Related Experiment Video
Updated: Aug 13, 2026

Profiling Thiol Redox Proteome Using Isotope Tagging Mass Spectrometry
Published on: March 24, 2012
Redox control by dithiol-disulfide exchange in plants: I. The chloroplastic systems
Jean-Pierre Jacquot1, Nicolas Rouhier, Eric Gelhaye
1Interaction Arbres Microorganismes UA 1136 INRA UHP, Université Henri Poincaré, BP 230, 54505 Vandoeuvre Cedex, France. j2p@scbiol.uhp-nancy.fr
Abstract:
In plants, the photons of light are absorbed at the level of the photosystems in the chloroplasts. The functioning of the photosynthetic electron transfer chain linked to this process is required to generate NADPH and ATP. In addition, the light signal promotes a regulatory cascade, situated in the stroma, that involves ferredoxin, ferredoxin-thioredoxin reductase, and thioredoxins. This redox-based signal transduction chain allows fine regulation of stromal enzymes and tight control of the photosynthetic process. The molecular properties and the functioning of this redox regulatory chain will be described in this review.
More Related Videos
06:10Assessment of Cellular Oxidation using a Subcellular Compartment-Specific Redox-Sensitive Green Fluorescent Protein
Published on: June 18, 2020
07:16Resin-Assisted Capture Coupled with Isobaric Tandem Mass Tag Labeling for Multiplexed Quantification of Protein Thiol Oxidation
Published on: June 21, 2021
Related Concept Videos
Redox Reactions
Photosystem II
The pigment molecules are arranged across two photosystem domains — the antenna complex and the reaction center. The main aim of the pigment molecules...
The Z-Scheme of Electron Transport in Photosynthesis
Preparation and Reactions of Thiols
Redox Equilibria: Overview
Redox Reactions