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Dissecting the transcriptional phenotype of ribosomal protein deficiency: implications for Diamond-Blackfan Anemia

Defects in genes encoding ribosomal proteins cause Diamond Blackfan Anemia (DBA), a red cell aplasia often associated with physical abnormalities. Other bone marrow failure syndromes have been attributed to defects in ribosomal components but the link between erythropoiesis and the ribosome remains...

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Autores principales: Aspesi, Anna, Pavesi, Elisa, Robotti, Elisa, Crescitelli, Rossella, Boria, Ilenia, Avondo, Federica, Moniz, Hélène, Da Costa, Lydie, Mohandas, Narla, Roncaglia, Paola, Ramenghi, Ugo, Ronchi, Antonella, Gustincich, Stefano, Merlin, Simone, Marengo, Emilio, Ellis, Steven R., Follenzi, Antonia, Santoro, Claudio, Dianzani, Irma
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier/North-Holland 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4058751/
https://www.ncbi.nlm.nih.gov/pubmed/24835311
http://dx.doi.org/10.1016/j.gene.2014.04.077
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author Aspesi, Anna
Pavesi, Elisa
Robotti, Elisa
Crescitelli, Rossella
Boria, Ilenia
Avondo, Federica
Moniz, Hélène
Da Costa, Lydie
Mohandas, Narla
Roncaglia, Paola
Ramenghi, Ugo
Ronchi, Antonella
Gustincich, Stefano
Merlin, Simone
Marengo, Emilio
Ellis, Steven R.
Follenzi, Antonia
Santoro, Claudio
Dianzani, Irma
author_facet Aspesi, Anna
Pavesi, Elisa
Robotti, Elisa
Crescitelli, Rossella
Boria, Ilenia
Avondo, Federica
Moniz, Hélène
Da Costa, Lydie
Mohandas, Narla
Roncaglia, Paola
Ramenghi, Ugo
Ronchi, Antonella
Gustincich, Stefano
Merlin, Simone
Marengo, Emilio
Ellis, Steven R.
Follenzi, Antonia
Santoro, Claudio
Dianzani, Irma
author_sort Aspesi, Anna
collection PubMed
description Defects in genes encoding ribosomal proteins cause Diamond Blackfan Anemia (DBA), a red cell aplasia often associated with physical abnormalities. Other bone marrow failure syndromes have been attributed to defects in ribosomal components but the link between erythropoiesis and the ribosome remains to be fully defined. Several lines of evidence suggest that defects in ribosome synthesis lead to “ribosomal stress” with p53 activation and either cell cycle arrest or induction of apoptosis. Pathways independent of p53 have also been proposed to play a role in DBA pathogenesis. We took an unbiased approach to identify p53-independent pathways activated by defects in ribosome synthesis by analyzing global gene expression in various cellular models of DBA. Ranking-Principal Component Analysis (Ranking-PCA) was applied to the identified datasets to determine whether there are common sets of genes whose expression is altered in these different cellular models. We observed consistent changes in the expression of genes involved in cellular amino acid metabolic process, negative regulation of cell proliferation and cell redox homeostasis. These data indicate that cells respond to defects in ribosome synthesis by changing the level of expression of a limited subset of genes involved in critical cellular processes. Moreover, our data support a role for p53-independent pathways in the pathophysiology of DBA.
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spelling pubmed-40587512014-07-25 Dissecting the transcriptional phenotype of ribosomal protein deficiency: implications for Diamond-Blackfan Anemia Aspesi, Anna Pavesi, Elisa Robotti, Elisa Crescitelli, Rossella Boria, Ilenia Avondo, Federica Moniz, Hélène Da Costa, Lydie Mohandas, Narla Roncaglia, Paola Ramenghi, Ugo Ronchi, Antonella Gustincich, Stefano Merlin, Simone Marengo, Emilio Ellis, Steven R. Follenzi, Antonia Santoro, Claudio Dianzani, Irma Gene Short Communication Defects in genes encoding ribosomal proteins cause Diamond Blackfan Anemia (DBA), a red cell aplasia often associated with physical abnormalities. Other bone marrow failure syndromes have been attributed to defects in ribosomal components but the link between erythropoiesis and the ribosome remains to be fully defined. Several lines of evidence suggest that defects in ribosome synthesis lead to “ribosomal stress” with p53 activation and either cell cycle arrest or induction of apoptosis. Pathways independent of p53 have also been proposed to play a role in DBA pathogenesis. We took an unbiased approach to identify p53-independent pathways activated by defects in ribosome synthesis by analyzing global gene expression in various cellular models of DBA. Ranking-Principal Component Analysis (Ranking-PCA) was applied to the identified datasets to determine whether there are common sets of genes whose expression is altered in these different cellular models. We observed consistent changes in the expression of genes involved in cellular amino acid metabolic process, negative regulation of cell proliferation and cell redox homeostasis. These data indicate that cells respond to defects in ribosome synthesis by changing the level of expression of a limited subset of genes involved in critical cellular processes. Moreover, our data support a role for p53-independent pathways in the pathophysiology of DBA. Elsevier/North-Holland 2014-07-25 /pmc/articles/PMC4058751/ /pubmed/24835311 http://dx.doi.org/10.1016/j.gene.2014.04.077 Text en © 2014 The Authors http://creativecommons.org/licenses/by/3.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Short Communication
Aspesi, Anna
Pavesi, Elisa
Robotti, Elisa
Crescitelli, Rossella
Boria, Ilenia
Avondo, Federica
Moniz, Hélène
Da Costa, Lydie
Mohandas, Narla
Roncaglia, Paola
Ramenghi, Ugo
Ronchi, Antonella
Gustincich, Stefano
Merlin, Simone
Marengo, Emilio
Ellis, Steven R.
Follenzi, Antonia
Santoro, Claudio
Dianzani, Irma
Dissecting the transcriptional phenotype of ribosomal protein deficiency: implications for Diamond-Blackfan Anemia
title Dissecting the transcriptional phenotype of ribosomal protein deficiency: implications for Diamond-Blackfan Anemia
title_full Dissecting the transcriptional phenotype of ribosomal protein deficiency: implications for Diamond-Blackfan Anemia
title_fullStr Dissecting the transcriptional phenotype of ribosomal protein deficiency: implications for Diamond-Blackfan Anemia
title_full_unstemmed Dissecting the transcriptional phenotype of ribosomal protein deficiency: implications for Diamond-Blackfan Anemia
title_short Dissecting the transcriptional phenotype of ribosomal protein deficiency: implications for Diamond-Blackfan Anemia
title_sort dissecting the transcriptional phenotype of ribosomal protein deficiency: implications for diamond-blackfan anemia
topic Short Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4058751/
https://www.ncbi.nlm.nih.gov/pubmed/24835311
http://dx.doi.org/10.1016/j.gene.2014.04.077
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