Genetic Mapping of Multiple Traits Identifies Novel Genes for Adiposity, Lipids, and Insulin Secretory Capacity in Outbred Rats

Author:

Hong-Le Thu1ORCID,Crouse Wesley L.2,Keele Gregory R.3,Holl Katie4,Seshie Osborne5,Tschannen Michael4,Craddock Ann6,Das Swapan K.5ORCID,Szalanczy Alexandria M.5,McDonald Bailey5,Grzybowski Michael4,Klotz Jason4,Sharma Neeraj K.5,Geurts Aron M.4,Key Chia-Chi Chuang5,Hawkins Gregory6,Valdar William2,Mott Richard1,Solberg Woods Leah C.5ORCID

Affiliation:

1. 1Genetics Institute, University College London, London, U.K.

2. 2Department of Genetics, University of North Carolina at Chapel Hill, Chapel Hill, NC

3. 3The Jackson Laboratory, Bar Harbor, ME

4. 4Medical College of Wisconsin, Milwaukee, WI

5. 5Department of Internal Medicine, Wake Forest University School of Medicine, Winston-Salem, NC

6. 6Department of Biochemistry, Wake Forest University School of Medicine, Winston-Salem, NC

Abstract

Despite the successes of human genome-wide association studies, the causal genes underlying most metabolic traits remain unclear. We used outbred heterogeneous stock (HS) rats, coupled with expression data and mediation analysis, to identify quantitative trait loci (QTLs) and candidate gene mediators for adiposity, glucose tolerance, serum lipids, and other metabolic traits. Physiological traits were measured in 1,519 male HS rats, with liver and adipose transcriptomes measured in >410 rats. Genotypes were imputed from low-coverage whole-genome sequencing. Linear mixed models were used to detect physiological and expression QTLs (pQTLs and eQTLs, respectively), using both single nucleotide polymorphism (SNP)– and haplotype-based models for pQTL mapping. Genes with cis-eQTLs that overlapped pQTLs were assessed as causal candidates through mediation analysis. We identified 14 SNP-based pQTLs and 19 haplotype-based pQTLs, of which 10 were in common. Using mediation, we identified the following genes as candidate mediators of pQTLs: Grk5 for fat pad weight and serum triglyceride pQTLs on Chr1, Krtcap3 for fat pad weight and serum triglyceride pQTLs on Chr6, Ilrun for a fat pad weight pQTL on Chr20, and Rfx6 for a whole pancreatic insulin content pQTL on Chr20. Furthermore, we verified Grk5 and Ktrcap3 using gene knockdown/out models, thereby shedding light on novel regulators of obesity.

Funder

SYSTEMS GENETICS OF ADIPOSITY IN OUTBRED RATS

SYSTEMS GENETICS TO IDENTIFY NEURONAL GENES FOR DIET-INDUCED OBESITY

National Institute of General Medical Sciences

GENOME-WIDE FINE-MAPPING OF METABOLIC TRAITS IN HETEROGENEOUS STOCK RATS

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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