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Polymorphic Cis- and Trans-Regulation of Human Gene Expression
Author(s) -
Vivian G. Cheung,
Renuka R. Nayak,
Isabel X. Wang,
Susannah Elwyn,
Sarah M. Cousins,
Michael P. Morley,
Richard S. Spielman
Publication year - 2010
Publication title -
plos biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 4.127
H-Index - 271
eISSN - 1545-7885
pISSN - 1544-9173
DOI - 10.1371/journal.pbio.1000480
Subject(s) - biology , genetics , gene , regulation of gene expression , gene expression , gene knockdown , phenotype , regulatory sequence , regulator gene , allele , transcriptome , computational biology , gene expression profiling , human genome , genome
Expression levels of human genes vary extensively among individuals. This variation facilitates analyses of expression levels as quantitative phenotypes in genetic studies where the entire genome can be scanned for regulators without prior knowledge of the regulatory mechanisms, thus enabling the identification of unknown regulatory relationships. Here, we carried out such genetic analyses with a large sample size and identified cis- and trans-acting polymorphic regulators for about 1,000 human genes. We validated the cis-acting regulators by demonstrating differential allelic expression with sequencing of transcriptomes (RNA-Seq) and the trans-regulators by gene knockdown, metabolic assays, and chromosome conformation capture analysis. The majority of the regulators act in trans to the target (regulated) genes. Most of these trans-regulators were not known to play a role in gene expression regulation. The identification of these regulators enabled the characterization of polymorphic regulation of human gene expression at a resolution that was unattainable in the past.

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