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A Transcriptomic Signature of the Hypothalamic Response to Fasting and BDNF Deficiency in Prader-Willi Syndrome

Transcriptional analysis of brain tissue from people with molecularly defined causes of obesity may highlight disease mechanisms and therapeutic targets. We performed RNA sequencing of hypothalamus from individuals with Prader-Willi syndrome (PWS), a genetic obesity syndrome characterized by severe...

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Autores principales: Bochukova, Elena G., Lawler, Katherine, Croizier, Sophie, Keogh, Julia M., Patel, Nisha, Strohbehn, Garth, Lo, Kitty K., Humphrey, Jack, Hokken-Koelega, Anita, Damen, Layla, Donze, Stephany, Bouret, Sebastien G., Plagnol, Vincent, Farooqi, I. Sadaf
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5896230/
https://www.ncbi.nlm.nih.gov/pubmed/29590610
http://dx.doi.org/10.1016/j.celrep.2018.03.018
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author Bochukova, Elena G.
Lawler, Katherine
Croizier, Sophie
Keogh, Julia M.
Patel, Nisha
Strohbehn, Garth
Lo, Kitty K.
Humphrey, Jack
Hokken-Koelega, Anita
Damen, Layla
Donze, Stephany
Bouret, Sebastien G.
Plagnol, Vincent
Farooqi, I. Sadaf
author_facet Bochukova, Elena G.
Lawler, Katherine
Croizier, Sophie
Keogh, Julia M.
Patel, Nisha
Strohbehn, Garth
Lo, Kitty K.
Humphrey, Jack
Hokken-Koelega, Anita
Damen, Layla
Donze, Stephany
Bouret, Sebastien G.
Plagnol, Vincent
Farooqi, I. Sadaf
author_sort Bochukova, Elena G.
collection PubMed
description Transcriptional analysis of brain tissue from people with molecularly defined causes of obesity may highlight disease mechanisms and therapeutic targets. We performed RNA sequencing of hypothalamus from individuals with Prader-Willi syndrome (PWS), a genetic obesity syndrome characterized by severe hyperphagia. We found that upregulated genes overlap with the transcriptome of mouse Agrp neurons that signal hunger, while downregulated genes overlap with the expression profile of Pomc neurons activated by feeding. Downregulated genes are expressed mainly in neuronal cells and contribute to neurogenesis, neurotransmitter release, and synaptic plasticity, while upregulated, predominantly microglial genes are involved in inflammatory responses. This transcriptional signature may be mediated by reduced brain-derived neurotrophic factor expression. Additionally, we implicate disruption of alternative splicing as a potential molecular mechanism underlying neuronal dysfunction in PWS. Transcriptomic analysis of the human hypothalamus may identify neural mechanisms involved in energy homeostasis and potential therapeutic targets for weight loss.
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spelling pubmed-58962302018-04-13 A Transcriptomic Signature of the Hypothalamic Response to Fasting and BDNF Deficiency in Prader-Willi Syndrome Bochukova, Elena G. Lawler, Katherine Croizier, Sophie Keogh, Julia M. Patel, Nisha Strohbehn, Garth Lo, Kitty K. Humphrey, Jack Hokken-Koelega, Anita Damen, Layla Donze, Stephany Bouret, Sebastien G. Plagnol, Vincent Farooqi, I. Sadaf Cell Rep Article Transcriptional analysis of brain tissue from people with molecularly defined causes of obesity may highlight disease mechanisms and therapeutic targets. We performed RNA sequencing of hypothalamus from individuals with Prader-Willi syndrome (PWS), a genetic obesity syndrome characterized by severe hyperphagia. We found that upregulated genes overlap with the transcriptome of mouse Agrp neurons that signal hunger, while downregulated genes overlap with the expression profile of Pomc neurons activated by feeding. Downregulated genes are expressed mainly in neuronal cells and contribute to neurogenesis, neurotransmitter release, and synaptic plasticity, while upregulated, predominantly microglial genes are involved in inflammatory responses. This transcriptional signature may be mediated by reduced brain-derived neurotrophic factor expression. Additionally, we implicate disruption of alternative splicing as a potential molecular mechanism underlying neuronal dysfunction in PWS. Transcriptomic analysis of the human hypothalamus may identify neural mechanisms involved in energy homeostasis and potential therapeutic targets for weight loss. Cell Press 2018-03-05 /pmc/articles/PMC5896230/ /pubmed/29590610 http://dx.doi.org/10.1016/j.celrep.2018.03.018 Text en © 2018 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bochukova, Elena G.
Lawler, Katherine
Croizier, Sophie
Keogh, Julia M.
Patel, Nisha
Strohbehn, Garth
Lo, Kitty K.
Humphrey, Jack
Hokken-Koelega, Anita
Damen, Layla
Donze, Stephany
Bouret, Sebastien G.
Plagnol, Vincent
Farooqi, I. Sadaf
A Transcriptomic Signature of the Hypothalamic Response to Fasting and BDNF Deficiency in Prader-Willi Syndrome
title A Transcriptomic Signature of the Hypothalamic Response to Fasting and BDNF Deficiency in Prader-Willi Syndrome
title_full A Transcriptomic Signature of the Hypothalamic Response to Fasting and BDNF Deficiency in Prader-Willi Syndrome
title_fullStr A Transcriptomic Signature of the Hypothalamic Response to Fasting and BDNF Deficiency in Prader-Willi Syndrome
title_full_unstemmed A Transcriptomic Signature of the Hypothalamic Response to Fasting and BDNF Deficiency in Prader-Willi Syndrome
title_short A Transcriptomic Signature of the Hypothalamic Response to Fasting and BDNF Deficiency in Prader-Willi Syndrome
title_sort transcriptomic signature of the hypothalamic response to fasting and bdnf deficiency in prader-willi syndrome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5896230/
https://www.ncbi.nlm.nih.gov/pubmed/29590610
http://dx.doi.org/10.1016/j.celrep.2018.03.018
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