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Minibrain/Dyrk1a Regulates Food Intake through the Sir2-FOXO-sNPF/NPY Pathway in Drosophila and Mammals

Feeding behavior is one of the most essential activities in animals, which is tightly regulated by neuroendocrine factors. Drosophila melanogaster short neuropeptide F (sNPF) and the mammalian functional homolog neuropeptide Y (NPY) regulate food intake. Understanding the molecular mechanism of sNPF...

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Autores principales: Hong, Seung-Hyun, Lee, Kyu-Sun, Kwak, Su-Jin, Kim, Ae-Kyeong, Bai, Hua, Jung, Min-Su, Kwon, O-Yu, Song, Woo-Joo, Tatar, Marc, Yu, Kweon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3410862/
https://www.ncbi.nlm.nih.gov/pubmed/22876196
http://dx.doi.org/10.1371/journal.pgen.1002857
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author Hong, Seung-Hyun
Lee, Kyu-Sun
Kwak, Su-Jin
Kim, Ae-Kyeong
Bai, Hua
Jung, Min-Su
Kwon, O-Yu
Song, Woo-Joo
Tatar, Marc
Yu, Kweon
author_facet Hong, Seung-Hyun
Lee, Kyu-Sun
Kwak, Su-Jin
Kim, Ae-Kyeong
Bai, Hua
Jung, Min-Su
Kwon, O-Yu
Song, Woo-Joo
Tatar, Marc
Yu, Kweon
author_sort Hong, Seung-Hyun
collection PubMed
description Feeding behavior is one of the most essential activities in animals, which is tightly regulated by neuroendocrine factors. Drosophila melanogaster short neuropeptide F (sNPF) and the mammalian functional homolog neuropeptide Y (NPY) regulate food intake. Understanding the molecular mechanism of sNPF and NPY signaling is critical to elucidate feeding regulation. Here, we found that minibrain (mnb) and the mammalian ortholog Dyrk1a target genes of sNPF and NPY signaling and regulate food intake in Drosophila melanogaster and mice. In Drosophila melanogaster neuronal cells and mouse hypothalamic cells, sNPF and NPY modulated the mnb and Dyrk1a expression through the PKA-CREB pathway. Increased Dyrk1a activated Sirt1 to regulate the deacetylation of FOXO, which potentiated FOXO-induced sNPF/NPY expression and in turn promoted food intake. Conversely, AKT-mediated insulin signaling suppressed FOXO-mediated sNPF/NPY expression, which resulted in decreasing food intake. Furthermore, human Dyrk1a transgenic mice exhibited decreased FOXO acetylation and increased NPY expression in the hypothalamus, as well as increased food intake. Our findings demonstrate that Mnb/Dyrk1a regulates food intake through the evolutionary conserved Sir2-FOXO-sNPF/NPY pathway in Drosophila melanogaster and mammals.
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spelling pubmed-34108622012-08-08 Minibrain/Dyrk1a Regulates Food Intake through the Sir2-FOXO-sNPF/NPY Pathway in Drosophila and Mammals Hong, Seung-Hyun Lee, Kyu-Sun Kwak, Su-Jin Kim, Ae-Kyeong Bai, Hua Jung, Min-Su Kwon, O-Yu Song, Woo-Joo Tatar, Marc Yu, Kweon PLoS Genet Research Article Feeding behavior is one of the most essential activities in animals, which is tightly regulated by neuroendocrine factors. Drosophila melanogaster short neuropeptide F (sNPF) and the mammalian functional homolog neuropeptide Y (NPY) regulate food intake. Understanding the molecular mechanism of sNPF and NPY signaling is critical to elucidate feeding regulation. Here, we found that minibrain (mnb) and the mammalian ortholog Dyrk1a target genes of sNPF and NPY signaling and regulate food intake in Drosophila melanogaster and mice. In Drosophila melanogaster neuronal cells and mouse hypothalamic cells, sNPF and NPY modulated the mnb and Dyrk1a expression through the PKA-CREB pathway. Increased Dyrk1a activated Sirt1 to regulate the deacetylation of FOXO, which potentiated FOXO-induced sNPF/NPY expression and in turn promoted food intake. Conversely, AKT-mediated insulin signaling suppressed FOXO-mediated sNPF/NPY expression, which resulted in decreasing food intake. Furthermore, human Dyrk1a transgenic mice exhibited decreased FOXO acetylation and increased NPY expression in the hypothalamus, as well as increased food intake. Our findings demonstrate that Mnb/Dyrk1a regulates food intake through the evolutionary conserved Sir2-FOXO-sNPF/NPY pathway in Drosophila melanogaster and mammals. Public Library of Science 2012-08-02 /pmc/articles/PMC3410862/ /pubmed/22876196 http://dx.doi.org/10.1371/journal.pgen.1002857 Text en Hong 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
Hong, Seung-Hyun
Lee, Kyu-Sun
Kwak, Su-Jin
Kim, Ae-Kyeong
Bai, Hua
Jung, Min-Su
Kwon, O-Yu
Song, Woo-Joo
Tatar, Marc
Yu, Kweon
Minibrain/Dyrk1a Regulates Food Intake through the Sir2-FOXO-sNPF/NPY Pathway in Drosophila and Mammals
title Minibrain/Dyrk1a Regulates Food Intake through the Sir2-FOXO-sNPF/NPY Pathway in Drosophila and Mammals
title_full Minibrain/Dyrk1a Regulates Food Intake through the Sir2-FOXO-sNPF/NPY Pathway in Drosophila and Mammals
title_fullStr Minibrain/Dyrk1a Regulates Food Intake through the Sir2-FOXO-sNPF/NPY Pathway in Drosophila and Mammals
title_full_unstemmed Minibrain/Dyrk1a Regulates Food Intake through the Sir2-FOXO-sNPF/NPY Pathway in Drosophila and Mammals
title_short Minibrain/Dyrk1a Regulates Food Intake through the Sir2-FOXO-sNPF/NPY Pathway in Drosophila and Mammals
title_sort minibrain/dyrk1a regulates food intake through the sir2-foxo-snpf/npy pathway in drosophila and mammals
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3410862/
https://www.ncbi.nlm.nih.gov/pubmed/22876196
http://dx.doi.org/10.1371/journal.pgen.1002857
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