Exome array analysis identifies new loci and low-frequency variants influencing insulin processing and secretion

JR Huyghe, AU Jackson, MP Fogarty, ML Buchkovich… - Nature …, 2013 - nature.com
JR Huyghe, AU Jackson, MP Fogarty, ML Buchkovich, A Stančáková, HM Stringham, X Sim
Nature genetics, 2013nature.com
Insulin secretion has a crucial role in glucose homeostasis, and failure to secrete sufficient
insulin is a hallmark of type 2 diabetes. Genome-wide association studies (GWAS) have
identified loci contributing to insulin processing and secretion,; however, a substantial
fraction of the genetic contribution remains undefined. To examine low-frequency (minor
allele frequency (MAF) 0.5–5%) and rare (MAF< 0.5%) nonsynonymous variants, we
analyzed exome array data in 8,229 nondiabetic Finnish males using the Illumina …
Abstract
Insulin secretion has a crucial role in glucose homeostasis, and failure to secrete sufficient insulin is a hallmark of type 2 diabetes. Genome-wide association studies (GWAS) have identified loci contributing to insulin processing and secretion,; however, a substantial fraction of the genetic contribution remains undefined. To examine low-frequency (minor allele frequency (MAF) 0.5–5%) and rare (MAF < 0.5%) nonsynonymous variants, we analyzed exome array data in 8,229 nondiabetic Finnish males using the Illumina HumanExome Beadchip. We identified low-frequency coding variants associated with fasting proinsulin concentrations at the SGSM2 and MADD GWAS loci and three new genes with low-frequency variants associated with fasting proinsulin or insulinogenic index: TBC1D30, KANK1 and PAM. We also show that the interpretation of single-variant and gene-based tests needs to consider the effects of noncoding SNPs both nearby and megabases away. This study demonstrates that exome array genotyping is a valuable approach to identify low-frequency variants that contribute to complex traits.
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