Open access · CC-BY
via OpenAlex
Loss of NRF-2 and PGC-1α genes leads to retinal pigment epithelium damage resembling dry age-related macular degeneration
Szabolcs Felszeghy, Johanna Viiri, Jussi J. Paterno, Juha M. T. Hyttinen, Ali Koskela, Mei Chen, Henri Leinonen, Heikki Tanila, Niko Kivinen, Arto Koistinen, Elisa Toropainen, Marialaura Amadio, Adrian Smędowski, Mika Reinisalo, Mateusz Winiarczyk
Redox Biology · 2018 · ▲ 160 citations
Abstract
Age-related macular degeneration (AMD) is a multi-factorial disease that is the leading cause of irreversible and severe vision loss in the developed countries. It has been suggested that the pathogenesis of dry AMD involves impaired protein degradation in retinal pigment epithelial cells (RPE). RPE cells are constantly exposed to oxidative stress that may lead to the accumulation of damaged cellular proteins, DNA and lipids and evoke tissue deterioration during the aging process. The ubiquitin-proteasome pathway and the lysosomal/autophagosomal pathway are the two major proteolytic systems in eukaryotic cells. NRF-2 (nuclear factor-erythroid 2-related factor-2) and PGC-1α (peroxisome proliferator-activated receptor gamma coactivator-1 alpha) are master transcription factors in the regulation of cellular detoxification. We investigated the role of NRF-2 and PGC-1α in the regulation of RPE cell structure and function by using global double knockout (dKO) mice. The NRF-2/PGC-1α dKO mice exhibited significant age-dependent RPE degeneration, accumulation of the oxidative stress marker, 4-HNE (4-hydroxynonenal), the endoplasmic reticulum stress markers GRP78 (glucose-regulated protein 78) and ATF4 (activating transcription factor 4), and damaged mitochondria. Moreover, levels of protein ubiquitination and autophagy(definition) markers p62/SQSTM1 (sequestosome 1), Beclin-1 and LC3B (microtubule associated protein 1 light chain 3 beta) were significantly increased together with the Iba-1 (ionized calcium binding adaptor molecule 1) mononuclear phagocyte marker and an enlargement of RPE size. These histopathological changes of RPE were accompanied by photoreceptor dysmorphology and vision loss as revealed by electroretinography. Consequently, these novel findings suggest that the NRF-2/PGC-1α dKO mouse is a valuable model for investigating the role of proteasomal and autophagy clearance in the RPE and in the development of dry AMD.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1016/j.redox.2018.09.011
- Canonical
- link ↗
- Fetched
- 2026-06-05 MST
Cite this
APA
Felszeghy, S., Viiri, J., Paterno, J.J., Hyttinen, J.M.T., Koskela, A., Chen, M., Leinonen, H., Tanila, H., Kivinen, N., Koistinen, A., Toropainen, E., Amadio, M., Smędowski, A., Reinisalo, M., Winiarczyk, M., Mackiewicz, J., Mutikainen, M., Ruotsalainen, A., Kettunen, M.I., & Jokivarsi, K. (2018). Loss of NRF-2 and PGC-1α genes leads to retinal pigment epithelium damage resembling dry age-related macular degeneration. <em>Redox Biology</em>. https://doi.org/10.1016/j.redox.2018.09.011
Vancouver
Felszeghy S, Viiri J, Paterno JJ, Hyttinen JMT, Koskela A, Chen M, et al. Loss of NRF-2 and PGC-1α genes leads to retinal pigment epithelium damage resembling dry age-related macular degeneration. Redox Biology. 2018. doi:10.1016/j.redox.2018.09.011.
BibTeX
@article{szabolcs2018Lossof,
title = {Loss of NRF-2 and PGC-1α genes leads to retinal pigment epithelium damage resembling dry age-related macular degeneration},
author = {Szabolcs Felszeghy and Johanna Viiri and Jussi J. Paterno and Juha M. T. Hyttinen and Ali Koskela and Mei Chen and Henri Leinonen and Heikki Tanila and Niko Kivinen and Arto Koistinen and Elisa Toropainen and Marialaura Amadio and Adrian Smędowski and Mika Reinisalo and Mateusz Winiarczyk and Jerzy Mackiewicz and Maija Mutikainen and Anna‐Kaisa Ruotsalainen and Mikko I. Kettunen and Kimmo Jokivarsi and Debasish Sinha and Kati Kinnunen and Goran Petrovski and Janusz Błasiak and Geir Bjørkøy},
journal = {Redox Biology},
year = {2018},
doi = {10.1016/j.redox.2018.09.011},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
Stem Cell Research & Therapy 2022
Open access · CC-BY
Modeling of mitochondrial bioenergetics and autophagy impairment in MELAS-mutant iPSC-derived retinal pigment epithelial cells
Frontiers in Cellular Neuroscience 2019
Open access · CC-BY
Emerging Role of the Nucleolar Stress Response in Autophagy
Redox Biology 2019
Open access · CC-BY
Non-enzymatic cleavage of Hsp90 by oxidative stress leads to actin aggregate formation: A novel gain-of-function mechanism
International Journal of Molecular Sciences 2023
Open access · CC-BY
Dysfunctional Autophagy, Proteostasis, and Mitochondria as a Prelude to Age-Related Macular Degeneration
Aging 2009
Open access · CC-BY
SIRT6 stabilizes DNA-dependent Protein Kinase at chromatin for DNA double-strand break repair
Mayo Clinic 2011
Open access · US-GOV