Emerin Phosphorylation during the Early Phase of the Oxidative Stress Response Influences Emerin–BAF Interaction and BAF Nuclear Localization

Reactive Oxygen Species (ROS) are reactive molecules required for the maintenance of physiological functions. Oxidative stress arises when ROS production exceeds the cellular ability to eliminate such molecules. In this study, we showed that oxidative stress induces post-translational modification o...

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Main Authors: Vittoria Cenni, Stefano Squarzoni, Manuela Loi, Elisabetta Mattioli, Giovanna Lattanzi, Cristina Capanni
Format: Article
Language:English
Published: MDPI AG 2020-06-01
Series:Cells
Subjects:
BAF
Online Access:https://www.mdpi.com/2073-4409/9/6/1415
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spelling doaj-8296c9e52c5b4290a26df15d277b40942020-11-25T03:22:15ZengMDPI AGCells2073-44092020-06-0191415141510.3390/cells9061415Emerin Phosphorylation during the Early Phase of the Oxidative Stress Response Influences Emerin–BAF Interaction and BAF Nuclear LocalizationVittoria Cenni0Stefano Squarzoni1Manuela Loi2Elisabetta Mattioli3Giovanna Lattanzi4Cristina Capanni5CNR Institute of Molecular Genetics “Luigi Luca Cavalli-Sforza”, Unit of Bologna, 40136 Bologna, ItalyCNR Institute of Molecular Genetics “Luigi Luca Cavalli-Sforza”, Unit of Bologna, 40136 Bologna, ItalyCNR Institute of Molecular Genetics “Luigi Luca Cavalli-Sforza”, Unit of Bologna, 40136 Bologna, ItalyCNR Institute of Molecular Genetics “Luigi Luca Cavalli-Sforza”, Unit of Bologna, 40136 Bologna, ItalyCNR Institute of Molecular Genetics “Luigi Luca Cavalli-Sforza”, Unit of Bologna, 40136 Bologna, ItalyCNR Institute of Molecular Genetics “Luigi Luca Cavalli-Sforza”, Unit of Bologna, 40136 Bologna, ItalyReactive Oxygen Species (ROS) are reactive molecules required for the maintenance of physiological functions. Oxidative stress arises when ROS production exceeds the cellular ability to eliminate such molecules. In this study, we showed that oxidative stress induces post-translational modification of the inner nuclear membrane protein emerin. In particular, emerin is phosphorylated at the early stages of the oxidative stress response, while protein phosphorylation is abolished upon recovery from stress. A finely tuned balance between emerin phosphorylation and <i>O</i>-GlcNAcylation seems to govern this dynamic and modulates emerin–BAF interaction and BAF nucleoplasmic localization during the oxidative stress response. Interestingly, emerin post-translational modifications, similar to those observed during the stress response, are detected in cells bearing <i>LMNA</i> gene mutations and are characterized by a free radical generating environment. On the other hand, under oxidative stress conditions, a delay in DNA damage repair and cell cycle progression is found in cells from Emery–Dreifuss Muscular Dystrophy type 1, which do not express emerin. These results suggest a role of the emerin–BAF protein platform in the DNA damage response aimed at counteracting the detrimental effects of elevated levels of ROS.https://www.mdpi.com/2073-4409/9/6/1415emerinEDMD1BAFBANF1laminA/Claminopathies
collection DOAJ
language English
format Article
sources DOAJ
author Vittoria Cenni
Stefano Squarzoni
Manuela Loi
Elisabetta Mattioli
Giovanna Lattanzi
Cristina Capanni
spellingShingle Vittoria Cenni
Stefano Squarzoni
Manuela Loi
Elisabetta Mattioli
Giovanna Lattanzi
Cristina Capanni
Emerin Phosphorylation during the Early Phase of the Oxidative Stress Response Influences Emerin–BAF Interaction and BAF Nuclear Localization
Cells
emerin
EDMD1
BAF
BANF1
laminA/C
laminopathies
author_facet Vittoria Cenni
Stefano Squarzoni
Manuela Loi
Elisabetta Mattioli
Giovanna Lattanzi
Cristina Capanni
author_sort Vittoria Cenni
title Emerin Phosphorylation during the Early Phase of the Oxidative Stress Response Influences Emerin–BAF Interaction and BAF Nuclear Localization
title_short Emerin Phosphorylation during the Early Phase of the Oxidative Stress Response Influences Emerin–BAF Interaction and BAF Nuclear Localization
title_full Emerin Phosphorylation during the Early Phase of the Oxidative Stress Response Influences Emerin–BAF Interaction and BAF Nuclear Localization
title_fullStr Emerin Phosphorylation during the Early Phase of the Oxidative Stress Response Influences Emerin–BAF Interaction and BAF Nuclear Localization
title_full_unstemmed Emerin Phosphorylation during the Early Phase of the Oxidative Stress Response Influences Emerin–BAF Interaction and BAF Nuclear Localization
title_sort emerin phosphorylation during the early phase of the oxidative stress response influences emerin–baf interaction and baf nuclear localization
publisher MDPI AG
series Cells
issn 2073-4409
publishDate 2020-06-01
description Reactive Oxygen Species (ROS) are reactive molecules required for the maintenance of physiological functions. Oxidative stress arises when ROS production exceeds the cellular ability to eliminate such molecules. In this study, we showed that oxidative stress induces post-translational modification of the inner nuclear membrane protein emerin. In particular, emerin is phosphorylated at the early stages of the oxidative stress response, while protein phosphorylation is abolished upon recovery from stress. A finely tuned balance between emerin phosphorylation and <i>O</i>-GlcNAcylation seems to govern this dynamic and modulates emerin–BAF interaction and BAF nucleoplasmic localization during the oxidative stress response. Interestingly, emerin post-translational modifications, similar to those observed during the stress response, are detected in cells bearing <i>LMNA</i> gene mutations and are characterized by a free radical generating environment. On the other hand, under oxidative stress conditions, a delay in DNA damage repair and cell cycle progression is found in cells from Emery–Dreifuss Muscular Dystrophy type 1, which do not express emerin. These results suggest a role of the emerin–BAF protein platform in the DNA damage response aimed at counteracting the detrimental effects of elevated levels of ROS.
topic emerin
EDMD1
BAF
BANF1
laminA/C
laminopathies
url https://www.mdpi.com/2073-4409/9/6/1415
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