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Insulin receptor substrate in brain-enriched exosomes in subjects with major depression: on the path of creation of biosignatures of central insulin resistance

Insulin signaling is critical for neuroplasticity, cerebral metabolism as well as for systemic energy metabolism. In rodent studies impaired brain insulin signaling with resultant insulin resistance (IR) modulates synaptic plasticity and the corresponding behavioral functions. Despite discoveries of...

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Autores principales: Nasca, Carla, Dobbin, Josh, Bigio, Benedetta, Watson, Kathleen, de Angelis, Paolo, Kautz, Marin, Cochran, Ashly, Mathé, Aleksander A, Kocsis, James H, Lee, Francis S, Murrough, James W, McEwen, Bruce S, Rasgon, Natalie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7787430/
https://www.ncbi.nlm.nih.gov/pubmed/32536688
http://dx.doi.org/10.1038/s41380-020-0804-7
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author Nasca, Carla
Dobbin, Josh
Bigio, Benedetta
Watson, Kathleen
de Angelis, Paolo
Kautz, Marin
Cochran, Ashly
Mathé, Aleksander A
Kocsis, James H
Lee, Francis S
Murrough, James W
McEwen, Bruce S
Rasgon, Natalie
author_facet Nasca, Carla
Dobbin, Josh
Bigio, Benedetta
Watson, Kathleen
de Angelis, Paolo
Kautz, Marin
Cochran, Ashly
Mathé, Aleksander A
Kocsis, James H
Lee, Francis S
Murrough, James W
McEwen, Bruce S
Rasgon, Natalie
author_sort Nasca, Carla
collection PubMed
description Insulin signaling is critical for neuroplasticity, cerebral metabolism as well as for systemic energy metabolism. In rodent studies impaired brain insulin signaling with resultant insulin resistance (IR) modulates synaptic plasticity and the corresponding behavioral functions. Despite discoveries of central actions of insulin, in-vivo molecular mechanisms of brain IR until recently has proven difficult to study in the human brain. In the current study, we leveraged recent technological advances in molecular biology and herein report an increased number of exosomes enriched for L1CAM, a marker predominantly expressed in the brain, in subjects with major depressive disorder (MDD) as compared to age- and sex-matched healthy controls (HC). We also report increased concentration of the insulin receptor substrate-1 (IRS-1) in L1CAM(+) exosomes in subjects with MDD as compared to age- and sex-matched HC. We found a relationship between expression of IRS-1 in L1CAM(+) exosomes and systemic IR as assessed by homeostatic model assessment of IR in HC, but not in subjects with MDD. The increased IRS-1 levels in L1CAM(+) exosomes were greater in subjects with MDD and were associated with suicidality and anhedonia. Finally, our data suggested sex differences in serine-312 phosphorylation of IRS-1 in L1CAM(+) exosomes in subjects with MDD. These findings provide a starting point for creating mechanistic framework of brain IR in further development of personalized medicine strategies to effectively treat MDD.
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spelling pubmed-77874302021-11-17 Insulin receptor substrate in brain-enriched exosomes in subjects with major depression: on the path of creation of biosignatures of central insulin resistance Nasca, Carla Dobbin, Josh Bigio, Benedetta Watson, Kathleen de Angelis, Paolo Kautz, Marin Cochran, Ashly Mathé, Aleksander A Kocsis, James H Lee, Francis S Murrough, James W McEwen, Bruce S Rasgon, Natalie Mol Psychiatry Article Insulin signaling is critical for neuroplasticity, cerebral metabolism as well as for systemic energy metabolism. In rodent studies impaired brain insulin signaling with resultant insulin resistance (IR) modulates synaptic plasticity and the corresponding behavioral functions. Despite discoveries of central actions of insulin, in-vivo molecular mechanisms of brain IR until recently has proven difficult to study in the human brain. In the current study, we leveraged recent technological advances in molecular biology and herein report an increased number of exosomes enriched for L1CAM, a marker predominantly expressed in the brain, in subjects with major depressive disorder (MDD) as compared to age- and sex-matched healthy controls (HC). We also report increased concentration of the insulin receptor substrate-1 (IRS-1) in L1CAM(+) exosomes in subjects with MDD as compared to age- and sex-matched HC. We found a relationship between expression of IRS-1 in L1CAM(+) exosomes and systemic IR as assessed by homeostatic model assessment of IR in HC, but not in subjects with MDD. The increased IRS-1 levels in L1CAM(+) exosomes were greater in subjects with MDD and were associated with suicidality and anhedonia. Finally, our data suggested sex differences in serine-312 phosphorylation of IRS-1 in L1CAM(+) exosomes in subjects with MDD. These findings provide a starting point for creating mechanistic framework of brain IR in further development of personalized medicine strategies to effectively treat MDD. 2020-06-15 2021-09 /pmc/articles/PMC7787430/ /pubmed/32536688 http://dx.doi.org/10.1038/s41380-020-0804-7 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Nasca, Carla
Dobbin, Josh
Bigio, Benedetta
Watson, Kathleen
de Angelis, Paolo
Kautz, Marin
Cochran, Ashly
Mathé, Aleksander A
Kocsis, James H
Lee, Francis S
Murrough, James W
McEwen, Bruce S
Rasgon, Natalie
Insulin receptor substrate in brain-enriched exosomes in subjects with major depression: on the path of creation of biosignatures of central insulin resistance
title Insulin receptor substrate in brain-enriched exosomes in subjects with major depression: on the path of creation of biosignatures of central insulin resistance
title_full Insulin receptor substrate in brain-enriched exosomes in subjects with major depression: on the path of creation of biosignatures of central insulin resistance
title_fullStr Insulin receptor substrate in brain-enriched exosomes in subjects with major depression: on the path of creation of biosignatures of central insulin resistance
title_full_unstemmed Insulin receptor substrate in brain-enriched exosomes in subjects with major depression: on the path of creation of biosignatures of central insulin resistance
title_short Insulin receptor substrate in brain-enriched exosomes in subjects with major depression: on the path of creation of biosignatures of central insulin resistance
title_sort insulin receptor substrate in brain-enriched exosomes in subjects with major depression: on the path of creation of biosignatures of central insulin resistance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7787430/
https://www.ncbi.nlm.nih.gov/pubmed/32536688
http://dx.doi.org/10.1038/s41380-020-0804-7
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