Genome-wide association and transcriptome analysis reveals serum ghrelin to be linked with GFRAL
Dirk Alexander Wittekind, Markus Scholz, J\"urgen Kratzsch, Markus, L\"offler, Katrin Horn, Holger Kirsten, Veronica Witte, Arno Villringer,, Michael Kluge

TL;DR
This study identifies genetic loci associated with serum ghrelin levels and reveals a functional link between ghrelin and the GFRAL receptor, advancing understanding of weight regulation mechanisms.
Contribution
The paper uncovers novel genetic loci influencing serum ghrelin and demonstrates a link between ghrelin and GFRAL expression, integrating genetic and transcriptomic insights.
Findings
Three loci significantly associated with serum ghrelin levels.
Negative association between ghrelin and GFRAL expression.
Positive association between ghrelin and RPL36 expression.
Abstract
Objective: Ghrelin is an orexigenic peptide hormone involved in the regulation of energy homeostasis, food intake and glucose metabolism. Serum levels increase anticipating a meal and fall afterwards. Underlying genetic mechanisms of the ghrelin secretion are unknown. Methods: Total serum ghrelin was measured in 1501 subjects selected from the population-based LIFE-ADULT-sample after an overnight fast. A genome-wide association study (GWAS) was performed. Gene-based expression association analyses (transcriptome-wide association study (TWAS)) were done using MetaXcan. Results: In the GWAS, three loci reached genome-wide significance: the WW-domain containing the oxidoreductase-gene (WWOX; p=1.80E-10) on chromosome 16q23.3-24.1 (SNP: rs76823993); the Contactin-Associated Protein-Like 2 gene (CNTNAP2; p=9.0E-9) on chromosome 7q35-q36 (SNP: rs192092592) and the Ghrelin And Obestatin…
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Taxonomy
TopicsGDF15 and Related Biomarkers · Nuclear Receptors and Signaling · Genetics and Neurodevelopmental Disorders
