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Methylated HNRNPK acts on RPS19 to regulate ALOX15 synthesis in erythropoiesis

Post-transcriptional control is essential to safeguard structural and metabolic changes in enucleated reticulocytes during their terminal maturation to functional erythrocytes. The timely synthesis of arachidonate 15-lipoxygenase (ALOX15), which initiates mitochondria degradation at the final stage...

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Autores principales: Naarmann-de Vries, Isabel S, Senatore, Roberta, Moritz, Bodo, Marx, Gernot, Urlaub, Henning, Niessing, Dierk, Ostareck, Dirk H, Ostareck-Lederer, Antje
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8034617/
https://www.ncbi.nlm.nih.gov/pubmed/33660773
http://dx.doi.org/10.1093/nar/gkab116
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author Naarmann-de Vries, Isabel S
Senatore, Roberta
Moritz, Bodo
Marx, Gernot
Urlaub, Henning
Niessing, Dierk
Ostareck, Dirk H
Ostareck-Lederer, Antje
author_facet Naarmann-de Vries, Isabel S
Senatore, Roberta
Moritz, Bodo
Marx, Gernot
Urlaub, Henning
Niessing, Dierk
Ostareck, Dirk H
Ostareck-Lederer, Antje
author_sort Naarmann-de Vries, Isabel S
collection PubMed
description Post-transcriptional control is essential to safeguard structural and metabolic changes in enucleated reticulocytes during their terminal maturation to functional erythrocytes. The timely synthesis of arachidonate 15-lipoxygenase (ALOX15), which initiates mitochondria degradation at the final stage of reticulocyte maturation is regulated by the multifunctional protein HNRNPK. It constitutes a silencing complex at the ALOX15 mRNA 3′ untranslated region that inhibits translation initiation at the AUG by impeding the joining of ribosomal 60S subunits to 40S subunits. To elucidate how HNRNPK interferes with 80S ribosome assembly, three independent screens were applied. They consistently demonstrated a differential interaction of HNRNPK with RPS19, which is localized at the head of the 40S subunit and extends into its functional center. During induced erythroid maturation of K562 cells, decreasing arginine dimethylation of HNRNPK is linked to a reduced interaction with RPS19 in vitro and in vivo. Dimethylation of residues R256, R258 and R268 in HNRNPK affects its interaction with RPS19. In noninduced K562 cells, RPS19 depletion results in the induction of ALOX15 synthesis and mitochondria degradation. Interestingly, residue W52 in RPS19, which is frequently mutated in Diamond-Blackfan Anemia (DBA), participates in specific HNRNPK binding and is an integral part of a putative aromatic cage.
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spelling pubmed-80346172021-04-14 Methylated HNRNPK acts on RPS19 to regulate ALOX15 synthesis in erythropoiesis Naarmann-de Vries, Isabel S Senatore, Roberta Moritz, Bodo Marx, Gernot Urlaub, Henning Niessing, Dierk Ostareck, Dirk H Ostareck-Lederer, Antje Nucleic Acids Res RNA and RNA-protein complexes Post-transcriptional control is essential to safeguard structural and metabolic changes in enucleated reticulocytes during their terminal maturation to functional erythrocytes. The timely synthesis of arachidonate 15-lipoxygenase (ALOX15), which initiates mitochondria degradation at the final stage of reticulocyte maturation is regulated by the multifunctional protein HNRNPK. It constitutes a silencing complex at the ALOX15 mRNA 3′ untranslated region that inhibits translation initiation at the AUG by impeding the joining of ribosomal 60S subunits to 40S subunits. To elucidate how HNRNPK interferes with 80S ribosome assembly, three independent screens were applied. They consistently demonstrated a differential interaction of HNRNPK with RPS19, which is localized at the head of the 40S subunit and extends into its functional center. During induced erythroid maturation of K562 cells, decreasing arginine dimethylation of HNRNPK is linked to a reduced interaction with RPS19 in vitro and in vivo. Dimethylation of residues R256, R258 and R268 in HNRNPK affects its interaction with RPS19. In noninduced K562 cells, RPS19 depletion results in the induction of ALOX15 synthesis and mitochondria degradation. Interestingly, residue W52 in RPS19, which is frequently mutated in Diamond-Blackfan Anemia (DBA), participates in specific HNRNPK binding and is an integral part of a putative aromatic cage. Oxford University Press 2021-02-28 /pmc/articles/PMC8034617/ /pubmed/33660773 http://dx.doi.org/10.1093/nar/gkab116 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle RNA and RNA-protein complexes
Naarmann-de Vries, Isabel S
Senatore, Roberta
Moritz, Bodo
Marx, Gernot
Urlaub, Henning
Niessing, Dierk
Ostareck, Dirk H
Ostareck-Lederer, Antje
Methylated HNRNPK acts on RPS19 to regulate ALOX15 synthesis in erythropoiesis
title Methylated HNRNPK acts on RPS19 to regulate ALOX15 synthesis in erythropoiesis
title_full Methylated HNRNPK acts on RPS19 to regulate ALOX15 synthesis in erythropoiesis
title_fullStr Methylated HNRNPK acts on RPS19 to regulate ALOX15 synthesis in erythropoiesis
title_full_unstemmed Methylated HNRNPK acts on RPS19 to regulate ALOX15 synthesis in erythropoiesis
title_short Methylated HNRNPK acts on RPS19 to regulate ALOX15 synthesis in erythropoiesis
title_sort methylated hnrnpk acts on rps19 to regulate alox15 synthesis in erythropoiesis
topic RNA and RNA-protein complexes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8034617/
https://www.ncbi.nlm.nih.gov/pubmed/33660773
http://dx.doi.org/10.1093/nar/gkab116
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