Developmental profiles of SUMOylation pathway proteins in rat cerebrum and cerebellum.

Protein SUMOylation regulates multiple processes involved in the differentiation and maturation of cells and tissues during development. Despite this, relatively little is known about the spatial and temporal regulation of proteins that mediate SUMOylation and deSUMOylation in the CNS. Here we monit...

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Main Authors: Fernando Josa-Prado, Jia Luo, Philip Rubin, Jeremy M Henley, Kevin A Wilkinson
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2019-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0212857
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author Fernando Josa-Prado
Jia Luo
Philip Rubin
Jeremy M Henley
Kevin A Wilkinson
author_facet Fernando Josa-Prado
Jia Luo
Philip Rubin
Jeremy M Henley
Kevin A Wilkinson
author_sort Fernando Josa-Prado
collection DOAJ
description Protein SUMOylation regulates multiple processes involved in the differentiation and maturation of cells and tissues during development. Despite this, relatively little is known about the spatial and temporal regulation of proteins that mediate SUMOylation and deSUMOylation in the CNS. Here we monitor the expression of key SUMO pathway proteins and levels of substrate protein SUMOylation in the forebrain and cerebellum of Wistar rats during development. Overall, the SUMOylation machinery is more highly-expressed at E18 and decreases thereafter, as previously described. All of the proteins investigated are less abundant in adult than in embryonic brain. Furthermore, we show for first time that the profiles differ between cerebellum and cerebrum, indicating differential regional regulation of some of the proteins analysed. These data provide further basic observation that may open a new perspective of research about the role of SUMOylation in the development of different brain regions.
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spelling doaj.art-dd9b6dd1317f4effab42febc6d7132ce2023-02-17T05:32:35ZengPublic Library of Science (PLoS)PLoS ONE1932-62032019-01-01142e021285710.1371/journal.pone.0212857Developmental profiles of SUMOylation pathway proteins in rat cerebrum and cerebellum.Fernando Josa-PradoJia LuoPhilip RubinJeremy M HenleyKevin A WilkinsonProtein SUMOylation regulates multiple processes involved in the differentiation and maturation of cells and tissues during development. Despite this, relatively little is known about the spatial and temporal regulation of proteins that mediate SUMOylation and deSUMOylation in the CNS. Here we monitor the expression of key SUMO pathway proteins and levels of substrate protein SUMOylation in the forebrain and cerebellum of Wistar rats during development. Overall, the SUMOylation machinery is more highly-expressed at E18 and decreases thereafter, as previously described. All of the proteins investigated are less abundant in adult than in embryonic brain. Furthermore, we show for first time that the profiles differ between cerebellum and cerebrum, indicating differential regional regulation of some of the proteins analysed. These data provide further basic observation that may open a new perspective of research about the role of SUMOylation in the development of different brain regions.https://doi.org/10.1371/journal.pone.0212857
spellingShingle Fernando Josa-Prado
Jia Luo
Philip Rubin
Jeremy M Henley
Kevin A Wilkinson
Developmental profiles of SUMOylation pathway proteins in rat cerebrum and cerebellum.
PLoS ONE
title Developmental profiles of SUMOylation pathway proteins in rat cerebrum and cerebellum.
title_full Developmental profiles of SUMOylation pathway proteins in rat cerebrum and cerebellum.
title_fullStr Developmental profiles of SUMOylation pathway proteins in rat cerebrum and cerebellum.
title_full_unstemmed Developmental profiles of SUMOylation pathway proteins in rat cerebrum and cerebellum.
title_short Developmental profiles of SUMOylation pathway proteins in rat cerebrum and cerebellum.
title_sort developmental profiles of sumoylation pathway proteins in rat cerebrum and cerebellum
url https://doi.org/10.1371/journal.pone.0212857
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