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Low molecular weight protein-tyrosine phosphatase tyrosine phosphorylation by c-Src during platelet-derived growth
P Cirri1, P Chiarugi, L Taddei
1Dipartimento di Scienze Biochimiche, Università di Firenze, viale Morgagni 50, 50134 Firenze, Italy.
Abstract:
The low molecular weight phosphotyrosine phosphatase (LMW-PTP) is an enzyme that is involved in the early events of platelet-derived growth factor (PDGF) receptor signal transduction. Our previous results have shown that LMW-PTP is able to specifically bind and dephosphorylate activated PDGF receptor, thus modulating PDGF-induced mitogenesis. In particular LMW-PTP is involved in pathways that regulate the transcription of the immediately early genes myc and fos in response to growth factor stimulation. In this study we have established that, in nontransformed NIH3T3 cells, LMW-PTP exists constitutively in cytosolic and cytoskeleton-associated localization and that, after PDGF stimulation, c-Src is able to bind and to phosphorylate LMW-PTP only in the cytoskeleton-associated fraction. As a consequence of its tyrosine phosphorylation, LMW-PTP significantly increases its catalytic activity. After PDGF stimulation these two LMW-PTP pools act on distinct substrates, contributing in different manners to the PDGF receptor signaling. The cytoplasmic LMW-PTP fraction exerts its well known action on activated PDGF receptor. On the other hand we have now demonstrated that the cytoskeleton-associated LMW-PTP acts specifically on a few not yet identified proteins that become tyrosine-phosphorylated in response to the PDGF receptor activation. Finally, these two LMW-PTP pools markedly differ in the timing of the processes in which they are involved. The cytoplasmic LMW-PTP pool exerts its action within a few minutes from PDGF receptor activation (short term action), while tyrosine phosphorylation of cytoskeleton-associated LMW-PTP lasts for more than 40 min (long term action). In conclusion LMW-PTP is a striking example of an enzyme that exerts different functions and undergoes different regulation in consequence of its subcellular localization.
Insights
Low molecular weight phosphotyrosine phosphatase (LMW-PTP) acts differently based on its location. Cytosolic LMW-PTP targets the PDGF receptor, while cytoskeleton-associated LMW-PTP enhances its activity and targets other proteins.
Area of Science:
- Cell signaling
- Enzymology
- Molecular biology
Background:
- Low molecular weight phosphotyrosine phosphatase (LMW-PTP) dephosphorylates activated platelet-derived growth factor (PDGF) receptors, modulating PDGF-induced mitogenesis.
- LMW-PTP regulates the transcription of immediate early genes like myc and fos in response to growth factor stimulation.
Purpose of the Study:
- To investigate the subcellular localization and regulation of LMW-PTP in NIH3T3 cells following PDGF stimulation.
- To elucidate the distinct roles and substrates of cytosolic and cytoskeleton-associated LMW-PTP pools.
Main Methods:
- Cellular fractionation to isolate cytosolic and cytoskeleton-associated components.
- Western blotting and immunoprecipitation to detect protein localization and phosphorylation.
- Enzyme activity assays to measure LMW-PTP catalytic function.
Main Results:
- LMW-PTP is constitutively present in both cytosolic and cytoskeleton-associated fractions.
- PDGF stimulation leads to c-Src-mediated tyrosine phosphorylation of cytoskeleton-associated LMW-PTP, increasing its activity.
- Cytosolic LMW-PTP dephosphorylates the PDGF receptor, while cytoskeleton-associated LMW-PTP acts on other tyrosine-phosphorylated proteins.
Conclusions:
- LMW-PTP exhibits dual localization and function, with distinct roles for its cytosolic and cytoskeleton-associated pools.
- Subcellular localization dictates LMW-PTP's substrate specificity and regulatory mechanisms, highlighting its versatility in PDGF signaling.