Genome-wide analyses of parent of origin effects in three human disea
Genome-wide analyses of parent of origin effects in three human disea
批准号:
8626427
负责人:
Andrew James Sharp
金额:
$8.24万
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-04-01 至 2015-03-31
关键词:
AddressAffectAllelesAttention deficit hyperactivity disorderAutistic DisorderChildCollaborationsComplexDataData SetDetectionDiseaseDisease AssociationDisease susceptibilityFathersFramingham Heart StudyGenesGenomeGenotypeHeritabilityHeterozygoteHumanInheritance PatternsInheritedMetabolismMethodologyMethodsMothersMultiple SclerosisOdds RatioParentsPhenotypePilot ProjectsPredispositionPremature BirthPublishingRelative (related person)SamplingSusceptibility GeneTestingcleft lip and palatedatabase of Genotypes and Phenotypesdensitydisorder riskfetalgenetic variantgenome wide association studygenome-widehuman diseaseimprintinsightmaternal imprintnovelnovel strategiesoffspringoral cleftpublic health relevancetraittransmission process
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Although many genome-wide association studies (GWAS) have sought to identify genetic variants that are associated with disease, all such studies consider the two parental alleles as having identical effects. As a result, they are severely underpowered to detect effects such as imprinting that can operate differentially between the maternal and paternal alleles. We have developed novel SNP association methodologies that utilize mother/father/child trios, allowing the detection of parent of origin biases in both quantitative traits and disease association studies. We show that the use of these novel strategies that analyze disease associations separately for the maternal and paternal alleles are able to detect disease susceptibility genes that are missed using conventional GWAS approaches. In this way imprinting and other effects that can operate differentially between mother and father (e.g. maternal/fetal interactions) can be detected. In our preliminary data, we demonstrate the power of this approach to detect novel genes showing PofO effects in oral clefts. We now propose to apply this methodology to reanalyze in detail several large GWAS datasets for which SNP data from complete trios are available through The Database of Genotypes and Phenotypes (dbGAP). These studies will likely reveal novel PofO effects operating in Oral Cleft Lip/Palate (OCL/P), Attention Deficit Hyperactivity Disorder (ADHD) and Multiple Sclerosis (MS). This proposal will provide novel insights into the influence of imprinting
and maternal/fetal interactions in several human diseases.
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海外基金