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Smurf2 regulates stability and the autophagic–lysosomal turnover of lamin A and its disease‐associated form progerin

A‐lamins, encoded by the LMNA gene, are major structural components of the nuclear lamina coordinating essential cellular processes. Mutations in the LMNA gene and/or alterations in its expression levels have been linked to a distinct subset of human disorders, collectively known as laminopathies, a...

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Autores principales: Borroni, Aurora Paola, Emanuelli, Andrea, Shah, Pooja Anil, Ilić, Nataša, Apel‐Sarid, Liat, Paolini, Biagio, Manikoth Ayyathan, Dhanoop, Koganti, Praveen, Levy‐Cohen, Gal, Blank, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5847874/
https://www.ncbi.nlm.nih.gov/pubmed/29405587
http://dx.doi.org/10.1111/acel.12732
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author Borroni, Aurora Paola
Emanuelli, Andrea
Shah, Pooja Anil
Ilić, Nataša
Apel‐Sarid, Liat
Paolini, Biagio
Manikoth Ayyathan, Dhanoop
Koganti, Praveen
Levy‐Cohen, Gal
Blank, Michael
author_facet Borroni, Aurora Paola
Emanuelli, Andrea
Shah, Pooja Anil
Ilić, Nataša
Apel‐Sarid, Liat
Paolini, Biagio
Manikoth Ayyathan, Dhanoop
Koganti, Praveen
Levy‐Cohen, Gal
Blank, Michael
author_sort Borroni, Aurora Paola
collection PubMed
description A‐lamins, encoded by the LMNA gene, are major structural components of the nuclear lamina coordinating essential cellular processes. Mutations in the LMNA gene and/or alterations in its expression levels have been linked to a distinct subset of human disorders, collectively known as laminopathies, and to cancer. Mechanisms regulating A‐lamins are mostly obscure. Here, we identified E3 ubiquitin ligase Smurf2 as a physiological regulator of lamin A and its disease‐associated mutant form progerin (LAΔ50), whose expression underlies the development of Hutchinson‐Gilford progeria syndrome (HGPS), a devastating premature aging syndrome. We show that Smurf2 directly binds, ubiquitinates, and negatively regulates the expression of lamin A and progerin in Smurf2 dose‐ and E3 ligase‐dependent manners. Overexpression of catalytically active Smurf2 promotes the autophagic–lysosomal breakdown of lamin A and progerin, whereas Smurf2 depletion increases lamin A levels. Remarkably, acute overexpression of Smurf2 in progeria fibroblasts was able to significantly reduce the nuclear deformability. Furthermore, we demonstrate that the reciprocal relationship between Smurf2 and A‐lamins is preserved in different types of mouse and human normal and cancer tissues. These findings establish Smurf2 as an essential regulator of lamin A and progerin and lay a foundation for evaluating the efficiency of progerin clearance by Smurf2 in HGPS, and targeting of the Smurf2–lamin A axis in age‐related diseases such as cancer.
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spelling pubmed-58478742018-04-01 Smurf2 regulates stability and the autophagic–lysosomal turnover of lamin A and its disease‐associated form progerin Borroni, Aurora Paola Emanuelli, Andrea Shah, Pooja Anil Ilić, Nataša Apel‐Sarid, Liat Paolini, Biagio Manikoth Ayyathan, Dhanoop Koganti, Praveen Levy‐Cohen, Gal Blank, Michael Aging Cell Original Articles A‐lamins, encoded by the LMNA gene, are major structural components of the nuclear lamina coordinating essential cellular processes. Mutations in the LMNA gene and/or alterations in its expression levels have been linked to a distinct subset of human disorders, collectively known as laminopathies, and to cancer. Mechanisms regulating A‐lamins are mostly obscure. Here, we identified E3 ubiquitin ligase Smurf2 as a physiological regulator of lamin A and its disease‐associated mutant form progerin (LAΔ50), whose expression underlies the development of Hutchinson‐Gilford progeria syndrome (HGPS), a devastating premature aging syndrome. We show that Smurf2 directly binds, ubiquitinates, and negatively regulates the expression of lamin A and progerin in Smurf2 dose‐ and E3 ligase‐dependent manners. Overexpression of catalytically active Smurf2 promotes the autophagic–lysosomal breakdown of lamin A and progerin, whereas Smurf2 depletion increases lamin A levels. Remarkably, acute overexpression of Smurf2 in progeria fibroblasts was able to significantly reduce the nuclear deformability. Furthermore, we demonstrate that the reciprocal relationship between Smurf2 and A‐lamins is preserved in different types of mouse and human normal and cancer tissues. These findings establish Smurf2 as an essential regulator of lamin A and progerin and lay a foundation for evaluating the efficiency of progerin clearance by Smurf2 in HGPS, and targeting of the Smurf2–lamin A axis in age‐related diseases such as cancer. John Wiley and Sons Inc. 2018-02-05 2018-04 /pmc/articles/PMC5847874/ /pubmed/29405587 http://dx.doi.org/10.1111/acel.12732 Text en © 2018 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Borroni, Aurora Paola
Emanuelli, Andrea
Shah, Pooja Anil
Ilić, Nataša
Apel‐Sarid, Liat
Paolini, Biagio
Manikoth Ayyathan, Dhanoop
Koganti, Praveen
Levy‐Cohen, Gal
Blank, Michael
Smurf2 regulates stability and the autophagic–lysosomal turnover of lamin A and its disease‐associated form progerin
title Smurf2 regulates stability and the autophagic–lysosomal turnover of lamin A and its disease‐associated form progerin
title_full Smurf2 regulates stability and the autophagic–lysosomal turnover of lamin A and its disease‐associated form progerin
title_fullStr Smurf2 regulates stability and the autophagic–lysosomal turnover of lamin A and its disease‐associated form progerin
title_full_unstemmed Smurf2 regulates stability and the autophagic–lysosomal turnover of lamin A and its disease‐associated form progerin
title_short Smurf2 regulates stability and the autophagic–lysosomal turnover of lamin A and its disease‐associated form progerin
title_sort smurf2 regulates stability and the autophagic–lysosomal turnover of lamin a and its disease‐associated form progerin
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5847874/
https://www.ncbi.nlm.nih.gov/pubmed/29405587
http://dx.doi.org/10.1111/acel.12732
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