Cargando…

Influence of ROBO1 and RORA on Risk of Age-Related Macular Degeneration Reveals Genetically Distinct Phenotypes in Disease Pathophysiology

ROBO1 is a strong candidate gene for age-related macular degeneration (AMD) based upon its location under a linkage peak on chromosome 3p12, its expression pattern, and its purported function in a pathway that includes RORA, a gene previously associated with risk for neovascular AMD. Previously, we...

Descripción completa

Detalles Bibliográficos
Autores principales: Jun, Gyungah, Nicolaou, Michael, Morrison, Margaux A., Buros, Jacqueline, Morgan, Denise J., Radeke, Monte J., Yonekawa, Yoshihiro, Tsironi, Evangelia E., Kotoula, Maria G., Zacharaki, Fani, Mollema, Nissa, Yuan, Yang, Miller, Joan W., Haider, Neena B., Hageman, Gregory S., Kim, Ivana K., Schaumberg, Debra A., Farrer, Lindsay A., DeAngelis, Margaret M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3188561/
https://www.ncbi.nlm.nih.gov/pubmed/21998696
http://dx.doi.org/10.1371/journal.pone.0025775
_version_ 1782213395370475520
author Jun, Gyungah
Nicolaou, Michael
Morrison, Margaux A.
Buros, Jacqueline
Morgan, Denise J.
Radeke, Monte J.
Yonekawa, Yoshihiro
Tsironi, Evangelia E.
Kotoula, Maria G.
Zacharaki, Fani
Mollema, Nissa
Yuan, Yang
Miller, Joan W.
Haider, Neena B.
Hageman, Gregory S.
Kim, Ivana K.
Schaumberg, Debra A.
Farrer, Lindsay A.
DeAngelis, Margaret M.
author_facet Jun, Gyungah
Nicolaou, Michael
Morrison, Margaux A.
Buros, Jacqueline
Morgan, Denise J.
Radeke, Monte J.
Yonekawa, Yoshihiro
Tsironi, Evangelia E.
Kotoula, Maria G.
Zacharaki, Fani
Mollema, Nissa
Yuan, Yang
Miller, Joan W.
Haider, Neena B.
Hageman, Gregory S.
Kim, Ivana K.
Schaumberg, Debra A.
Farrer, Lindsay A.
DeAngelis, Margaret M.
author_sort Jun, Gyungah
collection PubMed
description ROBO1 is a strong candidate gene for age-related macular degeneration (AMD) based upon its location under a linkage peak on chromosome 3p12, its expression pattern, and its purported function in a pathway that includes RORA, a gene previously associated with risk for neovascular AMD. Previously, we observed that expression of ROBO1 and RORA is down-regulated among wet AMD cases, as compared to their unaffected siblings. Thus, we hypothesized that contribution of association signals in ROBO1, and interaction between these two genes may be important for both wet and dry AMD. We evaluated association of 19 single nucleotide polymorphisms (SNPs) in ROBO1 with wet and dry stages of AMD in a sibling cohort and a Greek case-control cohort containing 491 wet AMD cases, 174 dry AMD cases and 411 controls. Association signals and interaction results were replicated in an independent prospective cohort (1070 controls, 164 wet AMD cases, 293 dry AMD cases). The most significantly associated ROBO1 SNPs were rs1387665 under an additive model (meta P = 0.028) for wet AMD and rs9309833 under a recessive model (meta P = 6×10(−4)) for dry AMD. Further analyses revealed interaction between ROBO1 rs9309833 and RORA rs8034864 for both wet and dry AMD (interaction P<0.05). These studies were further supported by whole transcriptome expression profile studies from 66 human donor eyes and chromatin immunoprecipitation assays from mouse retinas. These findings suggest that distinct ROBO1 variants may influence the risk of wet and dry AMD, and the effects of ROBO1 on AMD risk may be modulated by RORA variants.
format Online
Article
Text
id pubmed-3188561
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-31885612011-10-13 Influence of ROBO1 and RORA on Risk of Age-Related Macular Degeneration Reveals Genetically Distinct Phenotypes in Disease Pathophysiology Jun, Gyungah Nicolaou, Michael Morrison, Margaux A. Buros, Jacqueline Morgan, Denise J. Radeke, Monte J. Yonekawa, Yoshihiro Tsironi, Evangelia E. Kotoula, Maria G. Zacharaki, Fani Mollema, Nissa Yuan, Yang Miller, Joan W. Haider, Neena B. Hageman, Gregory S. Kim, Ivana K. Schaumberg, Debra A. Farrer, Lindsay A. DeAngelis, Margaret M. PLoS One Research Article ROBO1 is a strong candidate gene for age-related macular degeneration (AMD) based upon its location under a linkage peak on chromosome 3p12, its expression pattern, and its purported function in a pathway that includes RORA, a gene previously associated with risk for neovascular AMD. Previously, we observed that expression of ROBO1 and RORA is down-regulated among wet AMD cases, as compared to their