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DLK1 Expressed in Mouse Orexin Neurons Modulates Anxio-Depressive Behavior but Not Energy Balance

Lateral hypothalamic area (LHA) neurons expressing the neuropeptide orexin (OX) are implicated in obesity and anxio-depression. However, these neurons release OX as well as a host of other proteins that might contribute to normal physiology and disease states. We hypothesized that delta-like homolog...

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Autores principales: Harris, Tatiyana, Bugescu, Raluca, Kelly, Jaylyn, Makela, Anna, Sotzen, Morgan, Sisk, Cheryl, Atkin, Graham, Pratt, Rebecca, Crockett, Elahé, Leinninger, Gina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7764426/
https://www.ncbi.nlm.nih.gov/pubmed/33322758
http://dx.doi.org/10.3390/brainsci10120975
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author Harris, Tatiyana
Bugescu, Raluca
Kelly, Jaylyn
Makela, Anna
Sotzen, Morgan
Sisk, Cheryl
Atkin, Graham
Pratt, Rebecca
Crockett, Elahé
Leinninger, Gina
author_facet Harris, Tatiyana
Bugescu, Raluca
Kelly, Jaylyn
Makela, Anna
Sotzen, Morgan
Sisk, Cheryl
Atkin, Graham
Pratt, Rebecca
Crockett, Elahé
Leinninger, Gina
author_sort Harris, Tatiyana
collection PubMed
description Lateral hypothalamic area (LHA) neurons expressing the neuropeptide orexin (OX) are implicated in obesity and anxio-depression. However, these neurons release OX as well as a host of other proteins that might contribute to normal physiology and disease states. We hypothesized that delta-like homolog 1 (DLK1), a protein reported to be co-expressed by all OX neurons, contributes to the regulation of energy balance and/or anxio-depression. Consistent with previous reports, we found that all rat OX neurons co-express DLK1. Yet, in mice and humans only a subset of OX neurons co-expressed DLK1. Since human OX-DLK1 distribution is more similar to mice than rats, mice are a comparable model to assess the human physiologic role of DLK1. We therefore used a viral lesion strategy to selectively delete DLK1 within the LHA of adult mice (DLK1(Null)) to reveal its role in body weight and behavior. Adult-onset DLK1 deletion had no impact on body weight or ingestive behavior. However, DLK1(Null) mice engaged in more locomotor activity than control mice and had decreased anxiety and depression measured via the elevated plus maze and forced swim tests. These data suggest that DLK1 expression via DLK1-expressing OX neurons primarily contributes to anxio-depression behaviors without impacting body weight.
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spelling pubmed-77644262020-12-27 DLK1 Expressed in Mouse Orexin Neurons Modulates Anxio-Depressive Behavior but Not Energy Balance Harris, Tatiyana Bugescu, Raluca Kelly, Jaylyn Makela, Anna Sotzen, Morgan Sisk, Cheryl Atkin, Graham Pratt, Rebecca Crockett, Elahé Leinninger, Gina Brain Sci Article Lateral hypothalamic area (LHA) neurons expressing the neuropeptide orexin (OX) are implicated in obesity and anxio-depression. However, these neurons release OX as well as a host of other proteins that might contribute to normal physiology and disease states. We hypothesized that delta-like homolog 1 (DLK1), a protein reported to be co-expressed by all OX neurons, contributes to the regulation of energy balance and/or anxio-depression. Consistent with previous reports, we found that all rat OX neurons co-express DLK1. Yet, in mice and humans only a subset of OX neurons co-expressed DLK1. Since human OX-DLK1 distribution is more similar to mice than rats, mice are a comparable model to assess the human physiologic role of DLK1. We therefore used a viral lesion strategy to selectively delete DLK1 within the LHA of adult mice (DLK1(Null)) to reveal its role in body weight and behavior. Adult-onset DLK1 deletion had no impact on body weight or ingestive behavior. However, DLK1(Null) mice engaged in more locomotor activity than control mice and had decreased anxiety and depression measured via the elevated plus maze and forced swim tests. These data suggest that DLK1 expression via DLK1-expressing OX neurons primarily contributes to anxio-depression behaviors without impacting body weight. MDPI 2020-12-12 /pmc/articles/PMC7764426/ /pubmed/33322758 http://dx.doi.org/10.3390/brainsci10120975 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Harris, Tatiyana
Bugescu, Raluca
Kelly, Jaylyn
Makela, Anna
Sotzen, Morgan
Sisk, Cheryl
Atkin, Graham
Pratt, Rebecca
Crockett, Elahé
Leinninger, Gina
DLK1 Expressed in Mouse Orexin Neurons Modulates Anxio-Depressive Behavior but Not Energy Balance
title DLK1 Expressed in Mouse Orexin Neurons Modulates Anxio-Depressive Behavior but Not Energy Balance
title_full DLK1 Expressed in Mouse Orexin Neurons Modulates Anxio-Depressive Behavior but Not Energy Balance
title_fullStr DLK1 Expressed in Mouse Orexin Neurons Modulates Anxio-Depressive Behavior but Not Energy Balance
title_full_unstemmed DLK1 Expressed in Mouse Orexin Neurons Modulates Anxio-Depressive Behavior but Not Energy Balance
title_short DLK1 Expressed in Mouse Orexin Neurons Modulates Anxio-Depressive Behavior but Not Energy Balance
title_sort dlk1 expressed in mouse orexin neurons modulates anxio-depressive behavior but not energy balance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7764426/
https://www.ncbi.nlm.nih.gov/pubmed/33322758
http://dx.doi.org/10.3390/brainsci10120975
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