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Deficient of a Clock Gene, Brain and Muscle Arnt-Like Protein-1 (BMAL1), Induces Dyslipidemia and Ectopic Fat Formation

A link between circadian rhythm and metabolism has long been discussed. Circadian rhythm is controlled by positive and negative transcriptional and translational feedback loops composed of several clock genes. Among clock genes, the brain and muscle Arnt-like protein-1 (BMAL1) and circadian locomoto...

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Autores principales: Shimba, Shigeki, Ogawa, Tomohiro, Hitosugi, Shunsuke, Ichihashi, Yuya, Nakadaira, Yuki, Kobayashi, Munehiro, Tezuka, Masakatsu, Kosuge, Yasuhiro, Ishige, Kumiko, Ito, Yoshihisa, Komiyama, Kazuo, Okamatsu-Ogura, Yuko, Kimura, Kazuhiro, Saito, Masayuki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3178629/
https://www.ncbi.nlm.nih.gov/pubmed/21966465
http://dx.doi.org/10.1371/journal.pone.0025231
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author Shimba, Shigeki
Ogawa, Tomohiro
Hitosugi, Shunsuke
Ichihashi, Yuya
Nakadaira, Yuki
Kobayashi, Munehiro
Tezuka, Masakatsu
Kosuge, Yasuhiro
Ishige, Kumiko
Ito, Yoshihisa
Komiyama, Kazuo
Okamatsu-Ogura, Yuko
Kimura, Kazuhiro
Saito, Masayuki
author_facet Shimba, Shigeki
Ogawa, Tomohiro
Hitosugi, Shunsuke
Ichihashi, Yuya
Nakadaira, Yuki
Kobayashi, Munehiro
Tezuka, Masakatsu
Kosuge, Yasuhiro
Ishige, Kumiko
Ito, Yoshihisa
Komiyama, Kazuo
Okamatsu-Ogura, Yuko
Kimura, Kazuhiro
Saito, Masayuki
author_sort Shimba, Shigeki
collection PubMed
description A link between circadian rhythm and metabolism has long been discussed. Circadian rhythm is controlled by positive and negative transcriptional and translational feedback loops composed of several clock genes. Among clock genes, the brain and muscle Arnt-like protein-1 (BMAL1) and circadian locomotor output cycles kaput (CLOCK) play important roles in the regulation of the positive rhythmic transcription. In addition to control of circadian rhythm, we have previously shown that BMAL1 regulates adipogenesis. In metabolic syndrome patients, the function of BMAL1 is dysregulated in visceral adipose tissue. In addition, analysis of SNPs has revealed that BMAL1 is associated with susceptibility to hypertension and type II diabetes. Furthermore, the significant roles of BMAL1 in pancreatic β cells proliferation and maturation were recently reported. These results suggest that BMAL1 regulates energy homeostasis. Therefore, in this study, we examined whether loss of BMAL1 function is capable of inducing metabolic syndrome. Deficient of the Bmal1 gene in mice resulted in elevation of the respiratory quotient value, indicating that BMAL1 is involved in the utilization of fat as an energy source. Indeed, lack of Bmal1 reduced the capacity of fat storage in adipose tissue, resulting in an increase in the levels of circulating fatty acids, including triglycerides, free fatty acids, and cholesterol. Elevation of the circulating fatty acids level induced the formation of ectopic fat in the liver and skeletal muscle in Bmal1 -/- mice. Interestingly, ectopic fat formation was not observed in tissue-specific (liver or skeletal muscle) Bmal1 -/- mice even under high fat diet feeding condition. Therefore, we were led to conclude that BMAL1 is a crucial factor in the regulation of energy homeostasis, and disorders of the functions of BMAL1 lead to the development of metabolic syndrome.
