Network properties of complex human disease genes identified through genome-wide association studies.

BACKGROUND: Previous studies of network properties of human disease genes have mainly focused on monogenic diseases or cancers and have suffered from discovery bias. Here we investigated the network properties of complex disease genes identified by genome-wide association studies (GWAs), thereby eli...

Full description

Bibliographic Details
Main Authors: Fredrik Barrenas, Sreenivas Chavali, Petter Holme, Reza Mobini, Mikael Benson
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2009-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2779513?pdf=render
id doaj-d39cc261b1f74882abeeb582b4a95692
record_format Article
spelling doaj-d39cc261b1f74882abeeb582b4a956922020-11-25T01:48:08ZengPublic Library of Science (PLoS)PLoS ONE1932-62032009-01-01411e809010.1371/journal.pone.0008090Network properties of complex human disease genes identified through genome-wide association studies.Fredrik BarrenasSreenivas ChavaliPetter HolmeReza MobiniMikael BensonBACKGROUND: Previous studies of network properties of human disease genes have mainly focused on monogenic diseases or cancers and have suffered from discovery bias. Here we investigated the network properties of complex disease genes identified by genome-wide association studies (GWAs), thereby eliminating discovery bias. PRINCIPAL FINDINGS: We derived a network of complex diseases (n = 54) and complex disease genes (n = 349) to explore the shared genetic architecture of complex diseases. We evaluated the centrality measures of complex disease genes in comparison with essential and monogenic disease genes in the human interactome. The complex disease network showed that diseases belonging to the same disease class do not always share common disease genes. A possible explanation could be that the variants with higher minor allele frequency and larger effect size identified using GWAs constitute disjoint parts of the allelic spectra of similar complex diseases. The complex disease gene network showed high modularity with the size of the largest component being smaller than expected from a randomized null-model. This is consistent with limited sharing of genes between diseases. Complex disease genes are less central than the essential and monogenic disease genes in the human interactome. Genes associated with the same disease, compared to genes associated with different diseases, more often tend to share a protein-protein interaction and a Gene Ontology Biological Process. CONCLUSIONS: This indicates that network neighbors of known disease genes form an important class of candidates for identifying novel genes for the same disease.http://europepmc.org/articles/PMC2779513?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Fredrik Barrenas
Sreenivas Chavali
Petter Holme
Reza Mobini
Mikael Benson
spellingShingle Fredrik Barrenas
Sreenivas Chavali
Petter Holme
Reza Mobini
Mikael Benson
Network properties of complex human disease genes identified through genome-wide association studies.
PLoS ONE
author_facet Fredrik Barrenas
Sreenivas Chavali
Petter Holme
Reza Mobini
Mikael Benson
author_sort Fredrik Barrenas
title Network properties of complex human disease genes identified through genome-wide association studies.
title_short Network properties of complex human disease genes identified through genome-wide association studies.
title_full Network properties of complex human disease genes identified through genome-wide association studies.
title_fullStr Network properties of complex human disease genes identified through genome-wide association studies.
title_full_unstemmed Network properties of complex human disease genes identified through genome-wide association studies.
title_sort network properties of complex human disease genes identified through genome-wide association studies.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2009-01-01
description BACKGROUND: Previous studies of network properties of human disease genes have mainly focused on monogenic diseases or cancers and have suffered from discovery bias. Here we investigated the network properties of complex disease genes identified by genome-wide association studies (GWAs), thereby eliminating discovery bias. PRINCIPAL FINDINGS: We derived a network of complex diseases (n = 54) and complex disease genes (n = 349) to explore the shared genetic architecture of complex diseases. We evaluated the centrality measures of complex disease genes in comparison with essential and monogenic disease genes in the human interactome. The complex disease network showed that diseases belonging to the same disease class do not always share common disease genes. A possible explanation could be that the variants with higher minor allele frequency and larger effect size identified using GWAs constitute disjoint parts of the allelic spectra of similar complex diseases. The complex disease gene network showed high modularity with the size of the largest component being smaller than expected from a randomized null-model. This is consistent with limited sharing of genes between diseases. Complex disease genes are less central than the essential and monogenic disease genes in the human interactome. Genes associated with the same disease, compared to genes associated with different diseases, more often tend to share a protein-protein interaction and a Gene Ontology Biological Process. CONCLUSIONS: This indicates that network neighbors of known disease genes form an important class of candidates for identifying novel genes for the same disease.
url http://europepmc.org/articles/PMC2779513?pdf=render
work_keys_str_mv AT fredrikbarrenas networkpropertiesofcomplexhumandiseasegenesidentifiedthroughgenomewideassociationstudies
AT sreenivaschavali networkpropertiesofcomplexhumandiseasegenesidentifiedthroughgenomewideassociationstudies
AT petterholme networkpropertiesofcomplexhumandiseasegenesidentifiedthroughgenomewideassociationstudies
AT rezamobini networkpropertiesofcomplexhumandiseasegenesidentifiedthroughgenomewideassociationstudies
AT mikaelbenson networkpropertiesofcomplexhumandiseasegenesidentifiedthroughgenomewideassociationstudies
_version_ 1725012709195382784