Tissue-specific genetic control of splicing: implications for the study of complex traits.

dc.contributor.author

Heinzen, Erin L

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Ge, Dongliang

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Cronin, Kenneth D

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Maia, Jessica M

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Shianna, Kevin V

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Gabriel, Willow N

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Welsh-Bohmer, Kathleen A

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Hulette, Christine M

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Denny, Thomas N

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Goldstein, David B

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Liu, Edison

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United States

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2017-06-02T12:38:42Z

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2008-12-23

dc.description.abstract

Numerous genome-wide screens for polymorphisms that influence gene expression have provided key insights into the genetic control of transcription. Despite this work, the relevance of specific polymorphisms to in vivo expression and splicing remains unclear. We carried out the first genome-wide screen, to our knowledge, for SNPs that associate with alternative splicing and gene expression in human primary cells, evaluating 93 autopsy-collected cortical brain tissue samples with no defined neuropsychiatric condition and 80 peripheral blood mononucleated cell samples collected from living healthy donors. We identified 23 high confidence associations with total expression and 80 with alternative splicing as reflected by expression levels of specific exons. Fewer than 50% of the implicated SNPs however show effects in both tissue types, reflecting strong evidence for distinct genetic control of splicing and expression in the two tissue types. The data generated here also suggest the possibility that splicing effects may be responsible for up to 13 out of 84 reported genome-wide significant associations with human traits. These results emphasize the importance of establishing a database of polymorphisms affecting splicing and expression in primary tissue types and suggest that splicing effects may be of more phenotypic significance than overall gene expression changes.

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https://www.ncbi.nlm.nih.gov/pubmed/19222302

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08-PLBI-RA-1982

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1545-7885

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https://hdl.handle.net/10161/14735

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eng

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Public Library of Science (PLoS)

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PLoS Biol

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10.1371/journal.pbio.1000001

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Brain

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Exons

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Genome, Human

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Humans

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Leukocytes, Mononuclear

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Linkage Disequilibrium

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Organ Specificity

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Polymorphism, Single Nucleotide

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Principal Component Analysis

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Quantitative Trait Loci

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Quantitative Trait, Heritable

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RNA Splicing

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RNA, Messenger

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Regulatory Sequences, Nucleic Acid

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Reproducibility of Results

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Reverse Transcriptase Polymerase Chain Reaction

dc.title

Tissue-specific genetic control of splicing: implications for the study of complex traits.

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Journal article

duke.contributor.orcid

Welsh-Bohmer, Kathleen A|0000-0003-1824-0179

pubs.author-url

https://www.ncbi.nlm.nih.gov/pubmed/19222302

pubs.begin-page

e1

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12

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Basic Science Departments

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Clinical Science Departments

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Duke

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Duke Center for Human Genome Variation

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Duke Clinical Research Institute

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Duke Human Vaccine Institute

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Duke Institute for Brain Sciences

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Faculty

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Institutes and Centers

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Institutes and Provost's Academic Units

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Medicine

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Medicine, Duke Human Vaccine Institute

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Molecular Genetics and Microbiology

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Neurology

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Neurology, Behavioral Neurology

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Pathology

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Psychiatry & Behavioral Sciences

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Psychiatry & Behavioral Sciences, Geriatric Behavioral Health

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Psychology and Neuroscience

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School of Medicine

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Trinity College of Arts & Sciences

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University Institutes and Centers

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Published

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6

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