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Plant and Cell Physiology
Article . 2019 . Peer-reviewed
License: OUP Standard Publication Reuse
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Plant and Cell Physiology
Article . 2020
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Altered Plant and Nodule Development and Protein S-Nitrosylation in Lotus japonicus Mutants Deficient in S-Nitrosoglutathione Reductases

Authors: Manuel Becana; Jens Stougaard; Juan B Barroso; Irene Orera; Niels Sandal; Juan C Begara-Morales; Stefanie Wienkoop; +2 Authors

Altered Plant and Nodule Development and Protein S-Nitrosylation in Lotus japonicus Mutants Deficient in S-Nitrosoglutathione Reductases

Abstract

Abstract Nitric oxide (NO) is a crucial signaling molecule that conveys its bioactivity mainly through protein S-nitrosylation. This is a reversible post-translational modification (PTM) that may affect protein function. S-nitrosoglutathione (GSNO) is a cellular NO reservoir and NO donor in protein S-nitrosylation. The enzyme S-nitrosoglutathione reductase (GSNOR) degrades GSNO, thereby regulating indirectly signaling cascades associated with this PTM. Here, the two GSNORs of the legume Lotus japonicus, LjGSNOR1 and LjGSNOR2, have been functionally characterized. The LjGSNOR1 gene is very active in leaves and roots, whereas LjGSNOR2 is highly expressed in nodules. The enzyme activities are regulated in vitro by redox-based PTMs. Reducing conditions and hydrogen sulfide-mediated cysteine persulfidation induced both activities, whereas cysteine oxidation or glutathionylation inhibited them. Ljgsnor1 knockout mutants contained higher levels of S-nitrosothiols. Affinity chromatography and subsequent shotgun proteomics allowed us to identify 19 proteins that are differentially S-nitrosylated in the mutant and the wild-type. These include proteins involved in biotic stress, protein degradation, antioxidant protection and photosynthesis. We propose that, in the mutant plants, deregulated protein S-nitrosylation contributes to developmental alterations, such as growth inhibition, impaired nodulation and delayed flowering and fruiting. Our results highlight the importance of GSNOR function in legume biology.

Country
Austria
Keywords

106031 Plant physiology, EXPRESSION, Proteomics, 570, 106037 Proteomik, STRESS, Legume nodules, 106002 Biochemie, 106037 Proteomics, FORMALDEHYDE DEHYDROGENASE, Genes, Plant, Nitric Oxide, S-Nitrosoglutathione Reductase, S-nitrosoglu tathione, Protein S, Nithrosothiols, HOMOGLUTATHIONE, Tandem Mass Spectrometry, GLUTATHIONE, S-nitrosoglutathione, Nitric Oxide Donors, Legume nodules • Nitrosothiols • S-nitrosoglu tathione • S-nitrosoglutathione reducta, Cysteine, MODULATION, Plant Proteins, 580, NITRIC-OXIDE, S-nitrosoglutathione reductase, S-Nitrosothiols, IDENTIFICATION, 106031 Pflanzenphysiologie, 106002 Biochemistry, Nitrosothiols, ARABIDOPSIS, Aldehyde Oxidoreductases, S-nitrosylation, S-Nitrosoglutathione, Lotus, S-nitrosoglutathione reducta, Legume Nodules, LEGUME, Oxidation-Reduction, Protein Processing, Post-Translational

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selected citations
These citations are derived from selected sources.
This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Citations provided by BIP!
popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
BIP!Popularity provided by BIP!
influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Influence provided by BIP!
impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
BIP!Impulse provided by BIP!
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