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Development of an activity assay for characterizing deoxyhypusine synthase and its diverse reaction products

Deoxyhypusine synthase transfers an aminobutyl moiety from spermidine to the eukaryotic translation initiation factor 5A (eIF5A) in the first step of eIF5A activation. This exclusive post‐translational modification is conserved in all eukaryotes. Activated eIF5A has been shown to be essential for ce...

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Autores principales: Kaltenegger, Elisabeth, Prakashrao, Arunraj S., Çiçek, Serhat S., Ober, Dietrich
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7780104/
https://www.ncbi.nlm.nih.gov/pubmed/33247548
http://dx.doi.org/10.1002/2211-5463.13046
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author Kaltenegger, Elisabeth
Prakashrao, Arunraj S.
Çiçek, Serhat S.
Ober, Dietrich
author_facet Kaltenegger, Elisabeth
Prakashrao, Arunraj S.
Çiçek, Serhat S.
Ober, Dietrich
author_sort Kaltenegger, Elisabeth
collection PubMed
description Deoxyhypusine synthase transfers an aminobutyl moiety from spermidine to the eukaryotic translation initiation factor 5A (eIF5A) in the first step of eIF5A activation. This exclusive post‐translational modification is conserved in all eukaryotes. Activated eIF5A has been shown to be essential for cell proliferation and viability. Recent reports have linked the activation of eIF5A to several human diseases. Deoxyhypusine synthase, which is encoded by a single gene copy in most eukaryotes, was duplicated in several plant lineages during evolution, the copies being repeatedly recruited to pyrrolizidine alkaloid biosynthesis. However, the function of many of these duplicates is unknown. Notably, deoxyhypusine synthase is highly promiscuous and can catalyze various reactions, often of unknown biological relevance. To facilitate in‐depth biochemical studies of this enzyme, we report here the development of a simple and robust in vitro enzyme assay. It involves precolumn derivatization of the polyamines taking part in the reaction and avoids the need for the previously used radioactively labeled tracers. The derivatized polyamines are quantified after high‐performance liquid chromatography coupled to diode array and fluorescence detectors. By performing kinetic analyses of deoxyhypusine synthase and its paralog from the pyrrolizidine alkaloid‐producing plant Senecio vernalis, we demonstrate that the assay unequivocally differentiates the paralogous enzymes. Furthermore, it detects and quantifies, in a single assay, the side reactions that occur in parallel to the main reaction. The presented assay thus provides a detailed biochemical characterization of deoxyhypusine synthase and its paralogs.
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spelling pubmed-77801042021-01-08 Development of an activity assay for characterizing deoxyhypusine synthase and its diverse reaction products Kaltenegger, Elisabeth Prakashrao, Arunraj S. Çiçek, Serhat S. Ober, Dietrich FEBS Open Bio Methods Deoxyhypusine synthase transfers an aminobutyl moiety from spermidine to the eukaryotic translation initiation factor 5A (eIF5A) in the first step of eIF5A activation. This exclusive post‐translational modification is conserved in all eukaryotes. Activated eIF5A has been shown to be essential for cell proliferation and viability. Recent reports have linked the activation of eIF5A to several human diseases. Deoxyhypusine synthase, which is encoded by a single gene copy in most eukaryotes, was duplicated in several plant lineages during evolution, the copies being repeatedly recruited to pyrrolizidine alkaloid biosynthesis. However, the function of many of these duplicates is unknown. Notably, deoxyhypusine synthase is highly promiscuous and can catalyze various reactions, often of unknown biological relevance. To facilitate in‐depth biochemical studies of this enzyme, we report here the development of a simple and robust in vitro enzyme assay. It involves precolumn derivatization of the polyamines taking part in the reaction and avoids the need for the previously used radioactively labeled tracers. The derivatized polyamines are quantified after high‐performance liquid chromatography coupled to diode array and fluorescence detectors. By performing kinetic analyses of deoxyhypusine synthase and its paralog from the pyrrolizidine alkaloid‐producing plant Senecio vernalis, we demonstrate that the assay unequivocally differentiates the paralogous enzymes. Furthermore, it detects and quantifies, in a single assay, the side reactions that occur in parallel to the main reaction. The presented assay thus provides a detailed biochemical characterization of deoxyhypusine synthase and its paralogs. John Wiley and Sons Inc. 2020-12-08 /pmc/articles/PMC7780104/ /pubmed/33247548 http://dx.doi.org/10.1002/2211-5463.13046 Text en © 2020 The Authors. FEBS Open Bio published by John Wiley & Sons Ltd on behalf of Federation of European Biochemical Societies. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Methods
Kaltenegger, Elisabeth
Prakashrao, Arunraj S.
Çiçek, Serhat S.
Ober, Dietrich
Development of an activity assay for characterizing deoxyhypusine synthase and its diverse reaction products
title Development of an activity assay for characterizing deoxyhypusine synthase and its diverse reaction products
title_full Development of an activity assay for characterizing deoxyhypusine synthase and its diverse reaction products
title_fullStr Development of an activity assay for characterizing deoxyhypusine synthase and its diverse reaction products
title_full_unstemmed Development of an activity assay for characterizing deoxyhypusine synthase and its diverse reaction products
title_short Development of an activity assay for characterizing deoxyhypusine synthase and its diverse reaction products
title_sort development of an activity assay for characterizing deoxyhypusine synthase and its diverse reaction products
topic Methods
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7780104/
https://www.ncbi.nlm.nih.gov/pubmed/33247548
http://dx.doi.org/10.1002/2211-5463.13046
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