Systems biology-based analysis implicates a novel role for vitamin D metabolism in the pathogenesis of age-related macular degeneration

<p>Abstract</p> <p>Vitamin D has been shown to have anti-angiogenic properties and to play a protective role in several types of cancer, including breast, prostate and cutaneous melanoma. Similarly, vitamin D levels have been shown to be protective for risk of a number of condition...

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Main Authors: Morrison Margaux A, Silveira Alexandra C, Huynh Nancy, Jun Gyungah, Smith Silvia E, Zacharaki Fani, Sato Hajime, Loomis Stephanie, Andreoli Michael T, Adams Scott M, Radeke Monte J, Jelcick Austin S, Yuan Yang, Tsiloulis Aristoteles N, Chatzoulis Dimitrios Z, Silvestri Giuliana, Kotoula Maria G, Tsironi Evangelia E, Hollis Bruce W, Chen Rui, Haider Neena B, Miller Joan W, Farrer Lindsay A, Hageman Gregory S, Kim Ivana K, Schaumberg Debra A, DeAngelis Margaret M
Format: Article
Language:English
Published: BMC 2011-10-01
Series:Human Genomics
Subjects:
Online Access:http://www.humgenomics.com/content/5/6/538
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spelling doaj-72a8f1a9031245739497f55674f32b512020-11-25T00:24:17ZengBMCHuman Genomics1479-73642011-10-015653856810.1186/1479-7364-5-6-538Systems biology-based analysis implicates a novel role for vitamin D metabolism in the pathogenesis of age-related macular degenerationMorrison Margaux ASilveira Alexandra CHuynh NancyJun GyungahSmith Silvia EZacharaki FaniSato HajimeLoomis StephanieAndreoli Michael TAdams Scott MRadeke Monte JJelcick Austin SYuan YangTsiloulis Aristoteles NChatzoulis Dimitrios ZSilvestri GiulianaKotoula Maria GTsironi Evangelia EHollis Bruce WChen RuiHaider Neena BMiller Joan WFarrer Lindsay AHageman Gregory SKim Ivana KSchaumberg Debra ADeAngelis Margaret M<p>Abstract</p> <p>Vitamin D has been shown to have anti-angiogenic properties and to play a protective role in several types of cancer, including breast, prostate and cutaneous melanoma. Similarly, vitamin D levels have been shown to be protective for risk of a number of conditions, including cardiovascular disease and chronic kidney disease, as well as numerous autoimmune disorders such as multiple sclerosis, inflammatory bowel diseases and type 1 diabetes mellitus. A study performed by Parekh <it>et al. </it>was the first to suggest a role for vitamin D in age-related macular degeneration (AMD) and showed a correlation between reduced serum vitamin D levels and risk for early AMD. Based on this study and the protective role of vitamin D in diseases with similar pathophysiology to AMD, we examined the role of vitamin D in a family-based cohort of 481 sibling pairs. Using extremely phenotypically discordant sibling pairs, initially we evaluated the association of neovascular AMD and vitamin D/sunlight-related epidemiological factors. After controlling for established AMD risk factors, including polymorphisms of the genes encoding complement factor H (<it>CFH</it>) and age-related maculopathy susceptibility 2/HtrA serine peptidase (<it>ARMS2/HTRA1</it>), and smoking history, we found that ultraviolet irradiance was protective for the development of neovascular AMD (<it>p </it>= 0.001). Although evaluation of serum vitamin D levels (25-hydroxyvitamin D [25(OH)D]) was higher in unaffected individuals than in their affected siblings, this finding did not reach statistical significance.</p> <p>Based on the relationship between ultraviolet irradiance and vitamin D production, we employed a candidate gene approach for evaluating common variation in key vitamin D pathway genes (the genes encoding the vitamin D receptor [<it>VDR</it>]; cytochrome P450, family 27, subfamily B, polypeptide 1 [<it>CYP27B1</it>]; cytochrome P450, family 24, subfamily A, polypeptide 1 [<it>CYP24A1</it>]; and <it>CYP27A1</it>) in this same family-based cohort. Initial findings were then validated and replicated in the extended family cohort, an unrelated case-control cohort from central Greece and a prospective nested case-control population from the Nurse's Health Study and Health Professionals Follow-Up Studies, which included patients with all subtypes of AMD for a total of 2,528 individuals. Single point variants in <it>CYP24A1 </it>(the gene encoding the catabolising enzyme of the vitamin D pathway) were demonstrated to influence AMD risk after controlling for smoking history, sex and age in all populations, both separately and, more importantly, in a meta-analysis. This is the first report demonstrating a genetic association between vitamin D metabolism and AMD risk. These findings were also supplemented with expression data from human donor eyes and human retinal cell lines. These data not only extend previous biological studies in the AMD field, but further emphasise common antecedents between several disorders with an inflammatory/immunogenic component such as cardiovascular disease, cancer and AMD.</p> http://www.humgenomics.com/content/5/6/538vitamin Dage-related macular degeneration
collection DOAJ
language English
format Article
sources DOAJ
author Morrison Margaux A
Silveira Alexandra C
Huynh Nancy
Jun Gyungah
Smith Silvia E
Zacharaki Fani
Sato Hajime
Loomis Stephanie
Andreoli Michael T
Adams Scott M
Radeke Monte J
Jelcick Austin S
Yuan Yang
Tsiloulis Aristoteles N
Chatzoulis Dimitrios Z
Silvestri Giuliana
Kotoula Maria G
Tsironi Evangelia E
Hollis Bruce W
Chen Rui
Haider Neena B
Miller Joan W
