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Dual role of lipids for genome stability and pluripotency facilitates full potency of mouse embryonic stem cells

While Mek1/2 and Gsk3β inhibition (“2i”) supports the maintenance of murine embryonic stem cells (ESCs) in a homogenous naïve state, prolonged culture in 2i results in aneuploidy and DNA hypomethylation that impairs developmental potential. Additionally, 2i fails to support derivation and culture of...

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Autores principales: Zhong, Liangwen, Gordillo, Miriam, Wang, Xingyi, Qin, Yiren, Huang, Yuanyuan, Soshnev, Alexey, Kumar, Ritu, Nanjangud, Gouri, James, Daylon, David Allis, C, Evans, Todd, Carey, Bryce, Wen, Duancheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10392030/
https://www.ncbi.nlm.nih.gov/pubmed/37029701
http://dx.doi.org/10.1093/procel/pwad008
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author Zhong, Liangwen
Gordillo, Miriam
Wang, Xingyi
Qin, Yiren
Huang, Yuanyuan
Soshnev, Alexey
Kumar, Ritu
Nanjangud, Gouri
James, Daylon
David Allis, C
Evans, Todd
Carey, Bryce
Wen, Duancheng
author_facet Zhong, Liangwen
Gordillo, Miriam
Wang, Xingyi
Qin, Yiren
Huang, Yuanyuan
Soshnev, Alexey
Kumar, Ritu
Nanjangud, Gouri
James, Daylon
David Allis, C
Evans, Todd
Carey, Bryce
Wen, Duancheng
author_sort Zhong, Liangwen
collection PubMed
description While Mek1/2 and Gsk3β inhibition (“2i”) supports the maintenance of murine embryonic stem cells (ESCs) in a homogenous naïve state, prolonged culture in 2i results in aneuploidy and DNA hypomethylation that impairs developmental potential. Additionally, 2i fails to support derivation and culture of fully potent female ESCs. Here we find that mouse ESCs cultured in 2i/LIF supplemented with lipid-rich albumin (AlbuMAX) undergo pluripotency transition yet maintain genomic stability and full potency over long-term culture. Mechanistically, lipids in AlbuMAX impact intracellular metabolism including nucleotide biosynthesis, lipid biogenesis, and TCA cycle intermediates, with enhanced expression of DNMT3s that prevent DNA hypomethylation. Lipids induce a formative-like pluripotent state through direct stimulation of Erk2 phosphorylation, which also alleviates X chromosome loss in female ESCs. Importantly, both male and female “all-ESC” mice can be generated from de novo derived ESCs using AlbuMAX-based media. Our findings underscore the importance of lipids to pluripotency and link nutrient cues to genome integrity in early development.
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spelling pubmed-103920302023-08-02 Dual role of lipids for genome stability and pluripotency facilitates full potency of mouse embryonic stem cells Zhong, Liangwen Gordillo, Miriam Wang, Xingyi Qin, Yiren Huang, Yuanyuan Soshnev, Alexey Kumar, Ritu Nanjangud, Gouri James, Daylon David Allis, C Evans, Todd Carey, Bryce Wen, Duancheng Protein Cell Research Article While Mek1/2 and Gsk3β inhibition (“2i”) supports the maintenance of murine embryonic stem cells (ESCs) in a homogenous naïve state, prolonged culture in 2i results in aneuploidy and DNA hypomethylation that impairs developmental potential. Additionally, 2i fails to support derivation and culture of fully potent female ESCs. Here we find that mouse ESCs cultured in 2i/LIF supplemented with lipid-rich albumin (AlbuMAX) undergo pluripotency transition yet maintain genomic stability and full potency over long-term culture. Mechanistically, lipids in AlbuMAX impact intracellular metabolism including nucleotide biosynthesis, lipid biogenesis, and TCA cycle intermediates, with enhanced expression of DNMT3s that prevent DNA hypomethylation. Lipids induce a formative-like pluripotent state through direct stimulation of Erk2 phosphorylation, which also alleviates X chromosome loss in female ESCs. Importantly, both male and female “all-ESC” mice can be generated from de novo derived ESCs using AlbuMAX-based media. Our findings underscore the importance of lipids to pluripotency and link nutrient cues to genome integrity in early development. Oxford University Press 2023-02-16 /pmc/articles/PMC10392030/ /pubmed/37029701 http://dx.doi.org/10.1093/procel/pwad008 Text en ©The Author(s) 2023. Published by Oxford University Press on behalf of Higher Education Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Zhong, Liangwen
Gordillo, Miriam
Wang, Xingyi
Qin, Yiren
Huang, Yuanyuan
Soshnev, Alexey
Kumar, Ritu
Nanjangud, Gouri
James, Daylon
David Allis, C
Evans, Todd
Carey, Bryce
Wen, Duancheng
Dual role of lipids for genome stability and pluripotency facilitates full potency of mouse embryonic stem cells
title Dual role of lipids for genome stability and pluripotency facilitates full potency of mouse embryonic stem cells
title_full Dual role of lipids for genome stability and pluripotency facilitates full potency of mouse embryonic stem cells
title_fullStr Dual role of lipids for genome stability and pluripotency facilitates full potency of mouse embryonic stem cells
title_full_unstemmed Dual role of lipids for genome stability and pluripotency facilitates full potency of mouse embryonic stem cells
title_short Dual role of lipids for genome stability and pluripotency facilitates full potency of mouse embryonic stem cells
title_sort dual role of lipids for genome stability and pluripotency facilitates full potency of mouse embryonic stem cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10392030/
https://www.ncbi.nlm.nih.gov/pubmed/37029701
http://dx.doi.org/10.1093/procel/pwad008
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