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Hepatic glycogenolysis is determined by maternal high-calorie diet via methylation of Pygl and it is modified by oteocalcin administration in mice

OBJECTIVE: Accumulating evidence indicates that an adverse perinatal environment contributes to a higher risk of metabolic disorders in the later life of the offspring. However, the underlying molecular mechanisms remain largely unknown. Thus, we investigated the contribution of maternal high-calori...

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Autores principales: Kawakubo-Yasukochi, Tomoyo, Yano, Ena, Kimura, Soi, Nishinakagawa, Takuya, Mizokami, Akiko, Hayashi, Yoshikazu, Hatakeyama, Yuji, Ohe, Kenji, Yasukochi, Atsushi, Nakamura, Seiji, Jimi, Eijiro, Hirata, Masato
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8606545/
https://www.ncbi.nlm.nih.gov/pubmed/34673295
http://dx.doi.org/10.1016/j.molmet.2021.101360
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author Kawakubo-Yasukochi, Tomoyo
Yano, Ena
Kimura, Soi
Nishinakagawa, Takuya
Mizokami, Akiko
Hayashi, Yoshikazu
Hatakeyama, Yuji
Ohe, Kenji
Yasukochi, Atsushi
Nakamura, Seiji
Jimi, Eijiro
Hirata, Masato
author_facet Kawakubo-Yasukochi, Tomoyo
Yano, Ena
Kimura, Soi
Nishinakagawa, Takuya
Mizokami, Akiko
Hayashi, Yoshikazu
Hatakeyama, Yuji
Ohe, Kenji
Yasukochi, Atsushi
Nakamura, Seiji
Jimi, Eijiro
Hirata, Masato
author_sort Kawakubo-Yasukochi, Tomoyo
collection PubMed
description OBJECTIVE: Accumulating evidence indicates that an adverse perinatal environment contributes to a higher risk of metabolic disorders in the later life of the offspring. However, the underlying molecular mechanisms remain largely unknown. Thus, we investigated the contribution of maternal high-calorie diet and osteocalcin to metabolic homeostasis in the offspring. METHODS: Eight-week-old C57Bl/6N female mice were mated with age-matched males and allocated randomly to three groups: a normal-diet (ND) or a high-fat, high-sucrose diet group, which was administered either saline (control) or GluOC (10 ng/g body mass) from the day of mating to that of delivery, and the dams were fed a ND after the delivery. Pups weaned at 24 days after birth were analyzed. RESULTS: A maternal high-fat, high-sucrose diet during pregnancy causes metabolic disorders in the liver of the offspring via hypermethylation of the Pygl gene, encoding glycogen phosphorylase L, which mediates hepatic glycogenolysis. The reduced expression of Pygl induced by the maternal diet causes the hepatic accumulation of glycogen and triglyceride in the offspring, which remains in adulthood. In addition, the administration of uncarboxylated osteocalcin during pregnancy upregulates Pygl expression via both direct CREBH and ATF4 and indirect epigenomic pathways, mitigating the maternal diet-induced obesity and abnormal glucose and lipid metabolism in adulthood. CONCLUSIONS: We propose that maternal energy status is reflected in the hepatic glycogenolysis capacity of the offspring via epigenetic modification of Pygl and uncarboxylated osteocalcin regulates glycogenolysis.
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spelling pubmed-86065452021-11-26 Hepatic glycogenolysis is determined by maternal high-calorie diet via methylation of Pygl and it is modified by oteocalcin administration in mice Kawakubo-Yasukochi, Tomoyo Yano, Ena Kimura, Soi Nishinakagawa, Takuya Mizokami, Akiko Hayashi, Yoshikazu Hatakeyama, Yuji Ohe, Kenji Yasukochi, Atsushi Nakamura, Seiji Jimi, Eijiro Hirata, Masato Mol Metab Original Article OBJECTIVE: Accumulating evidence indicates that an adverse perinatal environment contributes to a higher risk of metabolic disorders in the later life of the offspring. However, the underlying molecular mechanisms remain largely unknown. Thus, we investigated the contribution of maternal high-calorie diet and osteocalcin to metabolic homeostasis in the offspring. METHODS: Eight-week-old C57Bl/6N female mice were mated with age-matched males and allocated randomly to three groups: a normal-diet (ND) or a high-fat, high-sucrose diet group, which was administered either saline (control) or GluOC (10 ng/g body mass) from the day of mating to that of delivery, and the dams were fed a ND after the delivery. Pups weaned at 24 days after birth were analyzed. RESULTS: A maternal high-fat, high-sucrose diet during pregnancy causes metabolic disorders in the liver of the offspring via hypermethylation of the Pygl gene, encoding glycogen phosphorylase L, which mediates hepatic glycogenolysis. The reduced expression of Pygl induced by the maternal diet causes the hepatic accumulation of glycogen and triglyceride in the offspring, which remains in adulthood. In addition, the administration of uncarboxylated osteocalcin during pregnancy upregulates Pygl expression via both direct CREBH and ATF4 and indirect epigenomic pathways, mitigating the maternal diet-induced obesity and abnormal glucose and lipid metabolism in adulthood. CONCLUSIONS: We propose that maternal energy status is reflected in the hepatic glycogenolysis capacity of the offspring via epigenetic modification of Pygl and uncarboxylated osteocalcin regulates glycogenolysis. Elsevier 2021-10-19 /pmc/articles/PMC8606545/ /pubmed/34673295 http://dx.doi.org/10.1016/j.molmet.2021.101360 Text en © 2021 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
Kawakubo-Yasukochi, Tomoyo
Yano, Ena
Kimura, Soi
Nishinakagawa, Takuya
Mizokami, Akiko
Hayashi, Yoshikazu
Hatakeyama, Yuji
Ohe, Kenji
Yasukochi, Atsushi
Nakamura, Seiji
Jimi, Eijiro
Hirata, Masato
Hepatic glycogenolysis is determined by maternal high-calorie diet via methylation of Pygl and it is modified by oteocalcin administration in mice
title Hepatic glycogenolysis is determined by maternal high-calorie diet via methylation of Pygl and it is modified by oteocalcin administration in mice
title_full Hepatic glycogenolysis is determined by maternal high-calorie diet via methylation of Pygl and it is modified by oteocalcin administration in mice
title_fullStr Hepatic glycogenolysis is determined by maternal high-calorie diet via methylation of Pygl and it is modified by oteocalcin administration in mice
title_full_unstemmed Hepatic glycogenolysis is determined by maternal high-calorie diet via methylation of Pygl and it is modified by oteocalcin administration in mice
title_short Hepatic glycogenolysis is determined by maternal high-calorie diet via methylation of Pygl and it is modified by oteocalcin administration in mice
title_sort hepatic glycogenolysis is determined by maternal high-calorie diet via methylation of pygl and it is modified by oteocalcin administration in mice
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8606545/
https://www.ncbi.nlm.nih.gov/pubmed/34673295
http://dx.doi.org/10.1016/j.molmet.2021.101360
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