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Characterization of Two Cases of Congenital Dyserythropoietic Anemia Type I Shed Light on the Uncharacterized C15orf41 Protein

CDA type I is a rare hereditary anemia, characterized by relative reticulocytopenia, and congenital anomalies. It is caused by biallelic mutations in one of the two genes: (i) CDAN1, encoding Codanin-1, which is implicated in nucleosome assembly and disassembly; (ii) C15orf41, which is predicted to...

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Autores principales: Russo, Roberta, Marra, Roberta, Andolfo, Immacolata, De Rosa, Gianluca, Rosato, Barbara Eleni, Manna, Francesco, Gambale, Antonella, Raia, Maddalena, Unal, Sule, Barella, Susanna, Iolascon, Achille
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6539198/
https://www.ncbi.nlm.nih.gov/pubmed/31191338
http://dx.doi.org/10.3389/fphys.2019.00621
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author Russo, Roberta
Marra, Roberta
Andolfo, Immacolata
De Rosa, Gianluca
Rosato, Barbara Eleni
Manna, Francesco
Gambale, Antonella
Raia, Maddalena
Unal, Sule
Barella, Susanna
Iolascon, Achille
author_facet Russo, Roberta
Marra, Roberta
Andolfo, Immacolata
De Rosa, Gianluca
Rosato, Barbara Eleni
Manna, Francesco
Gambale, Antonella
Raia, Maddalena
Unal, Sule
Barella, Susanna
Iolascon, Achille
author_sort Russo, Roberta
collection PubMed
description CDA type I is a rare hereditary anemia, characterized by relative reticulocytopenia, and congenital anomalies. It is caused by biallelic mutations in one of the two genes: (i) CDAN1, encoding Codanin-1, which is implicated in nucleosome assembly and disassembly; (ii) C15orf41, which is predicted to encode a divalent metal ion-dependent restriction endonuclease with a yet unknown function. We described two cases of CDA type I, identifying the novel variant, Y94S, in the DNA binding domain of C15orf41, and the H230P mutation in the nuclease domain of the protein. We first analyzed the gene expression and the localization of C15orf41. We demonstrated that C15orf41 and CDAN1 gene expression is tightly correlated, suggesting a shared mechanism of regulation between the two genes. Moreover, we functionally characterized the two variants, establishing that the H230P leads to reduced gene expression and protein level, while Y94S induces a slight decrease of expression. We demonstrated that C15orf41 endogenous protein exhibits nuclear and cytosolic localization, being mostly in the nucleus. However, no altered nuclear-cytosolic compartmentalization of mutated C15orf41 was observed. Both mutants accounted for impaired erythroid differentiation in K562 cells, and H230P mutant also exhibits an increased S-phase of the cell cycle in these cells. Our functional characterization demonstrated that the two variants have different effects on the stability of the mutated mRNA, but both resulted in impaired erythroid maturation, suggesting the block of cell cycle dynamics as a putative pathogenic mechanism for C15orf41-related CDA I.
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spelling pubmed-65391982019-06-12 Characterization of Two Cases of Congenital Dyserythropoietic Anemia Type I Shed Light on the Uncharacterized C15orf41 Protein Russo, Roberta Marra, Roberta Andolfo, Immacolata De Rosa, Gianluca Rosato, Barbara Eleni Manna, Francesco Gambale, Antonella Raia, Maddalena Unal, Sule Barella, Susanna Iolascon, Achille Front Physiol Physiology CDA type I is a rare hereditary anemia, characterized by relative reticulocytopenia, and congenital anomalies. It is caused by biallelic mutations in one of the two genes: (i) CDAN1, encoding Codanin-1, which is implicated in nucleosome assembly and disassembly; (ii) C15orf41, which is predicted to encode a divalent metal ion-dependent restriction endonuclease with a yet unknown function. We described two cases of CDA type I, identifying the novel variant, Y94S, in the DNA binding domain of C15orf41, and the H230P mutation in the nuclease domain of the protein. We first analyzed the gene expression and the localization of C15orf41. We demonstrated that C15orf41 and CDAN1 gene expression is tightly correlated, suggesting a shared mechanism of regulation between the two genes. Moreover, we functionally characterized the two variants, establishing that the H230P leads to reduced gene expression and protein level, while Y94S induces a slight decrease of expression. We demonstrated that C15orf41 endogenous protein exhibits nuclear and cytosolic localization, being mostly in the nucleus. However, no altered nuclear-cytosolic compartmentalization of mutated C15orf41 was observed. Both mutants accounted for impaired erythroid differentiation in K562 cells, and H230P mutant also exhibits an increased S-phase of the cell cycle in these cells. Our functional characterization demonstrated that the two variants have different effects on the stability of the mutated mRNA, but both resulted in impaired erythroid maturation, suggesting the block of cell cycle dynamics as a putative pathogenic mechanism for C15orf41-related CDA I. Frontiers Media S.A. 2019-05-22 /pmc/articles/PMC6539198/ /pubmed/31191338 http://dx.doi.org/10.3389/fphys.2019.00621 Text en Copyright © 2019 Russo, Marra, Andolfo, De Rosa, Rosato, Manna, Gambale, Raia, Unal, Barella and Iolascon. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Physiology
Russo, Roberta
Marra, Roberta
Andolfo, Immacolata
De Rosa, Gianluca
Rosato, Barbara Eleni
Manna, Francesco
Gambale, Antonella
Raia, Maddalena
Unal, Sule
Barella, Susanna
Iolascon, Achille
Characterization of Two Cases of Congenital Dyserythropoietic Anemia Type I Shed Light on the Uncharacterized C15orf41 Protein
title Characterization of Two Cases of Congenital Dyserythropoietic Anemia Type I Shed Light on the Uncharacterized C15orf41 Protein
title_full Characterization of Two Cases of Congenital Dyserythropoietic Anemia Type I Shed Light on the Uncharacterized C15orf41 Protein
title_fullStr Characterization of Two Cases of Congenital Dyserythropoietic Anemia Type I Shed Light on the Uncharacterized C15orf41 Protein
title_full_unstemmed Characterization of Two Cases of Congenital Dyserythropoietic Anemia Type I Shed Light on the Uncharacterized C15orf41 Protein
title_short Characterization of Two Cases of Congenital Dyserythropoietic Anemia Type I Shed Light on the Uncharacterized C15orf41 Protein
title_sort characterization of two cases of congenital dyserythropoietic anemia type i shed light on the uncharacterized c15orf41 protein
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6539198/
https://www.ncbi.nlm.nih.gov/pubmed/31191338
http://dx.doi.org/10.3389/fphys.2019.00621
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