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Downregulation of p53 drives autophagy during human trophoblast differentiation

The placental barrier is crucial for the supply of nutrients and oxygen to the developing fetus and is maintained by differentiation and fusion of mononucleated cytotrophoblasts into the syncytiotrophoblast, a process only partially understood. Here transcriptome and pathway analyses during differen...

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Autores principales: Gauster, Martin, Maninger, Sabine, Siwetz, Monika, Deutsch, Alexander, El-Heliebi, Amin, Kolb-Lenz, Dagmar, Hiden, Ursula, Desoye, Gernot, Herse, Florian, Prokesch, Andreas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer International Publishing 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5910494/
https://www.ncbi.nlm.nih.gov/pubmed/29080089
http://dx.doi.org/10.1007/s00018-017-2695-6
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author Gauster, Martin
Maninger, Sabine
Siwetz, Monika
Deutsch, Alexander
El-Heliebi, Amin
Kolb-Lenz, Dagmar
Hiden, Ursula
Desoye, Gernot
Herse, Florian
Prokesch, Andreas
author_facet Gauster, Martin
Maninger, Sabine
Siwetz, Monika
Deutsch, Alexander
El-Heliebi, Amin
Kolb-Lenz, Dagmar
Hiden, Ursula
Desoye, Gernot
Herse, Florian
Prokesch, Andreas
author_sort Gauster, Martin
collection PubMed
description The placental barrier is crucial for the supply of nutrients and oxygen to the developing fetus and is maintained by differentiation and fusion of mononucleated cytotrophoblasts into the syncytiotrophoblast, a process only partially understood. Here transcriptome and pathway analyses during differentiation and fusion of cultured trophoblasts yielded p53 signaling as negative upstream regulator and indicated an upregulation of autophagy-related genes. We further showed p53 mRNA and protein levels decreased during trophoblast differentiation. Reciprocally, autophagic flux increased and cytoplasmic LC3B-GFP puncta became more abundant, indicating enhanced autophagic activity. In line, in human first trimester placenta p53 protein mainly localized to the cytotrophoblast, while autophagy marker LC3B as well as late autophagic compartments were predominantly detectable in the syncytiotrophoblast. Importantly, ectopic overexpression of p53 reduced levels of LC3B-II, supporting a negative regulatory role on autophagy in differentiating trophoblasts. This was also shown in primary trophoblasts and human first trimester placental explants, where pharmacological stabilization of p53 decreased LC3B-II levels. In summary our data suggest that differentiation-dependent downregulation of p53 is a prerequisite for activating autophagy in the syncytiotrophoblast.
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spelling pubmed-59104942018-04-24 Downregulation of p53 drives autophagy during human trophoblast differentiation Gauster, Martin Maninger, Sabine Siwetz, Monika Deutsch, Alexander El-Heliebi, Amin Kolb-Lenz, Dagmar Hiden, Ursula Desoye, Gernot Herse, Florian Prokesch, Andreas Cell Mol Life Sci Original Article The placental barrier is crucial for the supply of nutrients and oxygen to the developing fetus and is maintained by differentiation and fusion of mononucleated cytotrophoblasts into the syncytiotrophoblast, a process only partially understood. Here transcriptome and pathway analyses during differentiation and fusion of cultured trophoblasts yielded p53 signaling as negative upstream regulator and indicated an upregulation of autophagy-related genes. We further showed p53 mRNA and protein levels decreased during trophoblast differentiation. Reciprocally, autophagic flux increased and cytoplasmic LC3B-GFP puncta became more abundant, indicating enhanced autophagic activity. In line, in human first trimester placenta p53 protein mainly localized to the cytotrophoblast, while autophagy marker LC3B as well as late autophagic compartments were predominantly detectable in the syncytiotrophoblast. Importantly, ectopic overexpression of p53 reduced levels of LC3B-II, supporting a negative regulatory role on autophagy in differentiating trophoblasts. This was also shown in primary trophoblasts and human first trimester placental explants, where pharmacological stabilization of p53 decreased LC3B-II levels. In summary our data suggest that differentiation-dependent downregulation of p53 is a prerequisite for activating autophagy in the syncytiotrophoblast. Springer International Publishing 2017-10-27 2018 /pmc/articles/PMC5910494/ /pubmed/29080089 http://dx.doi.org/10.1007/s00018-017-2695-6 Text en © The Author(s) 2017 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Original Article
Gauster, Martin
Maninger, Sabine
Siwetz, Monika
Deutsch, Alexander
El-Heliebi, Amin
Kolb-Lenz, Dagmar
Hiden, Ursula
Desoye, Gernot
Herse, Florian
Prokesch, Andreas
Downregulation of p53 drives autophagy during human trophoblast differentiation
title Downregulation of p53 drives autophagy during human trophoblast differentiation
title_full Downregulation of p53 drives autophagy during human trophoblast differentiation
title_fullStr Downregulation of p53 drives autophagy during human trophoblast differentiation
title_full_unstemmed Downregulation of p53 drives autophagy during human trophoblast differentiation
title_short Downregulation of p53 drives autophagy during human trophoblast differentiation
title_sort downregulation of p53 drives autophagy during human trophoblast differentiation
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5910494/
https://www.ncbi.nlm.nih.gov/pubmed/29080089
http://dx.doi.org/10.1007/s00018-017-2695-6
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