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Updated: Jun 12, 2026

Identification of Cyclin-dependent Kinase 1 Specific Phosphorylation Sites by an In Vitro Kinase Assay
Published on: May 3, 2018
Translationally controlled tumor protein interacts with nucleophosmin during mitosis in ES cells
Helena Johansson1, Dzeneta Vizlin-Hodzic, Tomas Simonsson
1Department of Medical Biochemistry and Cell Biology, Gothenburg University, Gothenburg, Sweden.
Abstract:
Somatic cell nuclear transfers and the generation of induced pluripotent stem cells provide potential routes towards non-immunogenic cell replacement therapies. Translationally controlled tumor protein (Tpt1) was recently suggested to regulate cellular pluripotency. Here we explore functions of Tpt1 in mouse embryonic stem (ES) cells. We find that Tpt1 is present in the nucleus and cytoplasm of ES cells, and that specifically nuclear Tpt1 decreases upon cell differentiation. We also find that endogenous Tpt1 forms a complex with endogenous nucleophosmin/nucleoplasmin family member 1 (Npm1) in a cell cycle dependent manner. The Tpt1-Npm1 complex peaks sharply during mitosis and is independent of phosphorylation by Polo-like kinase. Differentiation by retinoic acid decreases Tpt1-Npm1 complex levels. Moreover, Tpt1 knock-down or over-expression reduces proliferation whereas Npm1 over-expression increases proliferation in ES cells. Cells depleted for both Tpt1 and Npm1 exhibit significantly reduced proliferation compared to cells depleted for Tpt1 alone, whereas cells over-expressing both Tpt1 and Npm1 show normal proliferation. Our findings reveal a role for the Tpt1-Npm1 complex in cell proliferation and identify the Tpt1-Npm1 complex as a potential biomarker for mitotic ES cells.
Insights
Translationally controlled tumor protein (Tpt1) and nucleophosmin (Npm1) form a complex in mouse embryonic stem cells. This Tpt1-Npm1 complex is crucial for cell proliferation and may serve as a biomarker for mitotic stem cells.
Area of Science:
- Stem cell biology
- Molecular and cell biology
Background:
- Somatic cell nuclear transfer and induced pluripotent stem cells offer potential for non-immunogenic cell therapies.
- Translationally controlled tumor protein (Tpt1) has been implicated in regulating cellular pluripotency.
Purpose of the Study:
- To investigate the functions of Tpt1 in mouse embryonic stem (ES) cells.
- To explore the interaction between Tpt1 and nucleophosmin/nucleoplasmin family member 1 (Npm1) in ES cells.
Main Methods:
- Localization studies of Tpt1 in ES cells.
- Analysis of Tpt1-Npm1 complex formation during the cell cycle and differentiation.
- Tpt1 and Npm1 knockdown and overexpression experiments to assess proliferation.
Main Results:
- Tpt1 is found in both the nucleus and cytoplasm of ES cells, with nuclear levels decreasing upon differentiation.
- Endogenous Tpt1 forms a cell cycle-dependent complex with Npm1, peaking during mitosis.
- Tpt1 knockdown or overexpression affects ES cell proliferation, while Npm1 overexpression increases it.
- The Tpt1-Npm1 complex is essential for normal ES cell proliferation.
Conclusions:
- The Tpt1-Npm1 complex plays a significant role in the proliferation of mouse embryonic stem cells.
- The Tpt1-Npm1 complex can be identified as a potential biomarker for mitotic ES cells.
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