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Updated: Sep 26, 2025

Quantitative Immunofluorescence Assay to Measure the Variation in Protein Levels at Centrosomes
Published on: December 20, 2014
The phosphorylation and dephosphorylation switch of VCP/p97 regulates the architecture of centrosome and spindle
Kaiyuan Zhu1,2, Yang Cai3, Xiaotong Si1,2
1City University of Hong Kong Shenzhen Research Institute, Shenzhen, China.
Abstract:
The proper orientation of centrosome and spindle is essential for genome stability; however, the mechanism that governs these processes remains elusive. Here, we demonstrated that polo-like kinase 1 (Plk1), a key mitotic kinase, phosphorylates residue Thr76 in VCP/p97 (an AAA-ATPase), at the centrosome from prophase to anaphase. This phosphorylation process recruits VCP to the centrosome and in this way, it regulates centrosome orientation. VCP exhibits strong co-localization with Eg5 (a mitotic kinesin motor), at the mitotic spindle, and the dephosphorylation of Thr76 in VCP is required for the enrichment of both VCP and Eg5 at the spindle, thus ensuring proper spindle architecture and chromosome segregation. We also showed that the phosphatase, PTEN, is responsible for the dephosphorylation of Thr76 in VCP; when PTEN was knocked down, the normal spread of VCP from the centrosome to the spindle was abolished. Cryo-EM structures of VCPT76A and VCPT76E, which represent dephosphorylated and phosphorylated states of VCP, respectively, revealed that the Thr76 phosphorylation modulates VCP by altering the inter-domain and inter-subunit interactions, and ultimately the nucleotide-binding pocket conformation. Interestingly, the tumor growth in nude mice implanted with VCPT76A-reconstituted cancer cells was significantly slower when compared with those implanted with VCPWT-reconstituted cancer cells. Collectively, our findings demonstrate that the phosphorylation and dephosphorylation switch of VCP regulates the architecture of centrosome and spindle for faithful chromosome segregation.
Insights
Polo-like kinase 1 (Plk1) regulates centrosome orientation by phosphorylating VCP/p97. This switch controls spindle architecture and chromosome segregation, impacting tumor growth.
Area of Science:
- Cell biology
- Molecular oncology
- Structural biology
Background:
- Centrosome and spindle orientation are critical for genome stability.
- The precise molecular mechanisms governing these processes are not fully understood.
Purpose of the Study:
- To elucidate the role of polo-like kinase 1 (Plk1) in regulating centrosome and spindle organization.
- To investigate the function of VCP/p97 phosphorylation in mitotic processes and its impact on cancer.
Main Methods:
- Phosphorylation site mapping of VCP/p97 by Plk1.
- Co-immunoprecipitation and immunofluorescence to study protein localization.
- Cryo-electron microscopy (Cryo-EM) to determine VCP structures.
- Xenograft tumor growth assays in nude mice.
Main Results:
- Plk1 phosphorylates VCP/p97 at Thr76, recruiting it to the centrosome and regulating orientation.
- Dephosphorylation of VCP Thr76 by PTEN is essential for VCP and Eg5 enrichment at the spindle, ensuring proper spindle architecture.
- Cryo-EM structures reveal Thr76 phosphorylation alters VCP conformation and interactions.
- Cancer cells reconstituted with non-phosphorylatable VCP (VCPT76A) exhibited slower tumor growth in vivo.
Conclusions:
- The phosphorylation-dephosphorylation cycle of VCP/p97 is a key regulator of centrosome and spindle architecture.
- This mechanism is crucial for faithful chromosome segregation and has implications for cancer progression.
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