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Updated: Apr 27, 2026

Resin-Assisted Capture Coupled with Isobaric Tandem Mass Tag Labeling for Multiplexed Quantification of Protein Thiol Oxidation
Published on: June 21, 2021
Reactivation of oxidized PTP1B and PTEN by thioredoxin 1
Ulla Schwertassek1, Aftabul Haque, Navasona Krishnan
1Cold Spring Harbor Laboratory, NY, USA.
Abstract:
The transient inactivation of protein phosphatases contributes to the efficiency and temporal control of kinase-dependent signal transduction. In particular, members of the protein tyrosine phosphatase family are known to undergo reversible oxidation of their active site cysteine. The thiol oxidation step requires activation of colocalized NADPH oxidases and is mediated by locally produced reactive oxygen species, in particular H2 O2 . How oxidized phosphatases are returned to the reduced active state is less well studied. Both major thiol reductive systems, the thioredoxin and the glutathione systems, have been implicated in the reactivation of phosphatases. Here, we show that the protein tyrosine phosphatase PTP1B and the dual-specificity phosphatase PTEN are preferentially reactivated by the thioredoxin system. We show that inducible depletion of thioredoxin 1(TRX1) slows PTEN reactivation in intact living cells. Finally, using a mechanism-based trapping approach, we demonstrate direct thiol disulphide exchange between the active sites of thioredoxin and either phosphatase. The application of thioredoxin trapping mutants represents a complementary approach to direct assays of PTP oxidation in elucidating the significance of redox regulation of PTP function in the control of cell signaling.
Structured Digital Abstract:
TRX1 physically interacts with PTP1B by anti tag coimmunoprecipitation (1, 2).
Insights
The thioredoxin system preferentially reactivates oxidized protein tyrosine phosphatases (PTPs) like PTP1B and PTEN. This study demonstrates thioredoxin 1 (TRX1) directly reduces these phosphatases, crucial for cell signaling control.
Area of Science:
- Biochemistry
- Cell Biology
- Signal Transduction
Background:
- Protein phosphatases (PTPs) are crucial for kinase-dependent signaling, undergoing reversible oxidation of active site cysteines.
- Reactive oxygen species (ROS), particularly H2O2, mediate PTP oxidation, but reductive reactivation mechanisms are less understood.
Discussion:
- This study investigates the role of thiol reductive systems in PTP reactivation.
- The thioredoxin system is shown to be the primary system for reactivating PTP1B and PTEN.
Key Insights:
- Inducible depletion of thioredoxin 1 (TRX1) significantly slows PTEN reactivation in living cells.
- Direct thiol-disulfide exchange between TRX1 and PTP active sites was demonstrated using a mechanism-based trapping approach.
- TRX1 physically interacts with PTP1B.
Outlook:
- Thioredoxin trapping mutants offer a novel method for studying PTP oxidation.
- Understanding redox regulation of PTPs is key to elucidating their role in cell signaling control.
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