longitudinal Studies , Male , Mental Disorders/epidemiology , Mental Disorders/psychology , Risk Factors , Theory of Mind , United Kingdom/epidemiology , Young Adult
16.
Am J Med Genet B Neuropsychiatr Genet ; 183(6): 370-379, 2020 09.
Article in English | MEDLINE | ID: mdl-32729240

ABSTRACT

While abnormal neurodevelopment contributes to schizophrenia (SCZ) risk, there is also evidence to support a role for immune dysfunction in SCZ. BCL11B, associated with SCZ in genome-wide association study (GWAS), is a transcription factor that regulates the differentiation and development of cells in the central nervous and immune systems. Here, we use functional genomics data from studies of BCL11B to investigate the contribution of neuronal and immune processes to SCZ pathophysiology. We identified the gene targets of BCL11B in brain striatal cells (n = 223 genes), double negative 4 (DN4) developing T cells (n = 114 genes) and double positive (DP) developing T cells (n = 518 genes) using an integrated analysis of RNA-seq and ChIP-seq data. No gene-set was enriched for genes containing common variants associated with SCZ but the DP gene-set was enriched for genes containing missense de novo mutations (DNMs; p = .001) using data from 3,447 SCZ trios. Post hoc analysis revealed the enrichment to be stronger for DP genes negatively regulated by BCL11B. Biological processes enriched for genes negatively regulated by BCL11B in DP gene-set included immune system development and cytokine signaling. These analyses, leveraging a GWAS-identified SCZ risk gene and data on gene expression and transcription factor binding, indicate that DNMs in immune pathways contribute to SCZ risk.


Subject(s)
Repressor Proteins/metabolism , Schizophrenia/genetics , Tumor Suppressor Proteins/metabolism , Animals , Databases, Genetic , Female , Gene Expression/genetics , Gene Expression Regulation/genetics , Genetic Predisposition to Disease/genetics , Genome-Wide Association Study/methods , Humans , Male , Mice , Mutation/genetics , Mutation, Missense/genetics , Repressor Proteins/genetics , Schizophrenia/metabolism , T-Lymphocytes/metabolism , Transcription Factors/genetics , Tumor Suppressor Proteins/genetics , Exome Sequencing/methods
17.
Am J Med Genet B Neuropsychiatr Genet ; 183(8): 445-453, 2020 12.
Article in English | MEDLINE | ID: mdl-32918526

ABSTRACT

Multiple genome-wide association studies of schizophrenia have reported associations between genetic variants within the MHC region and disease risk, an association that has been partially accounted for by alleles of the complement component 4 (C4) gene. Following on previous findings of association between both C4 and other complement-related variants and memory function, we tested the hypothesis that polygenic scores calculated based on identified schizophrenia risk alleles within the "complement" system would be broadly associated with memory function and associated brain structure. We tested this using a polygenic risk score (PRS) calculated for complement genes, but excluding C4 variants. Higher complement-based PRS scores were observed to be associated with lower memory scores for the sample as a whole (N = 620, F change = 8.25; p = .004). A significant association between higher PRS and lower hippocampal volume was also observed (N = 216, R2 change = 0.016, p = .015). However, after correcting for further testing of association with the more general indices of cortical thickness, surface area or total brain volume, none of which were associated with complement, the association with hippocampal volume became non-significant. A post-hoc analysis of hippocampal subfields suggested an association between complement PRS and several hippocampal subfields, findings that appeared to be particularly driven by the patient sample. In conclusion, our study yielded suggestive evidence of association between complement-based schizophrenia PRS and variation in memory function and hippocampal volume.


Subject(s)
Brain/pathology , Cerebral Cortex/pathology , Genetic Markers , Immunologic Factors/genetics , Multifactorial Inheritance , Polymorphism, Single Nucleotide , Psychotic Disorders/pathology , Adult , Brain/metabolism , Case-Control Studies , Cerebral Cortex/metabolism , Complement C4/genetics , Female , Follow-Up Studies , Genetic Predisposition to Disease , Genome-Wide Association Study , Humans , Ireland/epidemiology , Male , Prognosis , Psychotic Disorders/epidemiology , Psychotic Disorders/genetics , Risk Factors
18.
BMC Genomics ; 20(1): 525, 2019 Jun 26.
Article in English | MEDLINE | ID: mdl-31242854

