Cargando…

The lipid elongation enzyme ELOVL2 is a molecular regulator of aging in the retina

Methylation of the regulatory region of the elongation of very‐long‐chain fatty acids‐like 2 (ELOVL2) gene, an enzyme involved in elongation of long‐chain polyunsaturated fatty acids, is one of the most robust biomarkers of human age, but the critical question of whether ELOVL2 plays a functional ro...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Daniel, Chao, Daniel L., Rocha, Lorena, Kolar, Matthew, Nguyen Huu, Viet Anh, Krawczyk, Michal, Dasyani, Manish, Wang, Tina, Jafari, Maryam, Jabari, Mary, Ross, Kevin D., Saghatelian, Alan, Hamilton, Bruce A., Zhang, Kang, Skowronska‐Krawczyk, Dorota
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6996962/
https://www.ncbi.nlm.nih.gov/pubmed/31943697
http://dx.doi.org/10.1111/acel.13100
_version_ 1783493600339820544
author Chen, Daniel
Chao, Daniel L.
Rocha, Lorena
Kolar, Matthew
Nguyen Huu, Viet Anh
Krawczyk, Michal
Dasyani, Manish
Wang, Tina
Jafari, Maryam
Jabari, Mary
Ross, Kevin D.
Saghatelian, Alan
Hamilton, Bruce A.
Zhang, Kang
Skowronska‐Krawczyk, Dorota
author_facet Chen, Daniel
Chao, Daniel L.
Rocha, Lorena
Kolar, Matthew
Nguyen Huu, Viet Anh
Krawczyk, Michal
Dasyani, Manish
Wang, Tina
Jafari, Maryam
Jabari, Mary
Ross, Kevin D.
Saghatelian, Alan
Hamilton, Bruce A.
Zhang, Kang
Skowronska‐Krawczyk, Dorota
author_sort Chen, Daniel
collection PubMed
description Methylation of the regulatory region of the elongation of very‐long‐chain fatty acids‐like 2 (ELOVL2) gene, an enzyme involved in elongation of long‐chain polyunsaturated fatty acids, is one of the most robust biomarkers of human age, but the critical question of whether ELOVL2 plays a functional role in molecular aging has not been resolved. Here, we report that Elovl2 regulates age‐associated functional and anatomical aging in vivo, focusing on mouse retina, with direct relevance to age‐related eye diseases. We show that an age‐related decrease in Elovl2 expression is associated with increased DNA methylation of its promoter. Reversal of Elovl2 promoter hypermethylation in vivo through intravitreal injection of 5‐Aza‐2’‐deoxycytidine (5‐Aza‐dc) leads to increased Elovl2 expression and rescue of age‐related decline in visual function. Mice carrying a point mutation C234W that disrupts Elovl2‐specific enzymatic activity show electrophysiological characteristics of premature visual decline, as well as early appearance of autofluorescent deposits, well‐established markers of aging in the mouse retina. Finally, we find deposits underneath the retinal pigment epithelium in Elovl2 mutant mice, containing components found in human drusen, a pathologic hallmark of age related macular degeneration. These findings indicate that ELOVL2 activity regulates aging in mouse retina, provide a molecular link between polyunsaturated fatty acids elongation and visual function, and suggest novel therapeutic strategies for the treatment of age‐related eye diseases.
format Online
Article
Text
id pubmed-6996962
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-69969622020-02-05 The lipid elongation enzyme ELOVL2 is a molecular regulator of aging in the retina Chen, Daniel Chao, Daniel L. Rocha, Lorena Kolar, Matthew Nguyen Huu, Viet Anh Krawczyk, Michal Dasyani, Manish Wang, Tina Jafari, Maryam Jabari, Mary Ross, Kevin D. Saghatelian, Alan Hamilton, Bruce A. Zhang, Kang Skowronska‐Krawczyk, Dorota Aging Cell Original Articles Methylation of the regulatory region of the elongation of very‐long‐chain fatty acids‐like 2 (ELOVL2) gene, an enzyme involved in elongation of long‐chain polyunsaturated fatty acids, is one of the most robust biomarkers of human age, but the critical question of whether ELOVL2 plays a functional role in molecular aging has not been resolved. Here, we report that Elovl2 regulates age‐associated functional and anatomical aging in vivo, focusing on mouse retina, with direct relevance to age‐related eye diseases. We show that an age‐related decrease in Elovl2 expression is associated with increased DNA methylation of its promoter. Reversal of Elovl2 promoter hypermethylation in vivo through intravitreal injection of 5‐Aza‐2’‐deoxycytidine (5‐Aza‐dc) leads to increased Elovl2 expression and rescue of age‐related decline in visual function. Mice carrying a point mutation C234W that disrupts Elovl2‐specific enzymatic activity show electrophysiological characteristics of premature visual decline, as well as early appearance of autofluorescent deposits, well‐established markers of aging in the mouse retina. Finally, we find deposits underneath the retinal pigment epithelium in Elovl2 mutant mice, containing components found in human drusen, a pathologic hallmark of age related macular degeneration. These findings indicate that ELOVL2 activity regulates aging in mouse retina, provide a molecular link between polyunsaturated fatty acids elongation and visual function, and suggest novel therapeutic strategies for the treatment of age‐related eye diseases. John Wiley and Sons Inc. 2020-01-14 2020-02 /pmc/articles/PMC6996962/ /pubmed/31943697 http://dx.doi.org/10.1111/acel.13100 Text en © 2020 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Chen, Daniel
Chao, Daniel L.
Rocha, Lorena
Kolar, Matthew
Nguyen Huu, Viet Anh
Krawczyk, Michal
Dasyani, Manish
Wang, Tina
Jafari, Maryam
Jabari, Mary
Ross, Kevin D.
Saghatelian, Alan
Hamilton, Bruce A.
Zhang, Kang
Skowronska‐Krawczyk, Dorota
The lipid elongation enzyme ELOVL2 is a molecular regulator of aging in the retina
title The lipid elongation enzyme ELOVL2 is a molecular regulator of aging in the retina
title_full The lipid elongation enzyme ELOVL2 is a molecular regulator of aging in the retina
title_fullStr The lipid elongation enzyme ELOVL2 is a molecular regulator of aging in the retina
title_full_unstemmed The lipid elongation enzyme ELOVL2 is a molecular regulator of aging in the retina
title_short The lipid elongation enzyme ELOVL2 is a molecular regulator of aging in the retina
title_sort lipid elongation enzyme elovl2 is a molecular regulator of aging in the retina
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6996962/
https://www.ncbi.nlm.nih.gov/pubmed/31943697
http://dx.doi.org/10.1111/acel.13100
work_keys_str_mv AT chendaniel thelipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT chaodaniell thelipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT rochalorena thelipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT kolarmatthew thelipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT nguyenhuuvietanh thelipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT krawczykmichal thelipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT dasyanimanish thelipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT wangtina thelipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT jafarimaryam thelipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT jabarimary thelipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT rosskevind thelipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT saghatelianalan thelipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT hamiltonbrucea thelipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT zhangkang thelipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT skowronskakrawczykdorota thelipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT chendaniel lipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT chaodaniell lipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT rochalorena lipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT kolarmatthew lipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT nguyenhuuvietanh lipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT krawczykmichal lipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT dasyanimanish lipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT wangtina lipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT jafarimaryam lipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT jabarimary lipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT rosskevind lipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT saghatelianalan lipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT hamiltonbrucea lipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT zhangkang lipidelongationenzymeelovl2isamolecularregulatorofagingintheretina
AT skowronskakrawczykdorota lipidelongationenzymeelovl2isamolecularregulatorofagingintheretina