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Ability of the c-mos product to associate with and phosphorylate tubulin
R P Zhou1, M Oskarsson, R S Paules
1ABL-Basic Research Program, NCI-Frederick Cancer Research and Development Center, MD 21702.
Abstract:
The mos proto-oncogene product, pp39mos, is a protein kinase and has been equated with cytostatic factor (CSF), an activity in unfertilized eggs that is thought to be responsible for the arrest of meiosis at metaphase II. The biochemical properties and potential substrates of pp39mos were examined in unfertilized eggs and in transformed cells in order to study how the protein functions both as CSF and in transformation. The pp39mos protein associated with polymers under conditions that favor tubulin oligomerization and was present in an approximately 500-kilodalton "core" complex under conditions that favor depolymerization. beta-Tubulin was preferentially coprecipitated in pp39mos immunoprecipitates and was the major phosphorylated product in a pp39mos-dependent immune complex kinase assay. Immunofluorescence analysis of NIH 3T3 cells transformed with Xenopus c-mos showed that pp39mos colocalizes with tubulin in the spindle during metaphase and in the midbody and asters during telophase. Disruption of microtubules with nocodazole affected tubulin and pp39mos organization in the same way. It therefore appears that pp39mos is a tubulin-associated protein kinase and may thus participate in the modification of microtubules and contribute to the formation of the spindle. This activity expressed during interphase in somatic cells may be responsible for the transforming activity of pp39mos.
Insights
The mos proto-oncogene product, pp39mos, is a protein kinase that binds to tubulin. This protein kinase may regulate microtubules, influencing cell division and transformation.
Area of Science:
- Cell Biology
- Molecular Biology
- Oncology
Background:
- The mos proto-oncogene product, pp39mos, is a protein kinase.
- pp39mos is associated with cytostatic factor (CSF), responsible for meiotic arrest at metaphase II.
- Understanding pp39mos function is crucial for both cell cycle regulation and cancer transformation.
Purpose of the Study:
- To investigate the biochemical properties and substrates of pp39mos.
- To elucidate the mechanisms by which pp39mos functions as CSF and in cellular transformation.
- To determine the relationship between pp39mos and tubulin.
Main Methods:
- Biochemical assays using unfertilized eggs and transformed cells.
- Immunoprecipitation and immune complex kinase assays.
- Immunofluorescence microscopy in NIH 3T3 cells.
Main Results:
- pp39mos associates with polymers favoring tubulin oligomerization and forms a core complex.
- beta-Tubulin is preferentially coprecipitated with pp39mos and is a major phosphorylated product.
- pp39mos colocalizes with tubulin in mitotic spindles and midbodies, and its organization is affected by microtubule disruption.
Conclusions:
- pp39mos is a tubulin-associated protein kinase.
- pp39mos may modify microtubules and contribute to spindle formation.
- This activity in interphase somatic cells could drive cellular transformation.