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PP2A phosphatase regulates cell-type specific cytoskeletal organization to drive dendrite diversity

Uncovering molecular mechanisms regulating dendritic diversification is essential to understanding the formation and modulation of functional neural circuitry. Transcription factors play critical roles in promoting dendritic diversity and here, we identify PP2A phosphatase function as a downstream e...

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Autores principales: Bhattacharjee, Shatabdi, Lottes, Erin N., Nanda, Sumit, Golshir, Andre, Patel, Atit A., Ascoli, Giorgio A., Cox, Daniel N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9702092/
https://www.ncbi.nlm.nih.gov/pubmed/36452406
http://dx.doi.org/10.3389/fnmol.2022.926567
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author Bhattacharjee, Shatabdi
Lottes, Erin N.
Nanda, Sumit
Golshir, Andre
Patel, Atit A.
Ascoli, Giorgio A.
Cox, Daniel N.
author_facet Bhattacharjee, Shatabdi
Lottes, Erin N.
Nanda, Sumit
Golshir, Andre
Patel, Atit A.
Ascoli, Giorgio A.
Cox, Daniel N.
author_sort Bhattacharjee, Shatabdi
collection PubMed
description Uncovering molecular mechanisms regulating dendritic diversification is essential to understanding the formation and modulation of functional neural circuitry. Transcription factors play critical roles in promoting dendritic diversity and here, we identify PP2A phosphatase function as a downstream effector of Cut-mediated transcriptional regulation of dendrite development. Mutant analyses of the PP2A catalytic subunit (mts) or the scaffolding subunit (PP2A-29B) reveal cell-type specific regulatory effects with the PP2A complex required to promote dendritic growth and branching in Drosophila Class IV (CIV) multidendritic (md) neurons, whereas in Class I (CI) md neurons, PP2A functions in restricting dendritic arborization. Cytoskeletal analyses reveal requirements for Mts in regulating microtubule stability/polarity and F-actin organization/dynamics. In CIV neurons, mts knockdown leads to reductions in dendritic localization of organelles including mitochondria and satellite Golgi outposts, while CI neurons show increased Golgi outpost trafficking along the dendritic arbor. Further, mts mutant neurons exhibit defects in neuronal polarity/compartmentalization. Finally, genetic interaction analyses suggest β-tubulin subunit 85D is a common PP2A target in CI and CIV neurons, while FoxO is a putative target in CI neurons.
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spelling pubmed-97020922022-11-29 PP2A phosphatase regulates cell-type specific cytoskeletal organization to drive dendrite diversity Bhattacharjee, Shatabdi Lottes, Erin N. Nanda, Sumit Golshir, Andre Patel, Atit A. Ascoli, Giorgio A. Cox, Daniel N. Front Mol Neurosci Neuroscience Uncovering molecular mechanisms regulating dendritic diversification is essential to understanding the formation and modulation of functional neural circuitry. Transcription factors play critical roles in promoting dendritic diversity and here, we identify PP2A phosphatase function as a downstream effector of Cut-mediated transcriptional regulation of dendrite development. Mutant analyses of the PP2A catalytic subunit (mts) or the scaffolding subunit (PP2A-29B) reveal cell-type specific regulatory effects with the PP2A complex required to promote dendritic growth and branching in Drosophila Class IV (CIV) multidendritic (md) neurons, whereas in Class I (CI) md neurons, PP2A functions in restricting dendritic arborization. Cytoskeletal analyses reveal requirements for Mts in regulating microtubule stability/polarity and F-actin organization/dynamics. In CIV neurons, mts knockdown leads to reductions in dendritic localization of organelles including mitochondria and satellite Golgi outposts, while CI neurons show increased Golgi outpost trafficking along the dendritic arbor. Further, mts mutant neurons exhibit defects in neuronal polarity/compartmentalization. Finally, genetic interaction analyses suggest β-tubulin subunit 85D is a common PP2A target in CI and CIV neurons, while FoxO is a putative target in CI neurons. Frontiers Media S.A. 2022-11-14 /pmc/articles/PMC9702092/ /pubmed/36452406 http://dx.doi.org/10.3389/fnmol.2022.926567 Text en Copyright © 2022 Bhattacharjee, Lottes, Nanda, Golshir, Patel, Ascoli and Cox. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Bhattacharjee, Shatabdi
Lottes, Erin N.
Nanda, Sumit
Golshir, Andre
Patel, Atit A.
Ascoli, Giorgio A.
Cox, Daniel N.
PP2A phosphatase regulates cell-type specific cytoskeletal organization to drive dendrite diversity
title PP2A phosphatase regulates cell-type specific cytoskeletal organization to drive dendrite diversity
title_full PP2A phosphatase regulates cell-type specific cytoskeletal organization to drive dendrite diversity
title_fullStr PP2A phosphatase regulates cell-type specific cytoskeletal organization to drive dendrite diversity
title_full_unstemmed PP2A phosphatase regulates cell-type specific cytoskeletal organization to drive dendrite diversity
title_short PP2A phosphatase regulates cell-type specific cytoskeletal organization to drive dendrite diversity
title_sort pp2a phosphatase regulates cell-type specific cytoskeletal organization to drive dendrite diversity
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9702092/
https://www.ncbi.nlm.nih.gov/pubmed/36452406
http://dx.doi.org/10.3389/fnmol.2022.926567
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