Aminopropyltransferases involved in polyamine biosynthesis localize preferentially in the nucleus of plant cells.

Plant aminopropyltransferases consist of a group of enzymes that transfer aminopropyl groups derived from decarboxylated S-adenosyl-methionine (dcAdoMet or dcSAM) to propylamine acceptors to produce polyamines, ubiquitous metabolites with positive charge at physiological pH. Spermidine synthase (SPD...

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Main Authors: Borja Belda-Palazón, Leticia Ruiz, Esmeralda Martí, Susana Tárraga, Antonio F Tiburcio, Francisco Culiáñez, Rosa Farràs, Pedro Carrasco, Alejandro Ferrando
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3466176?pdf=render
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spelling doaj-6a4e9a015e0043b58844a77e9253ae612020-11-24T21:34:35ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-01710e4690710.1371/journal.pone.0046907Aminopropyltransferases involved in polyamine biosynthesis localize preferentially in the nucleus of plant cells.Borja Belda-PalazónLeticia RuizEsmeralda MartíSusana TárragaAntonio F TiburcioFrancisco CuliáñezRosa FarràsPedro CarrascoAlejandro FerrandoPlant aminopropyltransferases consist of a group of enzymes that transfer aminopropyl groups derived from decarboxylated S-adenosyl-methionine (dcAdoMet or dcSAM) to propylamine acceptors to produce polyamines, ubiquitous metabolites with positive charge at physiological pH. Spermidine synthase (SPDS) uses putrescine as amino acceptor to form spermidine, whereas spermine synthase (SPMS) and thermospermine synthase (TSPMS) use spermidine as acceptor to synthesize the isomers spermine and thermospermine respectively. In previous work it was shown that both SPDS1 and SPDS2 can physically interact with SPMS although no data concerning the subcellular localization was reported. Here we study the subcellular localization of these enzymes and their protein dimer complexes with gateway-based Bimolecular Fluorescence Complementation (BiFC) binary vectors. In addition, we have characterized the molecular weight of the enzyme complexes by gel filtration chromatography with in vitro assembled recombinant enzymes and with endogenous plant protein extracts. Our data suggest that aminopropyltransferases display a dual subcellular localization both in the cytosol and nuclear enriched fractions, and they assemble preferably as dimers. The BiFC transient expression data suggest that aminopropyltransferase heterodimer complexes take place preferentially inside the nucleus.http://europepmc.org/articles/PMC3466176?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Borja Belda-Palazón
Leticia Ruiz
Esmeralda Martí
Susana Tárraga
Antonio F Tiburcio
Francisco Culiáñez
Rosa Farràs
Pedro Carrasco
Alejandro Ferrando
spellingShingle Borja Belda-Palazón
Leticia Ruiz
Esmeralda Martí
Susana Tárraga
Antonio F Tiburcio
Francisco Culiáñez
Rosa Farràs
Pedro Carrasco
Alejandro Ferrando
Aminopropyltransferases involved in polyamine biosynthesis localize preferentially in the nucleus of plant cells.
PLoS ONE
author_facet Borja Belda-Palazón
Leticia Ruiz
Esmeralda Martí
Susana Tárraga
Antonio F Tiburcio
Francisco Culiáñez
Rosa Farràs
Pedro Carrasco
Alejandro Ferrando
author_sort Borja Belda-Palazón
title Aminopropyltransferases involved in polyamine biosynthesis localize preferentially in the nucleus of plant cells.
title_short Aminopropyltransferases involved in polyamine biosynthesis localize preferentially in the nucleus of plant cells.
title_full Aminopropyltransferases involved in polyamine biosynthesis localize preferentially in the nucleus of plant cells.
title_fullStr Aminopropyltransferases involved in polyamine biosynthesis localize preferentially in the nucleus of plant cells.
title_full_unstemmed Aminopropyltransferases involved in polyamine biosynthesis localize preferentially in the nucleus of plant cells.
title_sort aminopropyltransferases involved in polyamine biosynthesis localize preferentially in the nucleus of plant cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Plant aminopropyltransferases consist of a group of enzymes that transfer aminopropyl groups derived from decarboxylated S-adenosyl-methionine (dcAdoMet or dcSAM) to propylamine acceptors to produce polyamines, ubiquitous metabolites with positive charge at physiological pH. Spermidine synthase (SPDS) uses putrescine as amino acceptor to form spermidine, whereas spermine synthase (SPMS) and thermospermine synthase (TSPMS) use spermidine as acceptor to synthesize the isomers spermine and thermospermine respectively. In previous work it was shown that both SPDS1 and SPDS2 can physically interact with SPMS although no data concerning the subcellular localization was reported. Here we study the subcellular localization of these enzymes and their protein dimer complexes with gateway-based Bimolecular Fluorescence Complementation (BiFC) binary vectors. In addition, we have characterized the molecular weight of the enzyme complexes by gel filtration chromatography with in vitro assembled recombinant enzymes and with endogenous plant protein extracts. Our data suggest that aminopropyltransferases display a dual subcellular localization both in the cytosol and nuclear enriched fractions, and they assemble preferably as dimers. The BiFC transient expression data suggest that aminopropyltransferase heterodimer complexes take place preferentially inside the nucleus.
url http://europepmc.org/articles/PMC3466176?pdf=render
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