2016
Whole-exome sequencing in obsessive-compulsive disorder identifies rare mutations in immunological and neurodevelopmental pathways
Cappi C, Brentani H, Lima L, Sanders SJ, Zai G, Diniz BJ, Reis VN, Hounie AG, Conceição do Rosário M, Mariani D, Requena GL, Puga R, Souza-Duran FL, Shavitt RG, Pauls DL, Miguel EC, Fernandez TV. Whole-exome sequencing in obsessive-compulsive disorder identifies rare mutations in immunological and neurodevelopmental pathways. Translational Psychiatry 2016, 6: e764-e764. PMID: 27023170, PMCID: PMC4872454, DOI: 10.1038/tp.2016.30.Peer-Reviewed Original ResearchConceptsSingle nucleotide variantsPPI networkPathway analysisProtein-protein interaction networkGenome-wide association studiesNovo single nucleotide variantsParticular biological pathwaysRare genetic variationDisease gene prioritizationDirect molecular interactionWhole-exome sequencing studiesGene discoveryNetwork genesSpecific risk genesNetwork enrichmentGenetic variationInteraction networksGene prioritizationCandidate genesAssociation studiesBiological pathwaysSequencing platformsSequencing studiesWhole-exome sequencingGenes
2013
Gene variants associated with antisocial behaviour: a latent variable approach
Bentley MJ, Lin H, Fernandez TV, Lee M, Yrigollen CM, Pakstis AJ, Katsovich L, Olds DL, Grigorenko EL, Leckman JF. Gene variants associated with antisocial behaviour: a latent variable approach. Journal Of Child Psychology And Psychiatry 2013, 54: 1074-1085. PMID: 23822756, PMCID: PMC3766409, DOI: 10.1111/jcpp.12109.Peer-Reviewed Original ResearchConceptsRisk allelesGenetic risk allelesSingle nucleotide polymorphismsGene variantsNurse home visitation programAge 15 yearsStress response pathwaysCholinergic signalingDrug useCommon genetic variantsPutative risk allelesAntisocial behaviorVariable scoresResponse pathwaysGenetic polymorphismsVisitation programMolecular networksPathway analysisStress responseGenesGenetic variablesMolecular levelGenetic variantsGenetic Susceptibility in Tourette Syndrome
Fernandez T, State M. Genetic Susceptibility in Tourette Syndrome. 2013, 137-155. DOI: 10.1093/med/9780199796267.003.0007.ChaptersRare copy number variantsCopy number variantsAssociation studiesGenome-wide association studiesGenome-wide detectionNumber variantsCommon complex traitsCandidate gene association studiesHuman genetic studiesComplex genetic contributionsRare variant studiesEtiology of TSCausative genetic lociGene association studiesComplex traitsNonparametric linkage analysisGene mappingDeleterious mutationsEarlier segregation analysisGenetic lociHDC genePathway analysisTS familyGenetic studiesLinkage analysis
2011
Rare Copy Number Variants in Tourette Syndrome Disrupt Genes in Histaminergic Pathways and Overlap with Autism
Fernandez TV, Sanders SJ, Yurkiewicz IR, Ercan-Sencicek AG, Kim YS, Fishman DO, Raubeson MJ, Song Y, Yasuno K, Ho WS, Bilguvar K, Glessner J, Chu SH, Leckman JF, King RA, Gilbert DL, Heiman GA, Tischfield JA, Hoekstra PJ, Devlin B, Hakonarson H, Mane SM, Günel M, State MW. Rare Copy Number Variants in Tourette Syndrome Disrupt Genes in Histaminergic Pathways and Overlap with Autism. Biological Psychiatry 2011, 71: 392-402. PMID: 22169095, PMCID: PMC3282144, DOI: 10.1016/j.biopsych.2011.09.034.Peer-Reviewed Original ResearchConceptsCopy number variationsRare copy number variationsNovel risk regionsEnrichment of genesGamma-aminobutyric acid receptor genesNervous system developmentEtiology of TSParent-child triosRare copy number variantsCopy number variantsGene mappingPathway analysisDe novo eventsAxon guidanceCell adhesionMolecular pathwaysNumber variationsRelevant pathwaysCNV analysisNumber variantsGenesReceptor geneDe novoNovo eventsPathway