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Bdh2 Deficiency Promotes Endoderm-Biased Early Differentiation of Mouse Embryonic Stem Cells

3-hydroxybutyrate dehydrogenase-2 (Bdh2), a short-chain dehydrogenase, catalyzes a rate-limiting step in the biogenesis of the mammalian siderophore, playing a key role in iron homeostasis, energy metabolism and apoptosis. However, the function of Bdh2 in embryonic stem cells (ESCs) remains unknown....

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Autores principales: Fu, Yuting, Liu, Fangyuan, Cao, Shuo, Zhang, Jia, Wang, Huizhi, Wu, Baojiang, Song, Yongli, Duo, Shuguang, Li, Xihe, Bao, Siqin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8060705/
https://www.ncbi.nlm.nih.gov/pubmed/33898455
http://dx.doi.org/10.3389/fcell.2021.655145
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author Fu, Yuting
Liu, Fangyuan
Cao, Shuo
Zhang, Jia
Wang, Huizhi
Wu, Baojiang
Song, Yongli
Duo, Shuguang
Li, Xihe
Bao, Siqin
author_facet Fu, Yuting
Liu, Fangyuan
Cao, Shuo
Zhang, Jia
Wang, Huizhi
Wu, Baojiang
Song, Yongli
Duo, Shuguang
Li, Xihe
Bao, Siqin
author_sort Fu, Yuting
collection PubMed
description 3-hydroxybutyrate dehydrogenase-2 (Bdh2), a short-chain dehydrogenase, catalyzes a rate-limiting step in the biogenesis of the mammalian siderophore, playing a key role in iron homeostasis, energy metabolism and apoptosis. However, the function of Bdh2 in embryonic stem cells (ESCs) remains unknown. To gain insights into the role of Bdh2 on pluripotency and cell fate decisions of mouse ESCs, we generated Bdh2 homozygous knockout lines for both mouse advanced embryonic stem cell (ASC) and ESC using CRISPR/Cas9 genome editing technology. Bdh2 deficiency in both ASCs and ESCs had no effect on expression of core pluripotent transcription factors and alkaline phosphatase activity, suggesting dispensability of Bdh2 for self-renewal and pluripotency of ESCs. Interestingly, cells with Bdh2 deficiency exhibited potency of endoderm differentiation in vitro; with upregulated endoderm associated genes revealed by RNA-seq and RT-qPCR. We further demonstrate that Bdh2 loss inhibited expression of multiple methyltransferases (DNMTs) at both RNA and protein level, suggesting that Bdh2 may be essentially required to maintain DNA methylation in ASCs and ESCs. Overall, this study provides valuable data and resources for understanding how Bdh2 regulate earliest cell fate decision and DNA methylation in ASCs/ESCs.
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spelling pubmed-80607052021-04-23 Bdh2 Deficiency Promotes Endoderm-Biased Early Differentiation of Mouse Embryonic Stem Cells Fu, Yuting Liu, Fangyuan Cao, Shuo Zhang, Jia Wang, Huizhi Wu, Baojiang Song, Yongli Duo, Shuguang Li, Xihe Bao, Siqin Front Cell Dev Biol Cell and Developmental Biology 3-hydroxybutyrate dehydrogenase-2 (Bdh2), a short-chain dehydrogenase, catalyzes a rate-limiting step in the biogenesis of the mammalian siderophore, playing a key role in iron homeostasis, energy metabolism and apoptosis. However, the function of Bdh2 in embryonic stem cells (ESCs) remains unknown. To gain insights into the role of Bdh2 on pluripotency and cell fate decisions of mouse ESCs, we generated Bdh2 homozygous knockout lines for both mouse advanced embryonic stem cell (ASC) and ESC using CRISPR/Cas9 genome editing technology. Bdh2 deficiency in both ASCs and ESCs had no effect on expression of core pluripotent transcription factors and alkaline phosphatase activity, suggesting dispensability of Bdh2 for self-renewal and pluripotency of ESCs. Interestingly, cells with Bdh2 deficiency exhibited potency of endoderm differentiation in vitro; with upregulated endoderm associated genes revealed by RNA-seq and RT-qPCR. We further demonstrate that Bdh2 loss inhibited expression of multiple methyltransferases (DNMTs) at both RNA and protein level, suggesting that Bdh2 may be essentially required to maintain DNA methylation in ASCs and ESCs. Overall, this study provides valuable data and resources for understanding how Bdh2 regulate earliest cell fate decision and DNA methylation in ASCs/ESCs. Frontiers Media S.A. 2021-04-08 /pmc/articles/PMC8060705/ /pubmed/33898455 http://dx.doi.org/10.3389/fcell.2021.655145 Text en Copyright © 2021 Fu, Liu, Cao, Zhang, Wang, Wu, Song, Duo, Li and Bao. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Fu, Yuting
Liu, Fangyuan
Cao, Shuo
Zhang, Jia
Wang, Huizhi
Wu, Baojiang
Song, Yongli
Duo, Shuguang
Li, Xihe
Bao, Siqin
Bdh2 Deficiency Promotes Endoderm-Biased Early Differentiation of Mouse Embryonic Stem Cells
title Bdh2 Deficiency Promotes Endoderm-Biased Early Differentiation of Mouse Embryonic Stem Cells
title_full Bdh2 Deficiency Promotes Endoderm-Biased Early Differentiation of Mouse Embryonic Stem Cells
title_fullStr Bdh2 Deficiency Promotes Endoderm-Biased Early Differentiation of Mouse Embryonic Stem Cells
title_full_unstemmed Bdh2 Deficiency Promotes Endoderm-Biased Early Differentiation of Mouse Embryonic Stem Cells
title_short Bdh2 Deficiency Promotes Endoderm-Biased Early Differentiation of Mouse Embryonic Stem Cells
title_sort bdh2 deficiency promotes endoderm-biased early differentiation of mouse embryonic stem cells
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8060705/
https://www.ncbi.nlm.nih.gov/pubmed/33898455
http://dx.doi.org/10.3389/fcell.2021.655145
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