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Published on: September 28, 2018
Selective activation of oxidized PTP1B by the thioredoxin system modulates PDGF-β receptor tyrosine kinase signaling
Markus Dagnell1, Jeroen Frijhoff, Irina Pader
1Department of Oncology and Pathology, Cancer Center Karolinska, Karolinska Institutet, SE-171 76 Stockholm, Sweden.
Abstract:
The inhibitory reversible oxidation of protein tyrosine phosphatases (PTPs) is an important regulatory mechanism in growth factor signaling. Studies on PTP oxidation have focused on pathways that increase or decrease reactive oxygen species levels and thereby affect PTP oxidation. The processes involved in reactivation of oxidized PTPs remain largely unknown. Here the role of the thioredoxin (Trx) system in reactivation of oxidized PTPs was analyzed using a combination of in vitro and cell-based assays. Cells lacking the major Trx reductase TrxR1 (Txnrd1(-/-)) displayed increased oxidation of PTP1B, whereas SHP2 oxidation was unchanged. Furthermore, in vivo-oxidized PTP1B was reduced by exogenously added Trx system components, whereas SHP2 oxidation remained unchanged. Trx1 reduced oxidized PTP1B in vitro but failed to reactivate oxidized SHP2. Interestingly, the alternative TrxR1 substrate TRP14 also reactivated oxidized PTP1B, but not SHP2. Txnrd1-depleted cells displayed increased phosphorylation of PDGF-β receptor, and an enhanced mitogenic response, after PDGF-BB stimulation. The TrxR inhibitor auranofin also increased PDGF-β receptor phosphorylation. This effect was not observed in cells specifically lacking PTP1B. Together these results demonstrate that the Trx system, including both Trx1 and TRP14, impacts differentially on the oxidation of individual PTPs, with a preference of PTP1B over SHP2 activation. The studies demonstrate a previously unrecognized pathway for selective redox-regulated control of receptor tyrosine kinase signaling.
Insights
The thioredoxin (Trx) system selectively reactivates oxidized protein tyrosine phosphatases (PTPs), particularly PTP1B, influencing growth factor signaling. This reveals a new pathway for redox control of receptor tyrosine kinase signaling.
Area of Science:
- Cellular signaling
- Redox biology
- Enzymology
Background:
- Reversible oxidation regulates protein tyrosine phosphatases (PTPs) in growth factor signaling.
- The reactivation mechanisms for oxidized PTPs are not well understood.
- Reactive oxygen species (ROS) levels influence PTP oxidation.
Purpose of the Study:
- To investigate the role of the thioredoxin (Trx) system in reactivating oxidized PTPs.
- To determine the differential effects of the Trx system on various PTPs.
- To elucidate the impact of PTP reactivation on receptor tyrosine kinase signaling.
Main Methods:
- In vitro assays using purified proteins.
- Cell-based assays with genetically modified cells (Txnrd1(-/-)).
- Treatment with Trx system components and inhibitors (auranofin).
Main Results:
- Cells lacking Trx reductase 1 (TrxR1) showed increased oxidation of PTP1B but not SHP2.
- Exogenous Trx system components reduced in vivo-oxidized PTP1B but not SHP2.
- Both Trx1 and TRP14 preferentially reactivated PTP1B over SHP2.
- TrxR1 depletion or inhibition enhanced PDGF-β receptor phosphorylation and mitogenic response, an effect dependent on PTP1B.
Conclusions:
- The Trx system differentially regulates PTP oxidation, favoring PTP1B reactivation.
- This study uncovers a novel pathway for selective redox control of receptor tyrosine kinase signaling.
- The Trx system plays a critical role in reversing PTP oxidation and modulating mitogenic signaling.
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