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Updated: Jun 21, 2026

Identification of Cyclin-dependent Kinase 1 Specific Phosphorylation Sites by an In Vitro Kinase Assay
Published on: May 3, 2018
Characterization of mitosis-specific phosphorylation of tumor-associated microtubule-associated protein
Kyung Uk Hong1, Hyun-Jun Kim, Chang-Dae Bae
1Department of Molecular Cell Biology and Samsung Biomedical Research Institute, Sungkyunkwan University School of Medicine, Suwon 440-769, Korea.
Abstract:
Tumor-associated microtubule-associated protein (TMAP), also known as cytoskeleton associated protein 2 (CKAP2), has been recently shown to be involved in the assembly and maintenance of mitotic spindle and also plays an essential role in maintaining the fidelity of chromosome segregation during mitosis. We have previously reported that TMAP is phosphorylated at multiple residues specifically during mitosis, and characterized the mechanism and functional importance of phosphorylation at one of the mitosis-specific phosphorylation residues (i.e., Thr-622). However, the phosphorylation events at the remaining mitotic phosphorylation sites of TMAP have not been fully characterized in detail. Here, we report on generation and characterization of phosphorylated Thr-578- and phosphorylated Thr-596-specific antibodies. Using the antibodies, we show that phosphorylation of TMAP at Thr-578 and Thr-596 indeed occurs specifically during mitosis. Immunofluorescent staining using the antibodies shows that these residues become phosphorylated starting at prophase and then become rapidly dephosphorylated soon after initiation of anaphase. Subtle differences in the kinetics of phosphorylation between Thr-578 and Thr-596 imply that they may be under different mechanisms of phosphorylation during mitosis. Unlike the phosphorylation-deficient mutant form for Thr-622, the mutant in which both Thr-578 and Thr-596 had been mutated to alanines did not induce significant delay in progression of mitosis. These results show that the majority of mitosis-specific phosphorylation of TMAP is limited to pre-anaphase stages and suggest that the multiple phosphorylation may not act in concert but serve diverse functions.
Insights
Tumor-associated microtubule-associated protein (TMAP) phosphorylation at Thr-578 and Thr-596 occurs during mitosis. These sites are dephosphorylated after anaphase, suggesting diverse functions rather than coordinated action.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Tumor-associated microtubule-associated protein (TMAP), also known as CKAP2, is crucial for mitotic spindle assembly and chromosome segregation.
- Previous studies identified mitosis-specific phosphorylation of TMAP at Thr-622, but other sites remained uncharacterized.
Purpose of the Study:
- To generate and characterize antibodies specific for TMAP phosphorylated at Thr-578 and Thr-596.
- To investigate the temporal dynamics and functional significance of TMAP phosphorylation at these novel sites during mitosis.
Main Methods:
- Generation and validation of phospho-specific antibodies against TMAP (pThr-578 and pThr-596).
- Immunofluorescence staining to visualize TMAP phosphorylation dynamics during the cell cycle.
- Site-directed mutagenesis to create phosphorylation-deficient mutants (T578A/T596A).
- Analysis of mitotic progression in cells expressing mutant TMAP.
Main Results:
- Phosphorylation of TMAP at Thr-578 and Thr-596 occurs specifically during mitosis, commencing in prophase and rapidly decreasing after anaphase onset.
- Distinct phosphorylation kinetics for Thr-578 and Thr-596 suggest differential regulatory mechanisms.
- Mutating both Thr-578 and Thr-596 to alanine did not significantly impede mitotic progression, unlike mutations at Thr-622.
Conclusions:
- Mitosis-specific TMAP phosphorylation is largely confined to pre-anaphase stages.
- The distinct phosphorylation sites on TMAP likely serve diverse, non-concerted functions during mitosis.
- Further research is needed to elucidate the specific roles of TMAP phosphorylation at Thr-578 and Thr-596.
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