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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.
Abstract:
The oncogenic protein Bcl-2 functions as a potent inhibitor of programmed cell death. This survival activity has been shown in some settings to be influenced by the Bcl-2 phosphorylation state. It has been demonstrated that treatment with microtubule-targeted agents results in phosphorylation of both Raf-1 kinase and Bcl-2. The Bcl-2-related family member Bcl-xL also exhibits a death suppressive activity, but its potential for phosphorylation following exposure to drugs that interact with microtubules has not been evaluated. Several tumor cell lines with low or undetectable levels of Bcl-2 protein expression were found to express Bcl-xL. A more slowly migrating Bcl-xL band was observed on immunoblots after cells were treated with microtubule-targeted agents. The appearance of this band was responsive to dose and was absent when the cell lysates were treated with lambda protein phosphatase. Using a Bcl-xL-specific monoclonal antibody, the phosphorylated form of Bcl-xL was immunoprecipitated from cells treated with paclitaxel and metabolically labeled with 32P-labeled inorganic orthophosphate. Herein, we report that Bcl-xL is phosphorylated in malignant cells after incubation with agents that target tubulin, including paclitaxel, vincristine, vinblastine, colchicine, and nocodazole. Moreover, paclitaxel-resistant ovarian carcinoma cell lines that have mutations in tubulin failed to exhibit phosphorylation of Bcl-xL after paclitaxel exposure, but they did demonstrate Bcl-xL phosphorylation in the presence of other tubulin-targeting agents. As observed for Bcl-2, phosphorylation of Bcl-xL was accompanied by phosphorylation of Raf-1. Interestingly, phosphorylation of these three proteins failed to occur or was much less pronounced when cells grown at high density were challenged with drug. Also, reduced Raf-1 expression, observed after treatment of cells with geldanamycin prior to and during incubation with the microtubule-active drugs, correlated with diminished Bcl-xL phosphorylation. Taken together, these results suggest that Bcl-xL, like Bcl-2, is phosphorylated by agents that disrupt microtubule architecture. By analogy with Bcl-2, this phosphorylation may play a critical role in modulating Bcl-xL function and may be an important determinant of microtubule-directed chemotherapeutic efficacy in human tumors.
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.