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Single-cell RNA sequencing identifies celltype-specific cis-eQTLs and co-expression QTLs.


ABSTRACT: Genome-wide association studies have identified thousands of genetic variants that are associated with disease 1 . Most of these variants have small effect sizes, but their downstream expression effects, so-called expression quantitative trait loci (eQTLs), are often large 2 and celltype-specific3-5. To identify these celltype-specific eQTLs using an unbiased approach, we used single-cell RNA sequencing to generate expression profiles of ~25,000 peripheral blood mononuclear cells from 45 donors. We identified previously reported cis-eQTLs, but also identified new celltype-specific cis-eQTLs. Finally, we generated personalized co-expression networks and identified genetic variants that significantly alter co-expression relationships (which we termed 'co-expression QTLs'). Single-cell eQTL analysis thus allows for the identification of genetic variants that impact regulatory networks.

SUBMITTER: van der Wijst MGP 

PROVIDER: S-EPMC5905669 | biostudies-literature | 2018 Apr

REPOSITORIES: biostudies-literature

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Single-cell RNA sequencing identifies celltype-specific cis-eQTLs and co-expression QTLs.

van der Wijst Monique G P MGP   Brugge Harm H   de Vries Dylan H DH   Deelen Patrick P   Swertz Morris A MA   Franke Lude L  

Nature genetics 20180402 4


Genome-wide association studies have identified thousands of genetic variants that are associated with disease <sup>1</sup> . Most of these variants have small effect sizes, but their downstream expression effects, so-called expression quantitative trait loci (eQTLs), are often large <sup>2</sup> and celltype-specific<sup>3-5</sup>. To identify these celltype-specific eQTLs using an unbiased approach, we used single-cell RNA sequencing to generate expression profiles of ~25,000 peripheral blood  ...[more]

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