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DISC1-dependent Regulation of Mitochondrial Dynamics Controls the Morphogenesis of Complex Neuronal Dendrites

The DISC1 protein is implicated in major mental illnesses including schizophrenia, depression, bipolar disorder, and autism. Aberrant mitochondrial dynamics are also associated with major mental illness. DISC1 plays a role in mitochondrial transport in neuronal axons, but its effects in dendrites ha...

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Autores principales: Norkett, Rosalind, Modi, Souvik, Birsa, Nicol, Atkin, Talia A., Ivankovic, Davor, Pathania, Manav, Trossbach, Svenja V., Korth, Carsten, Hirst, Warren D., Kittler, Josef T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4705382/
https://www.ncbi.nlm.nih.gov/pubmed/26553875
http://dx.doi.org/10.1074/jbc.M115.699447
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author Norkett, Rosalind
Modi, Souvik
Birsa, Nicol
Atkin, Talia A.
Ivankovic, Davor
Pathania, Manav
Trossbach, Svenja V.
Korth, Carsten
Hirst, Warren D.
Kittler, Josef T.
author_facet Norkett, Rosalind
Modi, Souvik
Birsa, Nicol
Atkin, Talia A.
Ivankovic, Davor
Pathania, Manav
Trossbach, Svenja V.
Korth, Carsten
Hirst, Warren D.
Kittler, Josef T.
author_sort Norkett, Rosalind
collection PubMed
description The DISC1 protein is implicated in major mental illnesses including schizophrenia, depression, bipolar disorder, and autism. Aberrant mitochondrial dynamics are also associated with major mental illness. DISC1 plays a role in mitochondrial transport in neuronal axons, but its effects in dendrites have yet to be studied. Further, the mechanisms of this regulation and its role in neuronal development and brain function are poorly understood. Here we have demonstrated that DISC1 couples to the mitochondrial transport and fusion machinery via interaction with the outer mitochondrial membrane GTPase proteins Miro1 and Miro2, the TRAK1 and TRAK2 mitochondrial trafficking adaptors, and the mitochondrial fusion proteins (mitofusins). Using live cell imaging, we show that disruption of the DISC1-Miro-TRAK complex inhibits mitochondrial transport in neurons. We also show that the fusion protein generated from the originally described DISC1 translocation (DISC1-Boymaw) localizes to the mitochondria, where it similarly disrupts mitochondrial dynamics. We also show by super resolution microscopy that DISC1 is localized to endoplasmic reticulum contact sites and that the DISC1-Boymaw fusion protein decreases the endoplasmic reticulum-mitochondria contact area. Moreover, disruption of mitochondrial dynamics by targeting the DISC1-Miro-TRAK complex or upon expression of the DISC1-Boymaw fusion protein impairs the correct development of neuronal dendrites. Thus, DISC1 acts as an important regulator of mitochondrial dynamics in both axons and dendrites to mediate the transport, fusion, and cross-talk of these organelles, and pathological DISC1 isoforms disrupt this critical function leading to abnormal neuronal development.
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spelling pubmed-47053822016-01-14 DISC1-dependent Regulation of Mitochondrial Dynamics Controls the Morphogenesis of Complex Neuronal Dendrites Norkett, Rosalind Modi, Souvik Birsa, Nicol Atkin, Talia A. Ivankovic, Davor Pathania, Manav Trossbach, Svenja V. Korth, Carsten Hirst, Warren D. Kittler, Josef T. J Biol Chem Neurobiology The DISC1 protein is implicated in major mental illnesses including schizophrenia, depression, bipolar disorder, and autism. Aberrant mitochondrial dynamics are also associated with major mental illness. DISC1 plays a role in mitochondrial transport in neuronal axons, but its effects in dendrites have yet to be studied. Further, the mechanisms of this regulation and its role in neuronal development and brain function are poorly understood. Here we have demonstrated that DISC1 couples to the mitochondrial transport and fusion machinery via interaction with the outer mitochondrial membrane GTPase proteins Miro1 and Miro2, the TRAK1 and TRAK2 mitochondrial trafficking adaptors, and the mitochondrial fusion proteins (mitofusins). Using live cell imaging, we show that disruption of the DISC1-Miro-TRAK complex inhibits mitochondrial transport in neurons. We also show that the fusion protein generated from the originally described DISC1 translocation (DISC1-Boymaw) localizes to the mitochondria, where it similarly disrupts mitochondrial dynamics. We also show by super resolution microscopy that DISC1 is localized to endoplasmic reticulum contact sites and that the DISC1-Boymaw fusion protein decreases the endoplasmic reticulum-mitochondria contact area. Moreover, disruption of mitochondrial dynamics by targeting the DISC1-Miro-TRAK complex or upon expression of the DISC1-Boymaw fusion protein impairs the correct development of neuronal dendrites. Thus, DISC1 acts as an important regulator of mitochondrial dynamics in both axons and dendrites to mediate the transport, fusion, and cross-talk of these organelles, and pathological DISC1 isoforms disrupt this critical function leading to abnormal neuronal development. American Society for Biochemistry and Molecular Biology 2016-01-08 2015-11-09 /pmc/articles/PMC4705382/ /pubmed/26553875 http://dx.doi.org/10.1074/jbc.M115.699447 Text en © 2016 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version free via Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) .
spellingShingle Neurobiology
Norkett, Rosalind
Modi, Souvik
Birsa, Nicol
Atkin, Talia A.
Ivankovic, Davor
Pathania, Manav
Trossbach, Svenja V.
Korth, Carsten
Hirst, Warren D.
Kittler, Josef T.
DISC1-dependent Regulation of Mitochondrial Dynamics Controls the Morphogenesis of Complex Neuronal Dendrites
title DISC1-dependent Regulation of Mitochondrial Dynamics Controls the Morphogenesis of Complex Neuronal Dendrites
title_full DISC1-dependent Regulation of Mitochondrial Dynamics Controls the Morphogenesis of Complex Neuronal Dendrites
title_fullStr DISC1-dependent Regulation of Mitochondrial Dynamics Controls the Morphogenesis of Complex Neuronal Dendrites
title_full_unstemmed DISC1-dependent Regulation of Mitochondrial Dynamics Controls the Morphogenesis of Complex Neuronal Dendrites
title_short DISC1-dependent Regulation of Mitochondrial Dynamics Controls the Morphogenesis of Complex Neuronal Dendrites
title_sort disc1-dependent regulation of mitochondrial dynamics controls the morphogenesis of complex neuronal dendrites
topic Neurobiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4705382/
https://www.ncbi.nlm.nih.gov/pubmed/26553875
http://dx.doi.org/10.1074/jbc.M115.699447
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