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In Vivo NADH/NAD(+) Biosensing Reveals the Dynamics of Cytosolic Redox Metabolism in Plants

NADH and NAD(+) are a ubiquitous cellular redox couple. Although the central role of NAD in plant metabolism and its regulatory role have been investigated extensively at the biochemical level, analyzing the subcellular redox dynamics of NAD in living plant tissues has been challenging. Here, we est...

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Autores principales: Steinbeck, Janina, Fuchs, Philippe, Negroni, Yuri L., Elsässer, Marlene, Lichtenauer, Sophie, Stockdreher, Yvonne, Feitosa-Araujo, Elias, Kroll, Johanna B., Niemeier, Jan-Ole, Humberg, Christoph, Smith, Edward N., Mai, Marie, Nunes-Nesi, Adriano, Meyer, Andreas J., Zottini, Michela, Morgan, Bruce, Wagner, Stephan, Schwarzländer, Markus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Plant Biologists 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7534465/
https://www.ncbi.nlm.nih.gov/pubmed/32796121
http://dx.doi.org/10.1105/tpc.20.00241
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author Steinbeck, Janina
Fuchs, Philippe
Negroni, Yuri L.
Elsässer, Marlene
Lichtenauer, Sophie
Stockdreher, Yvonne
Feitosa-Araujo, Elias
Kroll, Johanna B.
Niemeier, Jan-Ole
Humberg, Christoph
Smith, Edward N.
Mai, Marie
Nunes-Nesi, Adriano
Meyer, Andreas J.
Zottini, Michela
Morgan, Bruce
Wagner, Stephan
Schwarzländer, Markus
author_facet Steinbeck, Janina
Fuchs, Philippe
Negroni, Yuri L.
Elsässer, Marlene
Lichtenauer, Sophie
Stockdreher, Yvonne
Feitosa-Araujo, Elias
Kroll, Johanna B.
Niemeier, Jan-Ole
Humberg, Christoph
Smith, Edward N.
Mai, Marie
Nunes-Nesi, Adriano
Meyer, Andreas J.
Zottini, Michela
Morgan, Bruce
Wagner, Stephan
Schwarzländer, Markus
author_sort Steinbeck, Janina
collection PubMed
description NADH and NAD(+) are a ubiquitous cellular redox couple. Although the central role of NAD in plant metabolism and its regulatory role have been investigated extensively at the biochemical level, analyzing the subcellular redox dynamics of NAD in living plant tissues has been challenging. Here, we established live monitoring of NADH/NAD(+) in plants using the genetically encoded fluorescent biosensor Peredox-mCherry. We established Peredox-mCherry lines of Arabidopsis (Arabidopsis thaliana) and validated the biophysical and biochemical properties of the sensor that are critical for in planta measurements, including specificity, pH stability, and reversibility. We generated an NAD redox atlas of the cytosol of living Arabidopsis seedlings that revealed pronounced differences in NAD redox status between different organs and tissues. Manipulating the metabolic status through dark-to-light transitions, respiratory inhibition, sugar supplementation, and elicitor exposure revealed a remarkable degree of plasticity of the cytosolic NAD redox status and demonstrated metabolic redox coupling between cell compartments in leaves. Finally, we used protein engineering to generate a sensor variant that expands the resolvable NAD redox range. In summary, we established a technique for in planta NAD redox monitoring to deliver important insight into the in vivo dynamics of plant cytosolic redox metabolism.
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spelling pubmed-75344652020-10-13 In Vivo NADH/NAD(+) Biosensing Reveals the Dynamics of Cytosolic Redox Metabolism in Plants Steinbeck, Janina Fuchs, Philippe Negroni, Yuri L. Elsässer, Marlene Lichtenauer, Sophie Stockdreher, Yvonne Feitosa-Araujo, Elias Kroll, Johanna B. Niemeier, Jan-Ole Humberg, Christoph Smith, Edward N. Mai, Marie Nunes-Nesi, Adriano Meyer, Andreas J. Zottini, Michela Morgan, Bruce Wagner, Stephan Schwarzländer, Markus Plant Cell Research Articles NADH and NAD(+) are a ubiquitous cellular redox couple. Although the central role of NAD in plant metabolism and its regulatory role have been investigated extensively at the biochemical level, analyzing the subcellular redox dynamics of NAD in living plant tissues has been challenging. Here, we established live monitoring of NADH/NAD(+) in plants using the genetically encoded fluorescent biosensor Peredox-mCherry. We established Peredox-mCherry lines of Arabidopsis (Arabidopsis thaliana) and validated the biophysical and biochemical properties of the sensor that are critical for in planta measurements, including specificity, pH stability, and reversibility. We generated an NAD redox atlas of the cytosol of living Arabidopsis seedlings that revealed pronounced differences in NAD redox status between different organs and tissues. Manipulating the metabolic status through dark-to-light transitions, respiratory inhibition, sugar supplementation, and elicitor exposure revealed a remarkable degree of plasticity of the cytosolic NAD redox status and demonstrated metabolic redox coupling between cell compartments in leaves. Finally, we used protein engineering to generate a sensor variant that expands the resolvable NAD redox range. In summary, we established a technique for in planta NAD redox monitoring to deliver important insight into the in vivo dynamics of plant cytosolic redox metabolism. American Society of Plant Biologists 2020-10 2020-10-13 /pmc/articles/PMC7534465/ /pubmed/32796121 http://dx.doi.org/10.1105/tpc.20.00241 Text en © 2020 American Society of Plant Biologists. All rights reserved.
spellingShingle Research Articles
Steinbeck, Janina
Fuchs, Philippe
Negroni, Yuri L.
Elsässer, Marlene
Lichtenauer, Sophie
Stockdreher, Yvonne
Feitosa-Araujo, Elias
Kroll, Johanna B.
Niemeier, Jan-Ole
Humberg, Christoph
Smith, Edward N.
Mai, Marie
Nunes-Nesi, Adriano
Meyer, Andreas J.
Zottini, Michela
Morgan, Bruce
Wagner, Stephan
Schwarzländer, Markus
In Vivo NADH/NAD(+) Biosensing Reveals the Dynamics of Cytosolic Redox Metabolism in Plants
title In Vivo NADH/NAD(+) Biosensing Reveals the Dynamics of Cytosolic Redox Metabolism in Plants
title_full In Vivo NADH/NAD(+) Biosensing Reveals the Dynamics of Cytosolic Redox Metabolism in Plants
title_fullStr In Vivo NADH/NAD(+) Biosensing Reveals the Dynamics of Cytosolic Redox Metabolism in Plants
title_full_unstemmed In Vivo NADH/NAD(+) Biosensing Reveals the Dynamics of Cytosolic Redox Metabolism in Plants
title_short In Vivo NADH/NAD(+) Biosensing Reveals the Dynamics of Cytosolic Redox Metabolism in Plants
title_sort in vivo nadh/nad(+) biosensing reveals the dynamics of cytosolic redox metabolism in plants
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7534465/
https://www.ncbi.nlm.nih.gov/pubmed/32796121
http://dx.doi.org/10.1105/tpc.20.00241
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