unaffected siblings. Thus, we hypothesized that contribution of association signals in ROBO1, and interaction between these two genes may be important for both wet and dry AMD. We evaluated association of 19 single nucleotide polymorphisms (SNPs) in ROBO1 with wet and dry stages of AMD in a sibling cohort and a Greek case-control cohort containing 491 wet AMD cases, 174 dry AMD cases and 411 controls. Association signals and interaction results were replicated in an independent prospective cohort (1070 controls, 164 wet AMD cases, 293 dry AMD cases). The most significantly associated ROBO1 SNPs were rs1387665 under an additive model (meta P = 0.028) for wet AMD and rs9309833 under a recessive model (meta P = 6×10(−4)) for dry AMD. Further analyses revealed interaction between ROBO1 rs9309833 and RORA rs8034864 for both wet and dry AMD (interaction P<0.05). These studies were further supported by whole transcriptome expression profile studies from 66 human donor eyes and chromatin immunoprecipitation assays from mouse retinas. These findings suggest that distinct ROBO1 variants may influence the risk of wet and dry AMD, and the effects of ROBO1 on AMD risk may be modulated by RORA variants. Public Library of Science 2011-10-06 /pmc/articles/PMC3188561/ /pubmed/21998696 http://dx.doi.org/10.1371/journal.pone.0025775 Text en Jun et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Jun, Gyungah
Nicolaou, Michael
Morrison, Margaux A.
Buros, Jacqueline
Morgan, Denise J.
Radeke, Monte J.
Yonekawa, Yoshihiro
Tsironi, Evangelia E.
Kotoula, Maria G.
Zacharaki, Fani
Mollema, Nissa
Yuan, Yang
Miller, Joan W.
Haider, Neena B.
Hageman, Gregory S.
Kim, Ivana K.
Schaumberg, Debra A.
Farrer, Lindsay A.
DeAngelis, Margaret M.
Influence of ROBO1 and RORA on Risk of Age-Related Macular Degeneration Reveals Genetically Distinct Phenotypes in Disease Pathophysiology
title Influence of ROBO1 and RORA on Risk of Age-Related Macular Degeneration Reveals Genetically Distinct Phenotypes in Disease Pathophysiology
title_full Influence of ROBO1 and RORA on Risk of Age-Related Macular Degeneration Reveals Genetically Distinct Phenotypes in Disease Pathophysiology
title_fullStr Influence of ROBO1 and RORA on Risk of Age-Related Macular Degeneration Reveals Genetically Distinct Phenotypes in Disease Pathophysiology
title_full_unstemmed Influence of ROBO1 and RORA on Risk of Age-Related Macular Degeneration Reveals Genetically Distinct Phenotypes in Disease Pathophysiology
title_short Influence of ROBO1 and RORA on Risk of Age-Related Macular Degeneration Reveals Genetically Distinct Phenotypes in Disease Pathophysiology
title_sort influence of robo1 and rora on risk of age-related macular degeneration reveals genetically distinct phenotypes in disease pathophysiology
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3188561/
https://www.ncbi.nlm.nih.gov/pubmed/21998696
http://dx.doi.org/10.1371/journal.pone.0025775
work_keys_str_mv AT jungyungah influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT nicolaoumichael influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT morrisonmargauxa influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT burosjacqueline influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT morgandenisej influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT radekemontej influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT yonekawayoshihiro influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT tsironievangeliae influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT kotoulamariag influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT zacharakifani influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT mollemanissa influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT yuanyang influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT millerjoanw influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT haiderneenab influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT hagemangregorys influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT kimivanak influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT schaumbergdebraa influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT farrerlindsaya influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology
AT deangelismargaretm influenceofrobo1androraonriskofagerelatedmaculardegenerationrevealsgeneticallydistinctphenotypesindiseasepathophysiology