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Paper Details

Subcutaneous adipose tissue splice quantitative trait loci reveal differences in isoform usage associated with cardiometabolic traits.
Am J Hum Genet
13
2022
15,397 genes, 59, 595 genes, DNA binding, GWAS loci, NR1H3 sQTL splice, NR1H3 sQTL splice junction, NR1H3 transcription factor, Subcutaneous adipose tissue splice quantitative trait loci, alternate gene, alternate gene isoforms, alternative splice product, cholesterol, eQTLs, exon, exon eQTL, expression QTLs, gene eQTL, high-density lipoprotein cholesterol, intron, men, proxy variant, sQTL, sQTL splice junction, sQTLs, splice junction, splice junction quantitative trait loci, splice junctions, waist-hip ratio
Author NameAffiliation
Victoria A ParsonsUniversity of North Carolina
Terrence S FureyUniversity of North Carolina
Terrence S FureyUniversity of North Carolina
Johanna KuusistoKuopio University Hospital, University of Eastern Finland
Francis S CollinsNational Human Genome Research Institute, National Institutes of Health
Francis S CollinsNational Human Genome Research Institute, National Institutes of Health
Michael BoehnkeDepartment of Biostatistics and Center for Statistical Genetics, School of Public Health, University of Michigan ann arbor
Markku LaaksoKuopio University Hospital, University of Eastern Finland
P??ivi PajukantaInstitute for Precision Health, David Geffen School of Medicine at university of california los angeles
P??ivi PajukantaInstitute for Precision Health, David Geffen School of Medicine at university of california los angeles
Karen L MohlkeUniversity of North Carolina
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