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Single-cell profiling of mouse and primate ovaries identifies high levels of EGFR for stromal cells in ovarian aging

Increased ovarian fibrosis and an expanded stromal cell compartment are the main characteristics of aging ovaries. However, the molecular mechanisms and the key factor of stromal cells underlying ovarian aging remain unclear. Here, we explored single-cell transcriptomic data of ovaries from the adul...

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Autores principales: Wei, Ye, Yu, Ruidi, Cheng, Sheng, Zhou, Ping, Mo, Shaomei, He, Chao, Deng, Chang, Wu, Peng, Liu, He, Cao, Canhui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9761475/
https://www.ncbi.nlm.nih.gov/pubmed/36570672
http://dx.doi.org/10.1016/j.omtn.2022.11.020
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author Wei, Ye
Yu, Ruidi
Cheng, Sheng
Zhou, Ping
Mo, Shaomei
He, Chao
Deng, Chang
Wu, Peng
Liu, He
Cao, Canhui
author_facet Wei, Ye
Yu, Ruidi
Cheng, Sheng
Zhou, Ping
Mo, Shaomei
He, Chao
Deng, Chang
Wu, Peng
Liu, He
Cao, Canhui
author_sort Wei, Ye
collection PubMed
description Increased ovarian fibrosis and an expanded stromal cell compartment are the main characteristics of aging ovaries. However, the molecular mechanisms and the key factor of stromal cells underlying ovarian aging remain unclear. Here, we explored single-cell transcriptomic data of ovaries from the adult mouse (4,363 cells), young (1,122 cells), and aged (1,479 cells) non-human primates (NHPs) to identify expression patterns of stromal cells between young and old ovaries. An increased number of stromal cells (p = 0.0386) was observed in aged ovaries of NHPs, with enrichment processes related to the collagen-containing extracellular matrix. In addition, differentially expressed genes of stromal cells between young and old ovaries were regulated by ESR1 (p = 7.94E-08) and AR (p = 1.99E-05). Among them, EGFR was identified as the common target and was highly expressed (p = 7.69E-39) in old ovaries. In human ovaries, the correlated genes of EGFR were associated with the process of the cell-substrate junction. Silencing of EGFR in human ovarian stromal cells led to the reduction of cell-substrate junction via regulating phosphorylation modification of the AKT-mTOR signaling pathway and stromal cell marker genes. Overall, we identified high levels of EGFR for stromal cells in ovarian aging, which provides insight into the cell type-specific molecular mechanisms underlying ovarian aging at single-cell resolution.
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spelling pubmed-97614752022-12-22 Single-cell profiling of mouse and primate ovaries identifies high levels of EGFR for stromal cells in ovarian aging Wei, Ye Yu, Ruidi Cheng, Sheng Zhou, Ping Mo, Shaomei He, Chao Deng, Chang Wu, Peng Liu, He Cao, Canhui Mol Ther Nucleic Acids Original Article Increased ovarian fibrosis and an expanded stromal cell compartment are the main characteristics of aging ovaries. However, the molecular mechanisms and the key factor of stromal cells underlying ovarian aging remain unclear. Here, we explored single-cell transcriptomic data of ovaries from the adult mouse (4,363 cells), young (1,122 cells), and aged (1,479 cells) non-human primates (NHPs) to identify expression patterns of stromal cells between young and old ovaries. An increased number of stromal cells (p = 0.0386) was observed in aged ovaries of NHPs, with enrichment processes related to the collagen-containing extracellular matrix. In addition, differentially expressed genes of stromal cells between young and old ovaries were regulated by ESR1 (p = 7.94E-08) and AR (p = 1.99E-05). Among them, EGFR was identified as the common target and was highly expressed (p = 7.69E-39) in old ovaries. In human ovaries, the correlated genes of EGFR were associated with the process of the cell-substrate junction. Silencing of EGFR in human ovarian stromal cells led to the reduction of cell-substrate junction via regulating phosphorylation modification of the AKT-mTOR signaling pathway and stromal cell marker genes. Overall, we identified high levels of EGFR for stromal cells in ovarian aging, which provides insight into the cell type-specific molecular mechanisms underlying ovarian aging at single-cell resolution. American Society of Gene & Cell Therapy 2022-11-25 /pmc/articles/PMC9761475/ /pubmed/36570672 http://dx.doi.org/10.1016/j.omtn.2022.11.020 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Wei, Ye
Yu, Ruidi
Cheng, Sheng
Zhou, Ping
Mo, Shaomei
He, Chao
Deng, Chang
Wu, Peng
Liu, He
Cao, Canhui
Single-cell profiling of mouse and primate ovaries identifies high levels of EGFR for stromal cells in ovarian aging
title Single-cell profiling of mouse and primate ovaries identifies high levels of EGFR for stromal cells in ovarian aging
title_full Single-cell profiling of mouse and primate ovaries identifies high levels of EGFR for stromal cells in ovarian aging
title_fullStr Single-cell profiling of mouse and primate ovaries identifies high levels of EGFR for stromal cells in ovarian aging
title_full_unstemmed Single-cell profiling of mouse and primate ovaries identifies high levels of EGFR for stromal cells in ovarian aging
title_short Single-cell profiling of mouse and primate ovaries identifies high levels of EGFR for stromal cells in ovarian aging
title_sort single-cell profiling of mouse and primate ovaries identifies high levels of egfr for stromal cells in ovarian aging
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9761475/
https://www.ncbi.nlm.nih.gov/pubmed/36570672
http://dx.doi.org/10.1016/j.omtn.2022.11.020
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