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Characterisation of the tryptophan synthase alpha subunit in maize

BACKGROUND: In bacteria, such as Salmonella typhimurium, tryptophan is synthesized from indole-3-glycerole phosphate (IGP) by a tryptophan synthase αββα heterotetramer. Plants have evolved multiple α (TSA) and β (TSB) homologs, which have probably diverged in biological function and their ability of...

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Autores principales: Kriechbaumer, Verena, Weigang, Linda, Fießelmann, Andreas, Letzel, Thomas, Frey, Monika, Gierl, Alfons, Glawischnig, Erich
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2395261/
https://www.ncbi.nlm.nih.gov/pubmed/18430213
http://dx.doi.org/10.1186/1471-2229-8-44
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author Kriechbaumer, Verena
Weigang, Linda
Fießelmann, Andreas
Letzel, Thomas
Frey, Monika
Gierl, Alfons
Glawischnig, Erich
author_facet Kriechbaumer, Verena
Weigang, Linda
Fießelmann, Andreas
Letzel, Thomas
Frey, Monika
Gierl, Alfons
Glawischnig, Erich
author_sort Kriechbaumer, Verena
collection PubMed
description BACKGROUND: In bacteria, such as Salmonella typhimurium, tryptophan is synthesized from indole-3-glycerole phosphate (IGP) by a tryptophan synthase αββα heterotetramer. Plants have evolved multiple α (TSA) and β (TSB) homologs, which have probably diverged in biological function and their ability of subunit interaction. There is some evidence for a tryptophan synthase (TS) complex in Arabidopsis. On the other hand maize (Zea mays) expresses the TSA-homologs BX1 and IGL that efficiently cleave IGP, independent of interaction with TSB. RESULTS: In order to clarify, how tryptophan is synthesized in maize, two TSA homologs, hitherto uncharacterized ZmTSA and ZmTSAlike, were functionally analyzed. ZmTSA is localized in plastids, the major site of tryptophan biosynthesis in plants. It catalyzes the tryptophan synthase α-reaction (cleavage of IGP), and forms a tryptophan synthase complex with ZmTSB1 in vitro. The catalytic efficiency of the α-reaction is strongly enhanced upon complex formation. A 160 kD tryptophan synthase complex was partially purified from maize leaves and ZmTSA was identified as native α-subunit of this complex by mass spectrometry. ZmTSAlike, for which no in vitro activity was detected, is localized in the cytosol. ZmTSAlike, BX1, and IGL were not detectable in the native tryptophan synthase complex in leaves. CONCLUSION: It was demonstrated in vivo and in vitro that maize forms a tryptophan synthase complex and ZmTSA functions as α-subunit in this complex.
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spelling pubmed-23952612008-05-24 Characterisation of the tryptophan synthase alpha subunit in maize Kriechbaumer, Verena Weigang, Linda Fießelmann, Andreas Letzel, Thomas Frey, Monika Gierl, Alfons Glawischnig, Erich BMC Plant Biol Research Article BACKGROUND: In bacteria, such as Salmonella typhimurium, tryptophan is synthesized from indole-3-glycerole phosphate (IGP) by a tryptophan synthase αββα heterotetramer. Plants have evolved multiple α (TSA) and β (TSB) homologs, which have probably diverged in biological function and their ability of subunit interaction. There is some evidence for a tryptophan synthase (TS) complex in Arabidopsis. On the other hand maize (Zea mays) expresses the TSA-homologs BX1 and IGL that efficiently cleave IGP, independent of interaction with TSB. RESULTS: In order to clarify, how tryptophan is synthesized in maize, two TSA homologs, hitherto uncharacterized ZmTSA and ZmTSAlike, were functionally analyzed. ZmTSA is localized in plastids, the major site of tryptophan biosynthesis in plants. It catalyzes the tryptophan synthase α-reaction (cleavage of IGP), and forms a tryptophan synthase complex with ZmTSB1 in vitro. The catalytic efficiency of the α-reaction is strongly enhanced upon complex formation. A 160 kD tryptophan synthase complex was partially purified from maize leaves and ZmTSA was identified as native α-subunit of this complex by mass spectrometry. ZmTSAlike, for which no in vitro activity was detected, is localized in the cytosol. ZmTSAlike, BX1, and IGL were not detectable in the native tryptophan synthase complex in leaves. CONCLUSION: It was demonstrated in vivo and in vitro that maize forms a tryptophan synthase complex and ZmTSA functions as α-subunit in this complex. BioMed Central 2008-04-22 /pmc/articles/PMC2395261/ /pubmed/18430213 http://dx.doi.org/10.1186/1471-2229-8-44 Text en Copyright © 2008 Kriechbaumer et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Kriechbaumer, Verena
Weigang, Linda
Fießelmann, Andreas
Letzel, Thomas
Frey, Monika
Gierl, Alfons
Glawischnig, Erich
Characterisation of the tryptophan synthase alpha subunit in maize
title Characterisation of the tryptophan synthase alpha subunit in maize
title_full Characterisation of the tryptophan synthase alpha subunit in maize
title_fullStr Characterisation of the tryptophan synthase alpha subunit in maize
title_full_unstemmed Characterisation of the tryptophan synthase alpha subunit in maize
title_short Characterisation of the tryptophan synthase alpha subunit in maize
title_sort characterisation of the tryptophan synthase alpha subunit in maize
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2395261/
https://www.ncbi.nlm.nih.gov/pubmed/18430213
http://dx.doi.org/10.1186/1471-2229-8-44
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