Omega-3 fatty acid deficiency disrupts endocytosis, neuritogenesis, and mitochondrial protein pathways in the mouse hippocampus.

Omega-3 fatty acid (n-3 FA) deficiency is an environmental risk factor for schizophrenia, yet characterisation of the consequences of deficiency at the protein level in the brain is limited. We aimed to identify the protein pathways disrupted as a consequence of chronic n-3 deficiency in the hippoc...

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Main Authors: Jane A English, Akiko eHarauma, Melanie eFöcking, Kieran eWynne, Caitriona eScaife, Gerard eCagney, Toru eMoriguchi, David R Cotter
Format: Article
Language:English
Published: Frontiers Media S.A. 2013-10-01
Series:Frontiers in Genetics
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fgene.2013.00208/full
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author Jane A English
Jane A English
Akiko eHarauma
Melanie eFöcking
Kieran eWynne
Caitriona eScaife
Gerard eCagney
Toru eMoriguchi
David R Cotter
author_facet Jane A English
Jane A English
Akiko eHarauma
Melanie eFöcking
Kieran eWynne
Caitriona eScaife
Gerard eCagney
Toru eMoriguchi
David R Cotter
author_sort Jane A English
collection DOAJ
description Omega-3 fatty acid (n-3 FA) deficiency is an environmental risk factor for schizophrenia, yet characterisation of the consequences of deficiency at the protein level in the brain is limited. We aimed to identify the protein pathways disrupted as a consequence of chronic n-3 deficiency in the hippocampus of mice. Fatty acid analysis of the hippocampus following chronic dietary deficiency revealed a 3-fold decrease (p
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spelling doaj.art-6bb07268faca4ee58ec8fe2bf39ceb422022-12-21T18:59:50ZengFrontiers Media S.A.Frontiers in Genetics1664-80212013-10-01410.3389/fgene.2013.0020863730Omega-3 fatty acid deficiency disrupts endocytosis, neuritogenesis, and mitochondrial protein pathways in the mouse hippocampus.Jane A English0Jane A English1Akiko eHarauma2Melanie eFöcking3Kieran eWynne4Caitriona eScaife5Gerard eCagney6Toru eMoriguchi7David R Cotter8Royal College of Surgeons in IrelandUniversity College DublinAzabu UniversityRoyal College of Surgeons in IrelandUniversity College DublinUniversity College DublinUniversity College DublinAzabu UniversityRoyal College of Surgeons in IrelandOmega-3 fatty acid (n-3 FA) deficiency is an environmental risk factor for schizophrenia, yet characterisation of the consequences of deficiency at the protein level in the brain is limited. We aimed to identify the protein pathways disrupted as a consequence of chronic n-3 deficiency in the hippocampus of mice. Fatty acid analysis of the hippocampus following chronic dietary deficiency revealed a 3-fold decrease (phttp://journal.frontiersin.org/Journal/10.3389/fgene.2013.00208/fullProteomicsSchizophrenianeuritogenesisMitochondrial dysfunctionOmega-3 fatty AcidsClathrin Mediated Endocytisis
spellingShingle Jane A English
Jane A English
Akiko eHarauma
Melanie eFöcking
Kieran eWynne
Caitriona eScaife
Gerard eCagney
Toru eMoriguchi
David R Cotter
Omega-3 fatty acid deficiency disrupts endocytosis, neuritogenesis, and mitochondrial protein pathways in the mouse hippocampus.
Frontiers in Genetics
Proteomics
Schizophrenia
neuritogenesis
Mitochondrial dysfunction
Omega-3 fatty Acids
Clathrin Mediated Endocytisis
title Omega-3 fatty acid deficiency disrupts endocytosis, neuritogenesis, and mitochondrial protein pathways in the mouse hippocampus.
title_full Omega-3 fatty acid deficiency disrupts endocytosis, neuritogenesis, and mitochondrial protein pathways in the mouse hippocampus.
title_fullStr Omega-3 fatty acid deficiency disrupts endocytosis, neuritogenesis, and mitochondrial protein pathways in the mouse hippocampus.
title_full_unstemmed Omega-3 fatty acid deficiency disrupts endocytosis, neuritogenesis, and mitochondrial protein pathways in the mouse hippocampus.
title_short Omega-3 fatty acid deficiency disrupts endocytosis, neuritogenesis, and mitochondrial protein pathways in the mouse hippocampus.
title_sort omega 3 fatty acid deficiency disrupts endocytosis neuritogenesis and mitochondrial protein pathways in the mouse hippocampus
topic Proteomics
Schizophrenia
neuritogenesis
Mitochondrial dysfunction
Omega-3 fatty Acids
Clathrin Mediated Endocytisis
url http://journal.frontiersin.org/Journal/10.3389/fgene.2013.00208/full
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