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Bcl-xL is phosphorylated in malignant cells following microtubule disruption

M S Poruchynsky1, E E Wang, C M Rudin

  • 1Division of Clinical Sciences, Medicine Branch, National Cancer Institute, NIH, Bethesda, Maryland 20892, USA.

Cancer Research
|August 12, 1998
PubMed

Insights

Microtubule-targeted chemotherapy agents phosphorylate the anti-apoptotic protein Bcl-extra-large (Bcl-xL) in cancer cells. This phosphorylation, similar to Bcl-2, may influence treatment efficacy and cell death pathways.

Area of Science:

  • Molecular Biology
  • Cell Biology
  • Cancer Research

Background:

  • The oncogenic protein Bcl-2 inhibits programmed cell death, with its function modulated by phosphorylation.
  • Bcl-extra-large (Bcl-xL), a related protein, also suppresses cell death, but its phosphorylation status after microtubule-targeted drug exposure was unknown.
  • Bcl-xL is expressed in tumor cells lacking Bcl-2.

Purpose of the Study:

  • To investigate whether Bcl-xL is phosphorylated in response to microtubule-targeted agents.
  • To explore the relationship between Bcl-xL phosphorylation and the efficacy of microtubule-directed chemotherapy.

Main Methods:

  • Treatment of various tumor cell lines with microtubule-targeting agents (paclitaxel, vincristine, etc.).
  • Immunoblotting to detect protein phosphorylation, including use of lambda protein phosphatase for specificity.
  • Immunoprecipitation and metabolic labeling with 32P to confirm phosphorylation of Bcl-xL.
  • Analysis of paclitaxel-resistant cell lines with tubulin mutations.

Main Results:

  • Microtubule-targeting agents induced a slower-migrating band of Bcl-xL, indicative of phosphorylation, in a dose-dependent manner.
  • Phosphorylation of Bcl-xL was confirmed using 32P metabolic labeling and immunoprecipitation.
  • Paclitaxel-resistant cell lines with tubulin mutations showed impaired Bcl-xL phosphorylation with paclitaxel but not other agents.
  • Bcl-xL and Raf-1 kinase phosphorylation occurred concurrently.
  • High-density cell culture and reduced Raf-1 expression diminished Bcl-xL phosphorylation.

Conclusions:

  • Bcl-xL is phosphorylated by agents that disrupt microtubule architecture, similar to Bcl-2.
  • This phosphorylation may be crucial for modulating Bcl-xL's function in cell death suppression.
  • Bcl-xL phosphorylation could be a significant factor in the effectiveness of microtubule-directed chemotherapies against human tumors.

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