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Role of the novel endoribonuclease SLFN14 and its disease-causing mutations in ribosomal degradation

Platelets are anucleate and mostly ribosome-free cells within the bloodstream, derived from megakaryocytes within bone marrow and crucial for cessation of bleeding at sites of injury. Inherited thrombocytopenias are a group of disorders characterized by a low platelet count and are frequently associ...

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Autores principales: Fletcher, Sarah J., Pisareva, Vera P., Khan, Abdullah O., Tcherepanov, Andrew, Morgan, Neil V., Pisarev, Andrey V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6004054/
https://www.ncbi.nlm.nih.gov/pubmed/29678925
http://dx.doi.org/10.1261/rna.066415.118
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author Fletcher, Sarah J.
Pisareva, Vera P.
Khan, Abdullah O.
Tcherepanov, Andrew
Morgan, Neil V.
Pisarev, Andrey V.
author_facet Fletcher, Sarah J.
Pisareva, Vera P.
Khan, Abdullah O.
Tcherepanov, Andrew
Morgan, Neil V.
Pisarev, Andrey V.
author_sort Fletcher, Sarah J.
collection PubMed
description Platelets are anucleate and mostly ribosome-free cells within the bloodstream, derived from megakaryocytes within bone marrow and crucial for cessation of bleeding at sites of injury. Inherited thrombocytopenias are a group of disorders characterized by a low platelet count and are frequently associated with excessive bleeding. SLFN14 is one of the most recently discovered genes linked to inherited thrombocytopenia where several heterozygous missense mutations in SLFN14 were identified to cause defective megakaryocyte maturation and platelet dysfunction. Yet, SLFN14 was recently described as a ribosome-associated protein resulting in rRNA and ribosome-bound mRNA degradation in rabbit reticulocytes. To unveil the cellular function of SLFN14 and the link between SLFN14 and thrombocytopenia, we examined SLFN14 (WT/mutants) in in vitro models. Here, we show that all SLFN14 variants colocalize with ribosomes and mediate rRNA endonucleolytic degradation. Compared to SLFN14 WT, expression of mutants is dramatically reduced as a result of post-translational degradation due to partial misfolding of the protein. Moreover, all SLFN14 variants tend to form oligomers. These findings could explain the dominant negative effect of heterozygous mutation on SLFN14 expression in patients’ platelets. Overall, we suggest that SLFN14 could be involved in ribosome degradation during platelet formation and maturation.
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spelling pubmed-60040542018-07-01 Role of the novel endoribonuclease SLFN14 and its disease-causing mutations in ribosomal degradation Fletcher, Sarah J. Pisareva, Vera P. Khan, Abdullah O. Tcherepanov, Andrew Morgan, Neil V. Pisarev, Andrey V. RNA Article Platelets are anucleate and mostly ribosome-free cells within the bloodstream, derived from megakaryocytes within bone marrow and crucial for cessation of bleeding at sites of injury. Inherited thrombocytopenias are a group of disorders characterized by a low platelet count and are frequently associated with excessive bleeding. SLFN14 is one of the most recently discovered genes linked to inherited thrombocytopenia where several heterozygous missense mutations in SLFN14 were identified to cause defective megakaryocyte maturation and platelet dysfunction. Yet, SLFN14 was recently described as a ribosome-associated protein resulting in rRNA and ribosome-bound mRNA degradation in rabbit reticulocytes. To unveil the cellular function of SLFN14 and the link between SLFN14 and thrombocytopenia, we examined SLFN14 (WT/mutants) in in vitro models. Here, we show that all SLFN14 variants colocalize with ribosomes and mediate rRNA endonucleolytic degradation. Compared to SLFN14 WT, expression of mutants is dramatically reduced as a result of post-translational degradation due to partial misfolding of the protein. Moreover, all SLFN14 variants tend to form oligomers. These findings could explain the dominant negative effect of heterozygous mutation on SLFN14 expression in patients’ platelets. Overall, we suggest that SLFN14 could be involved in ribosome degradation during platelet formation and maturation. Cold Spring Harbor Laboratory Press 2018-07 /pmc/articles/PMC6004054/ /pubmed/29678925 http://dx.doi.org/10.1261/rna.066415.118 Text en © 2018 Fletcher et al.; Published by Cold Spring Harbor Laboratory Press for the RNA Society http://creativecommons.org/licenses/by/4.0/ This article, published in RNA, is available under a Creative Commons License (Attribution 4.0 International), as described at http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Fletcher, Sarah J.
Pisareva, Vera P.
Khan, Abdullah O.
Tcherepanov, Andrew
Morgan, Neil V.
Pisarev, Andrey V.
Role of the novel endoribonuclease SLFN14 and its disease-causing mutations in ribosomal degradation
title Role of the novel endoribonuclease SLFN14 and its disease-causing mutations in ribosomal degradation
title_full Role of the novel endoribonuclease SLFN14 and its disease-causing mutations in ribosomal degradation
title_fullStr Role of the novel endoribonuclease SLFN14 and its disease-causing mutations in ribosomal degradation
title_full_unstemmed Role of the novel endoribonuclease SLFN14 and its disease-causing mutations in ribosomal degradation
title_short Role of the novel endoribonuclease SLFN14 and its disease-causing mutations in ribosomal degradation
title_sort role of the novel endoribonuclease slfn14 and its disease-causing mutations in ribosomal degradation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6004054/
https://www.ncbi.nlm.nih.gov/pubmed/29678925
http://dx.doi.org/10.1261/rna.066415.118
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