ABSTRACT

BACKGROUND: Feed efficiency is an important economic and environmental trait in beef production, which can be measured in terms of residual feed intake (RFI). Cattle selected for low-RFI (feed efficient) have similar production levels but decreased feed intake, while also emitting less methane. RFI is difficult and expensive to measure and is not widely adopted in beef production systems. However, development of DNA-based biomarkers for RFI may facilitate its adoption in genomic-assisted breeding programmes. Cattle have been shown to re-rank in terms of RFI across diets and age, while also RFI varies by breed. Therefore, we used RNA-Seq technology to investigate the hepatic transcriptome of RFI-divergent Charolais (CH) and Holstein-Friesian (HF) steers across three dietary phases to identify genes and biological pathways associated with RFI regardless of diet or breed. RESULTS: Residual feed intake was measured during a high-concentrate phase, a zero-grazed grass phase and a final high-concentrate phase. In total, 322 and 33 differentially expressed genes (DEGs) were identified across all diets for CH and HF steers, respectively. Three genes, GADD45G, HP and MID1IP1, were differentially expressed in CH when both the high-concentrate zero-grazed grass diet were offered. Two canonical pathways were enriched across all diets for CH steers. These canonical pathways were related to immune function. CONCLUSIONS: The absence of common differentially expressed genes across all dietary phases and breeds in this study supports previous reports of the re-ranking of animals in terms of RFI when offered differing diets over their lifetime. However, we have identified biological processes such as the immune response and lipid metabolism as potentially associated with RFI divergence emphasising the previously reported roles of these biological processes with respect to RFI.


Subject(s)
Animal Feed , Cattle/genetics , Diet , Gene Expression Profiling , Liver/metabolism , Red Meat , Animals , Cattle/classification , Cattle/metabolism , Male , RNA-Seq
19.
PLoS Genet ; 12(10): e1006343, 2016 Oct.
Article in English | MEDLINE | ID: mdl-27792727

ABSTRACT

It is well known that inbreeding increases the risk of recessive monogenic diseases, but it is less certain whether it contributes to the etiology of complex diseases such as schizophrenia. One way to estimate the effects of inbreeding is to examine the association between disease diagnosis and genome-wide autozygosity estimated using runs of homozygosity (ROH) in genome-wide single nucleotide polymorphism arrays. Using data for schizophrenia from the Psychiatric Genomics Consortium (n = 21,868), Keller et al. (2012) estimated that the odds of developing schizophrenia increased by approximately 17% for every additional percent of the genome that is autozygous (ß = 16.1, CI(ß) = [6.93, 25.7], Z = 3.44, p = 0.0006). Here we describe replication results from 22 independent schizophrenia case-control datasets from the Psychiatric Genomics Consortium (n = 39,830). Using the same ROH calling thresholds and procedures as Keller et al. (2012), we were unable to replicate the significant association between ROH burden and schizophrenia in the independent PGC phase II data, although the effect was in the predicted direction, and the combined (original + replication) dataset yielded an attenuated but significant relationship between Froh and schizophrenia (ß = 4.86,CI(ß) = [0.90,8.83],Z = 2.40,p = 0.02). Since Keller et al. (2012), several studies reported inconsistent association of ROH burden with complex traits, particularly in case-control data. These conflicting results might suggest that the effects of autozygosity are confounded by various factors, such as socioeconomic status, education, urbanicity, and religiosity, which may be associated with both real inbreeding and the outcome measures of interest.


Subject(s)
Consanguinity , Genome-Wide Association Study , Schizophrenia/genetics , Female , Genome, Human , Genomics , Homozygote , Humans , Male , Polymorphism, Single Nucleotide , Schizophrenia/epidemiology , Schizophrenia/pathology
20.
Am J Med Genet B Neuropsychiatr Genet ; 180(3): 223-231, 2019 04.
Article in English | MEDLINE | ID: mdl-30801977

ABSTRACT

Genome-wide association studies (GWASs) are highly effective at identifying common risk variants for schizophrenia. Rare risk variants are also important contributors to schizophrenia etiology but, with the exception of large copy number variants, are difficult to detect with GWAS. Exome and genome sequencing, which have accelerated the study of rare variants, are expensive so alternative methods are needed to aid detection of rare variants. Here we re-analyze an Irish schizophrenia GWAS dataset (n = 3,473) by performing identity-by-descent (IBD) mapping followed by exome sequencing of individuals identified as sharing risk haplotypes to search for rare risk variants in coding regions. We identified 45 rare haplotypes (>1 cM) that were significantly more common in cases than controls. By exome sequencing 105 haplotype carriers, we investigated these haplotypes for functional coding variants that could be tested for association in independent GWAS samples. We identified one rare missense variant in PCNT but did not find statistical support for an association with schizophrenia in a replication analysis. However, IBD mapping can prioritize both individual samples and genomic regions for follow-up analysis but genome rather than exome sequencing may be more effective at detecting risk variants on rare haplotypes.


Subject(s)
Exome Sequencing/methods , Schizophrenia/genetics , Sequence Analysis, DNA/methods , Adult , Case-Control Studies , Chromosome Mapping , DNA Copy Number Variations , Databases, Genetic , Exome/genetics , Female , Genetic Predisposition to Disease/genetics , Genome-Wide Association Study/methods , Genotype , Haplotypes , Humans , Male , Middle Aged , Risk Factors , Schizophrenia/metabolism
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