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Regulating the regulator: nitric oxide control of post‐translational modifications
by
Durner, Jorg
, Hancock, John T.
, Barroso, Juan B.
, Lindermayr, Christian
, Brouquisse, Renaud
, Corpas, Francisco J.
, Gupta, Kapuganti Jagadis
, Petrivalsky, Marek
, Kolbert, Zsuzsanna
, Wendehenne, David
, Umbreen, Saima
, Loake, Gary J.
, Palma, José M.
in
Acetylation
/ Adaptation
/ bioactive properties
/ Biological activity
/ cysteine
/ Immune response
/ Life Sciences
/ moieties
/ Nitric oxide
/ nitric oxide (NO)
/ Nitric Oxide - metabolism
/ Nitrosation
/ Oxidation-Reduction
/ Oxidoreductions
/ persulfidation
/ Phosphorylation
/ plant adaptation
/ Plants - metabolism
/ Protein Processing, Post-Translational
/ Protein S
/ Proteins
/ reactive nitrogen species (RNS)
/ reactive oxygen species (ROS)
/ S-Nitrosothiols
/ SUMO protein
/ SUMOylation
/ S‐nitrosation
/ S‐nitrosylation
/ Tansley insight
/ thiols
/ Translation
2020
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Regulating the regulator: nitric oxide control of post‐translational modifications
by
Durner, Jorg
, Hancock, John T.
, Barroso, Juan B.
, Lindermayr, Christian
, Brouquisse, Renaud
, Corpas, Francisco J.
, Gupta, Kapuganti Jagadis
, Petrivalsky, Marek
, Kolbert, Zsuzsanna
, Wendehenne, David
, Umbreen, Saima
, Loake, Gary J.
, Palma, José M.
in
Acetylation
/ Adaptation
/ bioactive properties
/ Biological activity
/ cysteine
/ Immune response
/ Life Sciences
/ moieties
/ Nitric oxide
/ nitric oxide (NO)
/ Nitric Oxide - metabolism
/ Nitrosation
/ Oxidation-Reduction
/ Oxidoreductions
/ persulfidation
/ Phosphorylation
/ plant adaptation
/ Plants - metabolism
/ Protein Processing, Post-Translational
/ Protein S
/ Proteins
/ reactive nitrogen species (RNS)
/ reactive oxygen species (ROS)
/ S-Nitrosothiols
/ SUMO protein
/ SUMOylation
/ S‐nitrosation
/ S‐nitrosylation
/ Tansley insight
/ thiols
/ Translation
2020
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Regulating the regulator: nitric oxide control of post‐translational modifications
by
Durner, Jorg
, Hancock, John T.
, Barroso, Juan B.
, Lindermayr, Christian
, Brouquisse, Renaud
, Corpas, Francisco J.
, Gupta, Kapuganti Jagadis
, Petrivalsky, Marek
, Kolbert, Zsuzsanna
, Wendehenne, David
, Umbreen, Saima
, Loake, Gary J.
, Palma, José M.
in
Acetylation
/ Adaptation
/ bioactive properties
/ Biological activity
/ cysteine
/ Immune response
/ Life Sciences
/ moieties
/ Nitric oxide
/ nitric oxide (NO)
/ Nitric Oxide - metabolism
/ Nitrosation
/ Oxidation-Reduction
/ Oxidoreductions
/ persulfidation
/ Phosphorylation
/ plant adaptation
/ Plants - metabolism
/ Protein Processing, Post-Translational
/ Protein S
/ Proteins
/ reactive nitrogen species (RNS)
/ reactive oxygen species (ROS)
/ S-Nitrosothiols
/ SUMO protein
/ SUMOylation
/ S‐nitrosation
/ S‐nitrosylation
/ Tansley insight
/ thiols
/ Translation
2020
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Regulating the regulator: nitric oxide control of post‐translational modifications
Journal Article
Regulating the regulator: nitric oxide control of post‐translational modifications
2020
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Overview
Summary Nitric oxide (NO) is perfectly suited for the role of a redox signalling molecule. A key route for NO bioactivity occurs via protein S-nitrosation, and involves the addition of a NO moiety to a protein cysteine (Cys) thiol (–SH) to form an S-nitrosothiol (SNO). This process is thought to underpin a myriad of cellular processes in plants that are linked to development, environmental responses and immune function. Here we collate emerging evidence showing that NO bioactivity regulates a growing number of diverse post-translational modifications including SUMOylation, phosphorylation, persulfidation and acetylation. We provide examples of how NO orchestrates these processes to mediate plant adaptation to a variety of cellular cues.
Publisher
Wiley,CCSD,Wiley Subscription Services, Inc
Subject
ISBN
0005348205000
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