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Human PAPS Synthase Isoforms Are Dynamically Regulated Enzymes with Access to Nucleus and Cytoplasm

In higher eukaryotes, PAPS synthases are the only enzymes producing the essential sulphate-donor 3′-phospho-adenosine-5′-phosphosulphate (PAPS). Recently, PAPS synthases have been associated with several genetic diseases and retroviral infection. To improve our understanding of their pathobiological...

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Autores principales: Schröder, Elisabeth, Gebel, Lena, Eremeev, Andrey A., Morgner, Jessica, Grum, Daniel, Knauer, Shirley K., Bayer, Peter, Mueller, Jonathan W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3252339/
https://www.ncbi.nlm.nih.gov/pubmed/22242175
http://dx.doi.org/10.1371/journal.pone.0029559
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author Schröder, Elisabeth
Gebel, Lena
Eremeev, Andrey A.
Morgner, Jessica
Grum, Daniel
Knauer, Shirley K.
Bayer, Peter
Mueller, Jonathan W.
author_facet Schröder, Elisabeth
Gebel, Lena
Eremeev, Andrey A.
Morgner, Jessica
Grum, Daniel
Knauer, Shirley K.
Bayer, Peter
Mueller, Jonathan W.
author_sort Schröder, Elisabeth
collection PubMed
description In higher eukaryotes, PAPS synthases are the only enzymes producing the essential sulphate-donor 3′-phospho-adenosine-5′-phosphosulphate (PAPS). Recently, PAPS synthases have been associated with several genetic diseases and retroviral infection. To improve our understanding of their pathobiological functions, we analysed the intracellular localisation of the two human PAPS synthases, PAPSS1 and PAPSS2. For both enzymes, we observed pronounced heterogeneity in their subcellular localisation. PAPSS1 was predominantly nuclear, whereas PAPSS2 localised mainly within the cytoplasm. Treatment with the nuclear export inhibitor leptomycin B had little effect on their localisation. However, a mutagenesis screen revealed an Arg-Arg motif at the kinase interface exhibiting export activity. Notably, both isoforms contain a conserved N-terminal basic Lys-Lys-Xaa-Lys motif indispensable for their nuclear localisation. This nuclear localisation signal was more efficient in PAPSS1 than in PAPSS2. The activities of the identified localisation signals were confirmed by microinjection studies. Collectively, we describe unusual localisation signals of both PAPS synthase isoforms, mobile enzymes capable of executing their function in the cytoplasm as well as in the nucleus.
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spelling pubmed-32523392012-01-12 Human PAPS Synthase Isoforms Are Dynamically Regulated Enzymes with Access to Nucleus and Cytoplasm Schröder, Elisabeth Gebel, Lena Eremeev, Andrey A. Morgner, Jessica Grum, Daniel Knauer, Shirley K. Bayer, Peter Mueller, Jonathan W. PLoS One Research Article In higher eukaryotes, PAPS synthases are the only enzymes producing the essential sulphate-donor 3′-phospho-adenosine-5′-phosphosulphate (PAPS). Recently, PAPS synthases have been associated with several genetic diseases and retroviral infection. To improve our understanding of their pathobiological functions, we analysed the intracellular localisation of the two human PAPS synthases, PAPSS1 and PAPSS2. For both enzymes, we observed pronounced heterogeneity in their subcellular localisation. PAPSS1 was predominantly nuclear, whereas PAPSS2 localised mainly within the cytoplasm. Treatment with the nuclear export inhibitor leptomycin B had little effect on their localisation. However, a mutagenesis screen revealed an Arg-Arg motif at the kinase interface exhibiting export activity. Notably, both isoforms contain a conserved N-terminal basic Lys-Lys-Xaa-Lys motif indispensable for their nuclear localisation. This nuclear localisation signal was more efficient in PAPSS1 than in PAPSS2. The activities of the identified localisation signals were confirmed by microinjection studies. Collectively, we describe unusual localisation signals of both PAPS synthase isoforms, mobile enzymes capable of executing their function in the cytoplasm as well as in the nucleus. Public Library of Science 2012-01-05 /pmc/articles/PMC3252339/ /pubmed/22242175 http://dx.doi.org/10.1371/journal.pone.0029559 Text en Schröder et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Schröder, Elisabeth
Gebel, Lena
Eremeev, Andrey A.
Morgner, Jessica
Grum, Daniel
Knauer, Shirley K.
Bayer, Peter
Mueller, Jonathan W.
Human PAPS Synthase Isoforms Are Dynamically Regulated Enzymes with Access to Nucleus and Cytoplasm
title Human PAPS Synthase Isoforms Are Dynamically Regulated Enzymes with Access to Nucleus and Cytoplasm
title_full Human PAPS Synthase Isoforms Are Dynamically Regulated Enzymes with Access to Nucleus and Cytoplasm
title_fullStr Human PAPS Synthase Isoforms Are Dynamically Regulated Enzymes with Access to Nucleus and Cytoplasm
title_full_unstemmed Human PAPS Synthase Isoforms Are Dynamically Regulated Enzymes with Access to Nucleus and Cytoplasm
title_short Human PAPS Synthase Isoforms Are Dynamically Regulated Enzymes with Access to Nucleus and Cytoplasm
title_sort human paps synthase isoforms are dynamically regulated enzymes with access to nucleus and cytoplasm
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3252339/
https://www.ncbi.nlm.nih.gov/pubmed/22242175
http://dx.doi.org/10.1371/journal.pone.0029559
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