Farrer Lindsay A
Hageman Gregory S
Kim Ivana K
Schaumberg Debra A
DeAngelis Margaret M
spellingShingle Morrison Margaux A
Silveira Alexandra C
Huynh Nancy
Jun Gyungah
Smith Silvia E
Zacharaki Fani
Sato Hajime
Loomis Stephanie
Andreoli Michael T
Adams Scott M
Radeke Monte J
Jelcick Austin S
Yuan Yang
Tsiloulis Aristoteles N
Chatzoulis Dimitrios Z
Silvestri Giuliana
Kotoula Maria G
Tsironi Evangelia E
Hollis Bruce W
Chen Rui
Haider Neena B
Miller Joan W
Farrer Lindsay A
Hageman Gregory S
Kim Ivana K
Schaumberg Debra A
DeAngelis Margaret M
Systems biology-based analysis implicates a novel role for vitamin D metabolism in the pathogenesis of age-related macular degeneration
Human Genomics
vitamin D
age-related macular degeneration
author_facet Morrison Margaux A
Silveira Alexandra C
Huynh Nancy
Jun Gyungah
Smith Silvia E
Zacharaki Fani
Sato Hajime
Loomis Stephanie
Andreoli Michael T
Adams Scott M
Radeke Monte J
Jelcick Austin S
Yuan Yang
Tsiloulis Aristoteles N
Chatzoulis Dimitrios Z
Silvestri Giuliana
Kotoula Maria G
Tsironi Evangelia E
Hollis Bruce W
Chen Rui
Haider Neena B
Miller Joan W
Farrer Lindsay A
Hageman Gregory S
Kim Ivana K
Schaumberg Debra A
DeAngelis Margaret M
author_sort Morrison Margaux A
title Systems biology-based analysis implicates a novel role for vitamin D metabolism in the pathogenesis of age-related macular degeneration
title_short Systems biology-based analysis implicates a novel role for vitamin D metabolism in the pathogenesis of age-related macular degeneration
title_full Systems biology-based analysis implicates a novel role for vitamin D metabolism in the pathogenesis of age-related macular degeneration
title_fullStr Systems biology-based analysis implicates a novel role for vitamin D metabolism in the pathogenesis of age-related macular degeneration
title_full_unstemmed Systems biology-based analysis implicates a novel role for vitamin D metabolism in the pathogenesis of age-related macular degeneration
title_sort systems biology-based analysis implicates a novel role for vitamin d metabolism in the pathogenesis of age-related macular degeneration
publisher BMC
series Human Genomics
issn 1479-7364
publishDate 2011-10-01
description <p>Abstract</p> <p>Vitamin D has been shown to have anti-angiogenic properties and to play a protective role in several types of cancer, including breast, prostate and cutaneous melanoma. Similarly, vitamin D levels have been shown to be protective for risk of a number of conditions, including cardiovascular disease and chronic kidney disease, as well as numerous autoimmune disorders such as multiple sclerosis, inflammatory bowel diseases and type 1 diabetes mellitus. A study performed by Parekh <it>et al. </it>was the first to suggest a role for vitamin D in age-related macular degeneration (AMD) and showed a correlation between reduced serum vitamin D levels and risk for early AMD. Based on this study and the protective role of vitamin D in diseases with similar pathophysiology to AMD, we examined the role of vitamin D in a family-based cohort of 481 sibling pairs. Using extremely phenotypically discordant sibling pairs, initially we evaluated the association of neovascular AMD and vitamin D/sunlight-related epidemiological factors. After controlling for established AMD risk factors, including polymorphisms of the genes encoding complement factor H (<it>CFH</it>) and age-related maculopathy susceptibility 2/HtrA serine peptidase (<it>ARMS2/HTRA1</it>), and smoking history, we found that ultraviolet irradiance was protective for the development of neovascular AMD (<it>p </it>= 0.001). Although evaluation of serum vitamin D levels (25-hydroxyvitamin D [25(OH)D]) was higher in unaffected individuals than in their affected siblings, this finding did not reach statistical significance.</p> <p>Based on the relationship between ultraviolet irradiance and vitamin D production, we employed a candidate gene approach for evaluating common variation in key vitamin D pathway genes (the genes encoding the vitamin D receptor [<it>VDR</it>]; cytochrome P450, family 27, subfamily B, polypeptide 1 [<it>CYP27B1</it>]; cytochrome P450, family 24, subfamily A, polypeptide 1 [<it>CYP24A1</it>]; and <it>CYP27A1</it>) in this same family-based cohort. Initial findings were then validated and replicated in the extended family cohort, an unrelated case-control cohort from central Greece and a prospective nested case-control population from the Nurse's Health Study and Health Professionals Follow-Up Studies, which included patients with all subtypes of AMD for a total of 2,528 individuals. Single point variants in <it>CYP24A1 </it>(the gene encoding the catabolising enzyme of the vitamin D pathway) were demonstrated to influence AMD risk after controlling for smoking history, sex and age in all populations, both separately and, more importantly, in a meta-analysis. This is the first report demonstrating a genetic association between vitamin D metabolism and AMD risk. These findings were also supplemented with expression data from human donor eyes and human retinal cell lines. These data not only extend previous biological studies in the AMD field, but further emphasise common antecedents between several disorders with an inflammatory/immunogenic component such as cardiovascular disease, cancer and AMD.</p>
topic vitamin D
age-related macular degeneration
url http://www.humgenomics.com/content/5/6/538
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