Novel and ultra-rare damaging variants in neuropeptide signaling are associated with disordered eating behaviors.

OBJECTIVE:Eating disorders develop through a combination of genetic vulnerability and environmental stress, however the genetic basis of this risk is unknown. METHODS:To understand the genetic basis of this risk, we performed whole exome sequencing on 93 unrelated individuals with eating disorders (...

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Main Authors: Michael Lutter, Ethan Bahl, Claire Hannah, Dabney Hofammann, Summer Acevedo, Huxing Cui, Carrie J McAdams, Jacob J Michaelson
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5573281?pdf=render
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spelling doaj-4b06b77a94bf4d7e89fd98d4b2ca737f2020-11-25T01:07:19ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01128e018155610.1371/journal.pone.0181556Novel and ultra-rare damaging variants in neuropeptide signaling are associated with disordered eating behaviors.Michael LutterEthan BahlClaire HannahDabney HofammannSummer AcevedoHuxing CuiCarrie J McAdamsJacob J MichaelsonOBJECTIVE:Eating disorders develop through a combination of genetic vulnerability and environmental stress, however the genetic basis of this risk is unknown. METHODS:To understand the genetic basis of this risk, we performed whole exome sequencing on 93 unrelated individuals with eating disorders (38 restricted-eating and 55 binge-eating) to identify novel damaging variants. Candidate genes with an excessive burden of predicted damaging variants were then prioritized based upon an unbiased, data-driven bioinformatic analysis. One top candidate pathway was empirically tested for therapeutic potential in a mouse model of binge-like eating. RESULTS:An excessive burden of novel damaging variants was identified in 186 genes in the restricted-eating group and 245 genes in the binge-eating group. This list is significantly enriched (OR = 4.6, p<0.0001) for genes involved in neuropeptide/neurotrophic pathways implicated in appetite regulation, including neurotensin-, glucagon-like peptide 1- and BDNF-signaling. Administration of the glucagon-like peptide 1 receptor agonist exendin-4 significantly reduced food intake in a mouse model of 'binge-like' eating. CONCLUSIONS:These findings implicate ultra-rare and novel damaging variants in neuropeptide/neurotropic factor signaling pathways in the development of eating disorder behaviors and identify glucagon-like peptide 1-receptor agonists as a potential treatment for binge eating.http://europepmc.org/articles/PMC5573281?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Michael Lutter
Ethan Bahl
Claire Hannah
Dabney Hofammann
Summer Acevedo
Huxing Cui
Carrie J McAdams
Jacob J Michaelson
spellingShingle Michael Lutter
Ethan Bahl
Claire Hannah
Dabney Hofammann
Summer Acevedo
Huxing Cui
Carrie J McAdams
Jacob J Michaelson
Novel and ultra-rare damaging variants in neuropeptide signaling are associated with disordered eating behaviors.
PLoS ONE
author_facet Michael Lutter
Ethan Bahl
Claire Hannah
Dabney Hofammann
Summer Acevedo
Huxing Cui
Carrie J McAdams
Jacob J Michaelson
author_sort Michael Lutter
title Novel and ultra-rare damaging variants in neuropeptide signaling are associated with disordered eating behaviors.
title_short Novel and ultra-rare damaging variants in neuropeptide signaling are associated with disordered eating behaviors.
title_full Novel and ultra-rare damaging variants in neuropeptide signaling are associated with disordered eating behaviors.
title_fullStr Novel and ultra-rare damaging variants in neuropeptide signaling are associated with disordered eating behaviors.
title_full_unstemmed Novel and ultra-rare damaging variants in neuropeptide signaling are associated with disordered eating behaviors.
title_sort novel and ultra-rare damaging variants in neuropeptide signaling are associated with disordered eating behaviors.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description OBJECTIVE:Eating disorders develop through a combination of genetic vulnerability and environmental stress, however the genetic basis of this risk is unknown. METHODS:To understand the genetic basis of this risk, we performed whole exome sequencing on 93 unrelated individuals with eating disorders (38 restricted-eating and 55 binge-eating) to identify novel damaging variants. Candidate genes with an excessive burden of predicted damaging variants were then prioritized based upon an unbiased, data-driven bioinformatic analysis. One top candidate pathway was empirically tested for therapeutic potential in a mouse model of binge-like eating. RESULTS:An excessive burden of novel damaging variants was identified in 186 genes in the restricted-eating group and 245 genes in the binge-eating group. This list is significantly enriched (OR = 4.6, p<0.0001) for genes involved in neuropeptide/neurotrophic pathways implicated in appetite regulation, including neurotensin-, glucagon-like peptide 1- and BDNF-signaling. Administration of the glucagon-like peptide 1 receptor agonist exendin-4 significantly reduced food intake in a mouse model of 'binge-like' eating. CONCLUSIONS:These findings implicate ultra-rare and novel damaging variants in neuropeptide/neurotropic factor signaling pathways in the development of eating disorder behaviors and identify glucagon-like peptide 1-receptor agonists as a potential treatment for binge eating.
url http://europepmc.org/articles/PMC5573281?pdf=render
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