Cargando…

DOR/Tp53inp2 and Tp53inp1 Constitute a Metazoan Gene Family Encoding Dual Regulators of Autophagy and Transcription

Human DOR/TP53INP2 displays a unique bifunctional role as a modulator of autophagy and gene transcription. However, the domains or regions of DOR that participate in those functions have not been identified. Here we have performed structure/function analyses of DOR guided by identification of conser...

Descripción completa

Detalles Bibliográficos
Autores principales: Sancho, Ana, Duran, Jordi, García-España, Antonio, Mauvezin, Caroline, Alemu, Endalkachew A., Lamark, Trond, Macias, Maria J., DeSalle, Rob, Royo, Miriam, Sala, David, Chicote, Javier U., Palacín, Manuel, Johansen, Terje, Zorzano, Antonio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3314686/
https://www.ncbi.nlm.nih.gov/pubmed/22470510
http://dx.doi.org/10.1371/journal.pone.0034034
_version_ 1782228129528414208
author Sancho, Ana
Duran, Jordi
García-España, Antonio
Mauvezin, Caroline
Alemu, Endalkachew A.
Lamark, Trond
Macias, Maria J.
DeSalle, Rob
Royo, Miriam
Sala, David
Chicote, Javier U.
Palacín, Manuel
Johansen, Terje
Zorzano, Antonio
author_facet Sancho, Ana
Duran, Jordi
García-España, Antonio
Mauvezin, Caroline
Alemu, Endalkachew A.
Lamark, Trond
Macias, Maria J.
DeSalle, Rob
Royo, Miriam
Sala, David
Chicote, Javier U.
Palacín, Manuel
Johansen, Terje
Zorzano, Antonio
author_sort Sancho, Ana
collection PubMed
description Human DOR/TP53INP2 displays a unique bifunctional role as a modulator of autophagy and gene transcription. However, the domains or regions of DOR that participate in those functions have not been identified. Here we have performed structure/function analyses of DOR guided by identification of conserved regions in the DOR gene family by phylogenetic reconstructions. We show that DOR is present in metazoan species. Invertebrates harbor only one gene, DOR/Tp53inp2, and in the common ancestor of vertebrates Tp53inp1 may have arisen by gene duplication. In keeping with these data, we show that human TP53INP1 regulates autophagy and that different DOR/TP53INP2 and TP53INP1 proteins display transcriptional activity. The use of molecular evolutionary information has been instrumental to determine the regions that participate in DOR functions. DOR and TP53INP1 proteins share two highly conserved regions (region 1, aa residues 28–42; region 2, 66–112 in human DOR). Mutation of conserved hydrophobic residues in region 1 of DOR (that are part of a nuclear export signal, NES) reduces transcriptional activity, and blocks nuclear exit and autophagic activity under autophagy-activated conditions. We also identify a functional and conserved LC3-interacting motif (LIR) in region 1 of DOR and TP53INP1 proteins. Mutation of conserved acidic residues in region 2 of DOR reduces transcriptional activity, impairs nuclear exit in response to autophagy activation, and disrupts autophagy. Taken together, our data reveal DOR and TP53INP1 as dual regulators of transcription and autophagy, and identify two conserved regions in the DOR family that concentrate multiple functions crucial for autophagy and transcription.
format Online
Article
Text
id pubmed-3314686
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-33146862012-04-02 DOR/Tp53inp2 and Tp53inp1 Constitute a Metazoan Gene Family Encoding Dual Regulators of Autophagy and Transcription Sancho, Ana Duran, Jordi García-España, Antonio Mauvezin, Caroline Alemu, Endalkachew A. Lamark, Trond Macias, Maria J. DeSalle, Rob Royo, Miriam Sala, David Chicote, Javier U. Palacín, Manuel Johansen, Terje Zorzano, Antonio PLoS One Research Article Human DOR/TP53INP2 displays a unique bifunctional role as a modulator of autophagy and gene transcription. However, the domains or regions of DOR that participate in those functions have not been identified. Here we have performed structure/function analyses of DOR guided by identification of conserved regions in the DOR gene family by phylogenetic reconstructions. We show that DOR is present in metazoan species. Invertebrates harbor only one gene, DOR/Tp53inp2, and in the common ancestor of vertebrates Tp53inp1 may have arisen by gene duplication. In keeping with these data, we show that