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spelling pubmed-31786292011-09-30 Deficient of a Clock Gene, Brain and Muscle Arnt-Like Protein-1 (BMAL1), Induces Dyslipidemia and Ectopic Fat Formation Shimba, Shigeki Ogawa, Tomohiro Hitosugi, Shunsuke Ichihashi, Yuya Nakadaira, Yuki Kobayashi, Munehiro Tezuka, Masakatsu Kosuge, Yasuhiro Ishige, Kumiko Ito, Yoshihisa Komiyama, Kazuo Okamatsu-Ogura, Yuko Kimura, Kazuhiro Saito, Masayuki PLoS One Research Article A link between circadian rhythm and metabolism has long been discussed. Circadian rhythm is controlled by positive and negative transcriptional and translational feedback loops composed of several clock genes. Among clock genes, the brain and muscle Arnt-like protein-1 (BMAL1) and circadian locomotor output cycles kaput (CLOCK) play important roles in the regulation of the positive rhythmic transcription. In addition to control of circadian rhythm, we have previously shown that BMAL1 regulates adipogenesis. In metabolic syndrome patients, the function of BMAL1 is dysregulated in visceral adipose tissue. In addition, analysis of SNPs has revealed that BMAL1 is associated with susceptibility to hypertension and type II diabetes. Furthermore, the significant roles of BMAL1 in pancreatic β cells proliferation and maturation were recently reported. These results suggest that BMAL1 regulates energy homeostasis. Therefore, in this study, we examined whether loss of BMAL1 function is capable of inducing metabolic syndrome. Deficient of the Bmal1 gene in mice resulted in elevation of the respiratory quotient value, indicating that BMAL1 is involved in the utilization of fat as an energy source. Indeed, lack of Bmal1 reduced the capacity of fat storage in adipose tissue, resulting in an increase in the levels of circulating fatty acids, including triglycerides, free fatty acids, and cholesterol. Elevation of the circulating fatty acids level induced the formation of ectopic fat in the liver and skeletal muscle in Bmal1 -/- mice. Interestingly, ectopic fat formation was not observed in tissue-specific (liver or skeletal muscle) Bmal1 -/- mice even under high fat diet feeding condition. Therefore, we were led to conclude that BMAL1 is a crucial factor in the regulation of energy homeostasis, and disorders of the functions of BMAL1 lead to the development of metabolic syndrome. Public Library of Science 2011-09-22 /pmc/articles/PMC3178629/ /pubmed/21966465 http://dx.doi.org/10.1371/journal.pone.0025231 Text en Shimba et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Shimba, Shigeki
Ogawa, Tomohiro
Hitosugi, Shunsuke
Ichihashi, Yuya
Nakadaira, Yuki
Kobayashi, Munehiro
Tezuka, Masakatsu
Kosuge, Yasuhiro
Ishige, Kumiko
Ito, Yoshihisa
Komiyama, Kazuo
Okamatsu-Ogura, Yuko
Kimura, Kazuhiro
Saito, Masayuki
Deficient of a Clock Gene, Brain and Muscle Arnt-Like Protein-1 (BMAL1), Induces Dyslipidemia and Ectopic Fat Formation
title Deficient of a Clock Gene, Brain and Muscle Arnt-Like Protein-1 (BMAL1), Induces Dyslipidemia and Ectopic Fat Formation
title_full Deficient of a Clock Gene, Brain and Muscle Arnt-Like Protein-1 (BMAL1), Induces Dyslipidemia and Ectopic Fat Formation
title_fullStr Deficient of a Clock Gene, Brain and Muscle Arnt-Like Protein-1 (BMAL1), Induces Dyslipidemia and Ectopic Fat Formation
title_full_unstemmed Deficient of a Clock Gene, Brain and Muscle Arnt-Like Protein-1 (BMAL1), Induces Dyslipidemia and Ectopic Fat Formation
title_short Deficient of a Clock Gene, Brain and Muscle Arnt-Like Protein-1 (BMAL1), Induces Dyslipidemia and Ectopic Fat Formation
title_sort deficient of a clock gene, brain and muscle arnt-like protein-1 (bmal1), induces dyslipidemia and ectopic fat formation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3178629/
https://www.ncbi.nlm.nih.gov/pubmed/21966465
http://dx.doi.org/10.1371/journal.pone.0025231
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