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A mini-TGA protein modulates gene expression through heterogeneous association with transcription factors

TGA (TGACG-binding) transcription factors, which bind their target DNA through a conserved basic region leucine zipper (bZIP) domain, are vital regulators of gene expression in salicylic acid (SA)-mediated plant immunity. Here, we investigated the role of StTGA2.1, a potato (Solanum tuberosum) TGA l...

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Autores principales: Tomaž, Špela, Petek, Marko, Lukan, Tjaša, Pogačar, Karmen, Stare, Katja, Teixeira Prates, Erica, Jacobson, Daniel A, Zrimec, Jan, Bajc, Gregor, Butala, Matej, Pompe Novak, Maruša, Dudley, Quentin, Patron, Nicola, Taler-Verčič, Ajda, Usenik, Aleksandra, Turk, Dušan, Prat, Salomé, Coll, Anna, Gruden, Kristina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10022624/
https://www.ncbi.nlm.nih.gov/pubmed/36517238
http://dx.doi.org/10.1093/plphys/kiac579
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author Tomaž, Špela
Petek, Marko
Lukan, Tjaša
Pogačar, Karmen
Stare, Katja
Teixeira Prates, Erica
Jacobson, Daniel A
Zrimec, Jan
Bajc, Gregor
Butala, Matej
Pompe Novak, Maruša
Dudley, Quentin
Patron, Nicola
Taler-Verčič, Ajda
Usenik, Aleksandra
Turk, Dušan
Prat, Salomé
Coll, Anna
Gruden, Kristina
author_facet Tomaž, Špela
Petek, Marko
Lukan, Tjaša
Pogačar, Karmen
Stare, Katja
Teixeira Prates, Erica
Jacobson, Daniel A
Zrimec, Jan
Bajc, Gregor
Butala, Matej
Pompe Novak, Maruša
Dudley, Quentin
Patron, Nicola
Taler-Verčič, Ajda
Usenik, Aleksandra
Turk, Dušan
Prat, Salomé
Coll, Anna
Gruden, Kristina
author_sort Tomaž, Špela
collection PubMed
description TGA (TGACG-binding) transcription factors, which bind their target DNA through a conserved basic region leucine zipper (bZIP) domain, are vital regulators of gene expression in salicylic acid (SA)-mediated plant immunity. Here, we investigated the role of StTGA2.1, a potato (Solanum tuberosum) TGA lacking the full bZIP, which we named a mini-TGA. Such truncated proteins have been widely assigned as loss-of-function mutants. We, however, confirmed that StTGA2.1 overexpression compensates for SA-deficiency, indicating a distinct mechanism of action compared with model plant species. To understand the underlying mechanisms, we showed that StTGA2.1 can physically interact with StTGA2.2 and StTGA2.3, while its interaction with DNA was not detected. We investigated the changes in transcriptional regulation due to StTGA2.1 overexpression, identifying direct and indirect target genes. Using in planta transactivation assays, we confirmed that StTGA2.1 interacts with StTGA2.3 to activate StPRX07, a member of class III peroxidases (StPRX), which are known to play role in immune response. Finally, via structural modeling and molecular dynamics simulations, we hypothesized that the compact molecular architecture of StTGA2.1 distorts DNA conformation upon heterodimer binding to enable transcriptional activation. This study demonstrates how protein truncation can lead to distinct functions and that such events should be studied carefully in other protein families.
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spelling pubmed-100226242023-03-18 A mini-TGA protein modulates gene expression through heterogeneous association with transcription factors Tomaž, Špela Petek, Marko Lukan, Tjaša Pogačar, Karmen Stare, Katja Teixeira Prates, Erica Jacobson, Daniel A Zrimec, Jan Bajc, Gregor Butala, Matej Pompe Novak, Maruša Dudley, Quentin Patron, Nicola Taler-Verčič, Ajda Usenik, Aleksandra Turk, Dušan Prat, Salomé Coll, Anna Gruden, Kristina Plant Physiol Research Article TGA (TGACG-binding) transcription factors, which bind their target DNA through a conserved basic region leucine zipper (bZIP) domain, are vital regulators of gene expression in salicylic acid (SA)-mediated plant immunity. Here, we investigated the role of StTGA2.1, a potato (Solanum tuberosum) TGA lacking the full bZIP, which we named a mini-TGA. Such truncated proteins have been widely assigned as loss-of-function mutants. We, however, confirmed that StTGA2.1 overexpression compensates for SA-deficiency, indicating a distinct mechanism of action compared with model plant species. To understand the underlying mechanisms, we showed that StTGA2.1 can physically interact with StTGA2.2 and StTGA2.3, while its interaction with DNA was not detected. We investigated the changes in transcriptional regulation due to StTGA2.1 overexpression, identifying direct and indirect target genes. Using in planta transactivation assays, we confirmed that StTGA2.1 interacts with StTGA2.3 to activate StPRX07, a member of class III peroxidases (StPRX), which are known to play role in immune response. Finally, via structural modeling and molecular dynamics simulations, we hypothesized that the compact molecular architecture of StTGA2.1 distorts DNA conformation upon heterodimer binding to enable transcriptional activation. This study demonstrates how protein truncation can lead to distinct functions and that such events should be studied carefully in other protein families. Oxford University Press 2022-12-15 /pmc/articles/PMC10022624/ /pubmed/36517238 http://dx.doi.org/10.1093/plphys/kiac579 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of American Society of Plant Biologists. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Tomaž, Špela
Petek, Marko
Lukan, Tjaša
Pogačar, Karmen
Stare, Katja
Teixeira Prates, Erica
Jacobson, Daniel A
Zrimec, Jan
Bajc, Gregor
Butala, Matej
Pompe Novak, Maruša
Dudley, Quentin
Patron, Nicola
Taler-Verčič, Ajda
Usenik, Aleksandra
Turk, Dušan
Prat, Salomé
Coll, Anna
Gruden, Kristina
A mini-TGA protein modulates gene expression through heterogeneous association with transcription factors
title A mini-TGA protein modulates gene expression through heterogeneous association with transcription factors
title_full A mini-TGA protein modulates gene expression through heterogeneous association with transcription factors
title_fullStr A mini-TGA protein modulates gene expression through heterogeneous association with transcription factors
title_full_unstemmed A mini-TGA protein modulates gene expression through heterogeneous association with transcription factors
title_short A mini-TGA protein modulates gene expression through heterogeneous association with transcription factors
title_sort mini-tga protein modulates gene expression through heterogeneous association with transcription factors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10022624/
https://www.ncbi.nlm.nih.gov/pubmed/36517238
http://dx.doi.org/10.1093/plphys/kiac579
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