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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.

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.

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