4.7 Review

Pathways crossing mammalian and plant sulfenomic landscapes

期刊

FREE RADICAL BIOLOGY AND MEDICINE
卷 122, 期 -, 页码 193-201

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.freeradbiomed.2018.02.012

关键词

Redox signaling; Cysteine oxidation; Sulfenic acid

资金

  1. Vrije Universiteit Brussels (SRP34) (Strategic Research Program 34)
  2. Research Foundation-Flanders (Excellence of Science project) [30829584]
  3. Research Foundation-Flanders [G0D7914N, G055416N, G0D70149]
  4. European Cooperation in Science and Research (COST Action) [BM1203/EU-ROS]
  5. Ghent University Multidisciplinary Research Partnership Sustainable BioEconomy [01MRB510W]
  6. Interuniversity Attraction Poles Program [IUAP P7/29]
  7. Ghent University Special Research Fund [01J11311]

向作者/读者索取更多资源

Reactive oxygen species (ROS) and especially hydrogen peroxide, are potent signaling molecules that activate cellular defense responses. Hydrogen peroxide can provoke reversible and irreversible oxidative posttranslational modifications on cysteine residues of proteins that act in diverse signaling circuits. The initial oxidation product of cysteine, sulfenic acid, has emerged as a biologically relevant posttranslational modification, because it is the primary sulfur oxygen modification that precedes divergent series of additional adaptations. In this review, we focus on the functional consequences of sulfenylation for both mammalian and plant proteins. Furthermore, we created compendia of sulfenylated proteins in human and plants based on mass spectrometry experiments, thereby defining the current plant and human sulfenomes. To assess the evolutionary conservation of sulfenylation, the sulfenomes of human and plants were compared based on protein homology. In total, 185 human sulfenylated proteins showed homology to sulfenylated plant proteins and the conserved sulfenylation targets participated in specific biological pathways and metabolic processes. Comprehensive functional studies of sulfenylation remains a future challenge, with multiple candidates suggested by mass spectrometry awaiting scrutinization.

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