human TP53INP1 regulates autophagy and that different DOR/TP53INP2 and TP53INP1 proteins display transcriptional activity. The use of molecular evolutionary information has been instrumental to determine the regions that participate in DOR functions. DOR and TP53INP1 proteins share two highly conserved regions (region 1, aa residues 28–42; region 2, 66–112 in human DOR). Mutation of conserved hydrophobic residues in region 1 of DOR (that are part of a nuclear export signal, NES) reduces transcriptional activity, and blocks nuclear exit and autophagic activity under autophagy-activated conditions. We also identify a functional and conserved LC3-interacting motif (LIR) in region 1 of DOR and TP53INP1 proteins. Mutation of conserved acidic residues in region 2 of DOR reduces transcriptional activity, impairs nuclear exit in response to autophagy activation, and disrupts autophagy. Taken together, our data reveal DOR and TP53INP1 as dual regulators of transcription and autophagy, and identify two conserved regions in the DOR family that concentrate multiple functions crucial for autophagy and transcription. Public Library of Science 2012-03-28 /pmc/articles/PMC3314686/ /pubmed/22470510 http://dx.doi.org/10.1371/journal.pone.0034034 Text en Sancho et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Sancho, Ana
Duran, Jordi
García-España, Antonio
Mauvezin, Caroline
Alemu, Endalkachew A.
Lamark, Trond
Macias, Maria J.
DeSalle, Rob
Royo, Miriam
Sala, David
Chicote, Javier U.
Palacín, Manuel
Johansen, Terje
Zorzano, Antonio
DOR/Tp53inp2 and Tp53inp1 Constitute a Metazoan Gene Family Encoding Dual Regulators of Autophagy and Transcription
title DOR/Tp53inp2 and Tp53inp1 Constitute a Metazoan Gene Family Encoding Dual Regulators of Autophagy and Transcription
title_full DOR/Tp53inp2 and Tp53inp1 Constitute a Metazoan Gene Family Encoding Dual Regulators of Autophagy and Transcription
title_fullStr DOR/Tp53inp2 and Tp53inp1 Constitute a Metazoan Gene Family Encoding Dual Regulators of Autophagy and Transcription
title_full_unstemmed DOR/Tp53inp2 and Tp53inp1 Constitute a Metazoan Gene Family Encoding Dual Regulators of Autophagy and Transcription
title_short DOR/Tp53inp2 and Tp53inp1 Constitute a Metazoan Gene Family Encoding Dual Regulators of Autophagy and Transcription
title_sort dor/tp53inp2 and tp53inp1 constitute a metazoan gene family encoding dual regulators of autophagy and transcription
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3314686/
https://www.ncbi.nlm.nih.gov/pubmed/22470510
http://dx.doi.org/10.1371/journal.pone.0034034
work_keys_str_mv AT sanchoana dortp53inp2andtp53inp1constituteametazoangenefamilyencodingdualregulatorsofautophagyandtranscription
AT duranjordi dortp53inp2andtp53inp1constituteametazoangenefamilyencodingdualregulatorsofautophagyandtranscription
AT garciaespanaantonio dortp53inp2andtp53inp1constituteametazoangenefamilyencodingdualregulatorsofautophagyandtranscription
AT mauvezincaroline dortp53inp2andtp53inp1constituteametazoangenefamilyencodingdualregulatorsofautophagyandtranscription
AT alemuendalkachewa dortp53inp2andtp53inp1constituteametazoangenefamilyencodingdualregulatorsofautophagyandtranscription
AT lamarktrond dortp53inp2andtp53inp1constituteametazoangenefamilyencodingdualregulatorsofautophagyandtranscription
AT maciasmariaj dortp53inp2andtp53inp1constituteametazoangenefamilyencodingdualregulatorsofautophagyandtranscription
AT desallerob dortp53inp2andtp53inp1constituteametazoangenefamilyencodingdualregulatorsofautophagyandtranscription
AT royomiriam dortp53inp2andtp53inp1constituteametazoangenefamilyencodingdualregulatorsofautophagyandtranscription
AT saladavid dortp53inp2andtp53inp1constituteametazoangenefamilyencodingdualregulatorsofautophagyandtranscription
AT chicotejavieru dortp53inp2andtp53inp1constituteametazoangenefamilyencodingdualregulatorsofautophagyandtranscription
AT palacinmanuel dortp53inp2andtp53inp1constituteametazoangenefamilyencodingdualregulatorsofautophagyandtranscription
AT johansenterje dortp53inp2andtp53inp1constituteametazoangenefamilyencodingdualregulatorsofautophagyandtranscription
AT zorzanoantonio dortp53inp2andtp53inp1constituteametazoangenefamilyencodingdualregulatorsofautophagyandtranscription