Reactive oxygen species act as important second messengers in cell signaling and homeostasis through the oxidation of protein thiols. However, the dynamic nature of protein oxidation and the lack of sensitivity of existing molecular probes have hindered our understanding of such reactions; therefore, new tools are required to address these challenges. We designed a bifunctional variant of the strained bicyclo[6.1.0]nonyne (BCN-E-BCN) that enables the tagging of intracellular protein sulfenic acids for biorthogonal copper-free click chemistry. In validation studies, BCN-E-BCN binds the sulfenylated form of the actin-severing protein cofilin, while mutation of the cognate cysteine residues abrogates its binding. BCN-E-BCN is cell permeable an...
Redox-mediated protein modifications control numerous processes in both normal and disease metabolis...
Cysteine sulfenic acids (Cys-SOH) are pivotal modifications in thiol-based redox signaling and centr...
Reactive oxygen species (ROS) regulate various biological processes by modifying reactive cysteine r...
Reactive oxygen species act as important second messengers in cell signaling and homeostasis through...
Protein sulfenylation (RSOH), the redox‐based modification of cysteine thiol side chains by hydrogen...
Protein sulfenic acids are formed by the reaction of biologically relevant reactive oxygen species w...
ABSTRACT: Protein sulfenic acids are formed by the reaction of biologically relevant reactive oxygen...
AbstractBackgroundReactive oxygen species-mediated cysteine sulfenic acid modification has emerged a...
Sulfenic acids, formed as transient intermediates during the reaction of cysteine residues with pero...
Reactive oxygen species (ROS) are considered versatile second messengers mediating fundamental biolo...
Cysteine residues on proteins can react with cellular oxidants such as hydrogen peroxide. While this...
AbstractBackgroundReactive oxygen species-mediated cysteine sulfenic acid modification has emerged a...
Oxidation of cysteine to sulfenic acid has emerged as a biologically relevant post-translational mod...
© 2017 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY licens...
Oxidation of cysteine to sulfenic acid has emerged as a biologically relevant post-translational mod...
Redox-mediated protein modifications control numerous processes in both normal and disease metabolis...
Cysteine sulfenic acids (Cys-SOH) are pivotal modifications in thiol-based redox signaling and centr...
Reactive oxygen species (ROS) regulate various biological processes by modifying reactive cysteine r...
Reactive oxygen species act as important second messengers in cell signaling and homeostasis through...
Protein sulfenylation (RSOH), the redox‐based modification of cysteine thiol side chains by hydrogen...
Protein sulfenic acids are formed by the reaction of biologically relevant reactive oxygen species w...
ABSTRACT: Protein sulfenic acids are formed by the reaction of biologically relevant reactive oxygen...
AbstractBackgroundReactive oxygen species-mediated cysteine sulfenic acid modification has emerged a...
Sulfenic acids, formed as transient intermediates during the reaction of cysteine residues with pero...
Reactive oxygen species (ROS) are considered versatile second messengers mediating fundamental biolo...
Cysteine residues on proteins can react with cellular oxidants such as hydrogen peroxide. While this...
AbstractBackgroundReactive oxygen species-mediated cysteine sulfenic acid modification has emerged a...
Oxidation of cysteine to sulfenic acid has emerged as a biologically relevant post-translational mod...
© 2017 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY licens...
Oxidation of cysteine to sulfenic acid has emerged as a biologically relevant post-translational mod...
Redox-mediated protein modifications control numerous processes in both normal and disease metabolis...
Cysteine sulfenic acids (Cys-SOH) are pivotal modifications in thiol-based redox signaling and centr...
Reactive oxygen species (ROS) regulate various biological processes by modifying reactive cysteine r...