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An Oxidative Stress-Related Gene Signature in Granulosa Cells Is Associated with Ovarian Aging

Ovarian aging is associated with a decrease in fecundity. Increased oxidative stress of granulosa cells (GCs) is an important contributor. We thus asked whether there is an oxidative stress-related gene signature in GCs associated with ovarian aging. Public nonhuman primate (NHP) single-cell transcr...

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Autores principales: Lin, Nuan, Lin, Jiazhe, Plosch, Torsten, Sun, Pingnan, Zhou, Xiaoling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9713466/
https://www.ncbi.nlm.nih.gov/pubmed/36466095
http://dx.doi.org/10.1155/2022/1070968
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author Lin, Nuan
Lin, Jiazhe
Plosch, Torsten
Sun, Pingnan
Zhou, Xiaoling
author_facet Lin, Nuan
Lin, Jiazhe
Plosch, Torsten
Sun, Pingnan
Zhou, Xiaoling
author_sort Lin, Nuan
collection PubMed
description Ovarian aging is associated with a decrease in fecundity. Increased oxidative stress of granulosa cells (GCs) is an important contributor. We thus asked whether there is an oxidative stress-related gene signature in GCs associated with ovarian aging. Public nonhuman primate (NHP) single-cell transcriptome was processed to identify GC cluster. Then, a GC signature for ovarian aging was established based on six oxidative stress-related differentially expressed genes (MAPK1, STK24, AREG, ATG7, ANXA1, and PON2). Receiver operating characteristic (ROC) analysis confirmed good discriminating capacity in both NHP single-cell and human bulk transcriptome datasets. Gene expression levels were investigated using qPCR in the human ovarian granulosa-like tumor cell line (KGN) and mouse GCs. In an oxidative stress model, KGN cells were treated with menadione (7.5 μM, 24 h) to induce oxidative stress, after which upregulation of MAPK1, STK24, ATG7, ANXA1, and PON2 and downregulation of AREG were observed (p < 0.05). In an aging model, KGN cells were continuously cultured for 3 months, leading to increased expressions of all genes (p < 0.05). In GCs of reproductively aged (8-month-old) Kunming mice, upregulated expression of Mapk1, Stk24, Atg7, and Pon2 and downregulated expression of Anxa1 and Areg were observed (p < 0.01). We therefore here identify a six-gene GC signature associated with oxidative stress and ovarian aging.
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spelling pubmed-97134662022-12-02 An Oxidative Stress-Related Gene Signature in Granulosa Cells Is Associated with Ovarian Aging Lin, Nuan Lin, Jiazhe Plosch, Torsten Sun, Pingnan Zhou, Xiaoling Oxid Med Cell Longev Research Article Ovarian aging is associated with a decrease in fecundity. Increased oxidative stress of granulosa cells (GCs) is an important contributor. We thus asked whether there is an oxidative stress-related gene signature in GCs associated with ovarian aging. Public nonhuman primate (NHP) single-cell transcriptome was processed to identify GC cluster. Then, a GC signature for ovarian aging was established based on six oxidative stress-related differentially expressed genes (MAPK1, STK24, AREG, ATG7, ANXA1, and PON2). Receiver operating characteristic (ROC) analysis confirmed good discriminating capacity in both NHP single-cell and human bulk transcriptome datasets. Gene expression levels were investigated using qPCR in the human ovarian granulosa-like tumor cell line (KGN) and mouse GCs. In an oxidative stress model, KGN cells were treated with menadione (7.5 μM, 24 h) to induce oxidative stress, after which upregulation of MAPK1, STK24, ATG7, ANXA1, and PON2 and downregulation of AREG were observed (p < 0.05). In an aging model, KGN cells were continuously cultured for 3 months, leading to increased expressions of all genes (p < 0.05). In GCs of reproductively aged (8-month-old) Kunming mice, upregulated expression of Mapk1, Stk24, Atg7, and Pon2 and downregulated expression of Anxa1 and Areg were observed (p < 0.01). We therefore here identify a six-gene GC signature associated with oxidative stress and ovarian aging. Hindawi 2022-11-03 /pmc/articles/PMC9713466/ /pubmed/36466095 http://dx.doi.org/10.1155/2022/1070968 Text en Copyright © 2022 Nuan Lin et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Lin, Nuan
Lin, Jiazhe
Plosch, Torsten
Sun, Pingnan
Zhou, Xiaoling
An Oxidative Stress-Related Gene Signature in Granulosa Cells Is Associated with Ovarian Aging
title An Oxidative Stress-Related Gene Signature in Granulosa Cells Is Associated with Ovarian Aging
title_full An Oxidative Stress-Related Gene Signature in Granulosa Cells Is Associated with Ovarian Aging
title_fullStr An Oxidative Stress-Related Gene Signature in Granulosa Cells Is Associated with Ovarian Aging
title_full_unstemmed An Oxidative Stress-Related Gene Signature in Granulosa Cells Is Associated with Ovarian Aging
title_short An Oxidative Stress-Related Gene Signature in Granulosa Cells Is Associated with Ovarian Aging
title_sort oxidative stress-related gene signature in granulosa cells is associated with ovarian aging
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9713466/
https://www.ncbi.nlm.nih.gov/pubmed/36466095
http://dx.doi.org/10.1155/2022/1070968
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