The Phosphofructokinase Isoform AtPFK5 Is a Novel Target of Plastidic Thioredoxin-f-Dependent Redox Regulation

The chloroplast primary metabolism is of central importance for plant growth and performance. Therefore, it is tightly regulated in order to adequately respond to multiple environmental conditions. A major fluctuation that plants experience each day is the change between day and night, i.e., the cha...

Full description

Bibliographic Details
Main Authors: Natalia Hess, Simon Richter, Michael Liebthal, Karl-Josef Dietz, Angelika Mustroph
Format: Article
Language:English
Published: MDPI AG 2021-03-01
Series:Antioxidants
Subjects:
Online Access:https://www.mdpi.com/2076-3921/10/3/401
id doaj-691044e1cfb14c069c24b8565bd0a962
record_format Article
spelling doaj-691044e1cfb14c069c24b8565bd0a9622021-03-08T00:02:58ZengMDPI AGAntioxidants2076-39212021-03-011040140110.3390/antiox10030401The Phosphofructokinase Isoform AtPFK5 Is a Novel Target of Plastidic Thioredoxin-f-Dependent Redox RegulationNatalia Hess0Simon Richter1Michael Liebthal2Karl-Josef Dietz3Angelika Mustroph4Plant Physiology, University Bayreuth, Universitaetsstr. 30, 95440 Bayreuth, GermanyPlant Physiology, University Bayreuth, Universitaetsstr. 30, 95440 Bayreuth, GermanyDepartment of Biochemistry and Physiology of Plants, University of Bielefeld, 33615 Bielefeld, GermanyDepartment of Biochemistry and Physiology of Plants, University of Bielefeld, 33615 Bielefeld, GermanyPlant Physiology, University Bayreuth, Universitaetsstr. 30, 95440 Bayreuth, GermanyThe chloroplast primary metabolism is of central importance for plant growth and performance. Therefore, it is tightly regulated in order to adequately respond to multiple environmental conditions. A major fluctuation that plants experience each day is the change between day and night, i.e., the change between assimilation and dissimilation. Among other mechanisms, thioredoxin-mediated redox regulation is an important component of the regulation of plastid-localized metabolic enzymes. While assimilatory processes such as the Calvin–Benson cycle are activated under illumination, i.e., under reducing conditions, carbohydrate degradation is switched off during the day. Previous analyses have identified enzymes of the oxidative pentose phosphate pathway to be inactivated by reduction through thioredoxins. In this work, we present evidence that an enzyme of the plastidic glycolysis, the phosphofructokinase isoform AtPFK5, is also inactivated through reduction by thioredoxins, namely by thioredoxin-f. With the help of chemical oxidation, mutant analyses and further experiments, the highly conserved motif CXDXXC in AtPFK5 was identified as the target sequence for this regulatory mechanism. However, knocking out this isoform in plants had only very mild effects on plant growth and performance, indicating that the complex primary metabolism in plants can overcome a lack in AtPFK5 activity.https://www.mdpi.com/2076-3921/10/3/401phosphofructokinasethioredoxin<i>Arabidopsis thaliana</i>redox regulation
collection DOAJ
language English
format Article
sources DOAJ
author Natalia Hess
Simon Richter
Michael Liebthal
Karl-Josef Dietz
Angelika Mustroph
spellingShingle Natalia Hess
Simon Richter
Michael Liebthal
Karl-Josef Dietz
Angelika Mustroph
The Phosphofructokinase Isoform AtPFK5 Is a Novel Target of Plastidic Thioredoxin-f-Dependent Redox Regulation
Antioxidants
phosphofructokinase
thioredoxin
<i>Arabidopsis thaliana</i>
redox regulation
author_facet Natalia Hess
Simon Richter
Michael Liebthal
Karl-Josef Dietz
Angelika Mustroph
author_sort Natalia Hess
title The Phosphofructokinase Isoform AtPFK5 Is a Novel Target of Plastidic Thioredoxin-f-Dependent Redox Regulation
title_short The Phosphofructokinase Isoform AtPFK5 Is a Novel Target of Plastidic Thioredoxin-f-Dependent Redox Regulation
title_full The Phosphofructokinase Isoform AtPFK5 Is a Novel Target of Plastidic Thioredoxin-f-Dependent Redox Regulation
title_fullStr The Phosphofructokinase Isoform AtPFK5 Is a Novel Target of Plastidic Thioredoxin-f-Dependent Redox Regulation
title_full_unstemmed The Phosphofructokinase Isoform AtPFK5 Is a Novel Target of Plastidic Thioredoxin-f-Dependent Redox Regulation
title_sort phosphofructokinase isoform atpfk5 is a novel target of plastidic thioredoxin-f-dependent redox regulation
publisher MDPI AG
series Antioxidants
issn 2076-3921
publishDate 2021-03-01
description The chloroplast primary metabolism is of central importance for plant growth and performance. Therefore, it is tightly regulated in order to adequately respond to multiple environmental conditions. A major fluctuation that plants experience each day is the change between day and night, i.e., the change between assimilation and dissimilation. Among other mechanisms, thioredoxin-mediated redox regulation is an important component of the regulation of plastid-localized metabolic enzymes. While assimilatory processes such as the Calvin–Benson cycle are activated under illumination, i.e., under reducing conditions, carbohydrate degradation is switched off during the day. Previous analyses have identified enzymes of the oxidative pentose phosphate pathway to be inactivated by reduction through thioredoxins. In this work, we present evidence that an enzyme of the plastidic glycolysis, the phosphofructokinase isoform AtPFK5, is also inactivated through reduction by thioredoxins, namely by thioredoxin-f. With the help of chemical oxidation, mutant analyses and further experiments, the highly conserved motif CXDXXC in AtPFK5 was identified as the target sequence for this regulatory mechanism. However, knocking out this isoform in plants had only very mild effects on plant growth and performance, indicating that the complex primary metabolism in plants can overcome a lack in AtPFK5 activity.
topic phosphofructokinase
thioredoxin
<i>Arabidopsis thaliana</i>
redox regulation
url https://www.mdpi.com/2076-3921/10/3/401
work_keys_str_mv AT nataliahess thephosphofructokinaseisoformatpfk5isanoveltargetofplastidicthioredoxinfdependentredoxregulation
AT simonrichter thephosphofructokinaseisoformatpfk5isanoveltargetofplastidicthioredoxinfdependentredoxregulation
AT michaelliebthal thephosphofructokinaseisoformatpfk5isanoveltargetofplastidicthioredoxinfdependentredoxregulation
AT karljosefdietz thephosphofructokinaseisoformatpfk5isanoveltargetofplastidicthioredoxinfdependentredoxregulation
AT angelikamustroph thephosphofructokinaseisoformatpfk5isanoveltargetofplastidicthioredoxinfdependentredoxregulation
AT nataliahess phosphofructokinaseisoformatpfk5isanoveltargetofplastidicthioredoxinfdependentredoxregulation
AT simonrichter phosphofructokinaseisoformatpfk5isanoveltargetofplastidicthioredoxinfdependentredoxregulation
AT michaelliebthal phosphofructokinaseisoformatpfk5isanoveltargetofplastidicthioredoxinfdependentredoxregulation
AT karljosefdietz phosphofructokinaseisoformatpfk5isanoveltargetofplastidicthioredoxinfdependentredoxregulation
AT angelikamustroph phosphofructokinaseisoformatpfk5isanoveltargetofplastidicthioredoxinfdependentredoxregulation
_version_ 1724229193670066176