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Lactate-induced histone lactylation by p300 promotes osteoblast differentiation

Lactate, which is synthesized as an end product by lactate dehydrogenase A (LDHA) from pyruvate during anaerobic glycolysis, has attracted attention for its energy metabolism and oxidant effects. A novel histone modification-mediated gene regulation mechanism termed lactylation by lactate was recent...

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Autores principales: Minami, Erika, Sasa, Kiyohito, Yamada, Atsushi, Kawai, Ryota, Yoshida, Hiroshi, Nakano, Haruhisa, Maki, Koutaro, Kamijo, Ryutaro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10697613/
http://dx.doi.org/10.1371/journal.pone.0293676
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author Minami, Erika
Sasa, Kiyohito
Yamada, Atsushi
Kawai, Ryota
Yoshida, Hiroshi
Nakano, Haruhisa
Maki, Koutaro
Kamijo, Ryutaro
author_facet Minami, Erika
Sasa, Kiyohito
Yamada, Atsushi
Kawai, Ryota
Yoshida, Hiroshi
Nakano, Haruhisa
Maki, Koutaro
Kamijo, Ryutaro
author_sort Minami, Erika
collection PubMed
description Lactate, which is synthesized as an end product by lactate dehydrogenase A (LDHA) from pyruvate during anaerobic glycolysis, has attracted attention for its energy metabolism and oxidant effects. A novel histone modification-mediated gene regulation mechanism termed lactylation by lactate was recently discovered. The present study examined the involvement of histone lactylation in undifferentiated cells that underwent differentiation into osteoblasts. C2C12 cells cultured in medium with a high glucose content (4500 mg/L) showed increases in marker genes (Runx2, Sp7, Tnap) indicating BMP-2-induced osteoblast differentiation and ALP staining activity, as well as histone lactylation as compared to those cultured in medium with a low glucose content (900 mg/L). Furthermore, C2C12 cells stimulated with the LDH inhibitor oxamate had reduced levels of BMP-2-induced osteoblast differentiation and histone lactylation, while addition of lactate to C2C12 cells cultured in low glucose medium resulted in partial restoration of osteoblast differentiation and histone lactylation. These results indicate that lactate synthesized by LDHA during glucose metabolism is important for osteoblast differentiation of C2C12 cells induced by BMP-2. Additionally, silencing of p300, a possible modifier of histone lactylation, also inhibited osteoblast differentiation and reduced histone lactylation. Together, these findings suggest a role of histone lactylation in promotion of undifferentiated cells to undergo differentiation into osteoblasts.
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spelling pubmed-106976132023-12-06 Lactate-induced histone lactylation by p300 promotes osteoblast differentiation Minami, Erika Sasa, Kiyohito Yamada, Atsushi Kawai, Ryota Yoshida, Hiroshi Nakano, Haruhisa Maki, Koutaro Kamijo, Ryutaro PLoS One Research Article Lactate, which is synthesized as an end product by lactate dehydrogenase A (LDHA) from pyruvate during anaerobic glycolysis, has attracted attention for its energy metabolism and oxidant effects. A novel histone modification-mediated gene regulation mechanism termed lactylation by lactate was recently discovered. The present study examined the involvement of histone lactylation in undifferentiated cells that underwent differentiation into osteoblasts. C2C12 cells cultured in medium with a high glucose content (4500 mg/L) showed increases in marker genes (Runx2, Sp7, Tnap) indicating BMP-2-induced osteoblast differentiation and ALP staining activity, as well as histone lactylation as compared to those cultured in medium with a low glucose content (900 mg/L). Furthermore, C2C12 cells stimulated with the LDH inhibitor oxamate had reduced levels of BMP-2-induced osteoblast differentiation and histone lactylation, while addition of lactate to C2C12 cells cultured in low glucose medium resulted in partial restoration of osteoblast differentiation and histone lactylation. These results indicate that lactate synthesized by LDHA during glucose metabolism is important for osteoblast differentiation of C2C12 cells induced by BMP-2. Additionally, silencing of p300, a possible modifier of histone lactylation, also inhibited osteoblast differentiation and reduced histone lactylation. Together, these findings suggest a role of histone lactylation in promotion of undifferentiated cells to undergo differentiation into osteoblasts. Public Library of Science 2023-12-05 /pmc/articles/PMC10697613/ http://dx.doi.org/10.1371/journal.pone.0293676 Text en © 2023 Minami et al 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 use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Minami, Erika
Sasa, Kiyohito
Yamada, Atsushi
Kawai, Ryota
Yoshida, Hiroshi
Nakano, Haruhisa
Maki, Koutaro
Kamijo, Ryutaro
Lactate-induced histone lactylation by p300 promotes osteoblast differentiation
title Lactate-induced histone lactylation by p300 promotes osteoblast differentiation
title_full Lactate-induced histone lactylation by p300 promotes osteoblast differentiation
title_fullStr Lactate-induced histone lactylation by p300 promotes osteoblast differentiation
title_full_unstemmed Lactate-induced histone lactylation by p300 promotes osteoblast differentiation
title_short Lactate-induced histone lactylation by p300 promotes osteoblast differentiation
title_sort lactate-induced histone lactylation by p300 promotes osteoblast differentiation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10697613/
http://dx.doi.org/10.1371/journal.pone.0293676
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