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Updated: May 12, 2026

Immunofluorescence Analysis of Endogenous and Exogenous Centromere-kinetochore Proteins
Published on: March 3, 2016
The PTEN-Akt pathway impacts the integrity and composition of mitotic centrosomes
Mary K Leonard1, Natasha T Hill, Paula A Bubulya
1Department of Biochemistry and Molecular Biology, Boonshoft School of Medicine, Wright State University, Dayton, OH, USA.
Abstract:
Loss of the tumor suppressor PTEN is observed in many human cancers that display increased chromosome instability and aneuploidy. The subcellular fractions of PTEN are associated with different functions that regulate cell growth, invasion and chromosome stability. In this study, we show a novel role for PTEN in regulating mitotic centrosomes. PTEN localization at mitotic centrosomes peaks between prophase and metaphase, paralleling the centrosomal localization of PLK-1 and γ-tubulin and coinciding with the time frame of centrosome maturation. In primary keratinocytes, knockdown of PTEN increased whole-cell levels of γ-tubulin and PLK-1 in an Akt-dependent manner and had little effect on recruitment of either protein to mitotic centrosomes. Conversely, knockdown of PTEN reduced centrosomal levels of pericentrin in an Akt-independent manner. Inhibition of Akt activation with MK2206 reduced the whole-cell and centrosome levels of PLK-1 and γ-tubulin and also prevented the recruitment of PTEN to mitotic centrosomes. This reduction in centrosome-associated proteins upon inhibition of Akt activity may contribute to the increase in defects in centrosome number and separation observed in metaphase cells. Concomitant PTEN knockdown and Akt inhibition reduced the frequency of metaphase cells with centrosome defects when compared with MK2206 treatment alone, indicating that both PTEN and pAkt are required to properly regulate centrosome composition during mitosis. The findings presented in this study demonstrate a novel role for PTEN and Akt in controlling centrosome composition and integrity during mitosis and provide insight into how PTEN functions as a multifaceted tumor suppressor.
Insights
Loss of the tumor suppressor PTEN and Akt signaling are crucial for regulating centrosome integrity during mitosis. This study reveals their novel roles in controlling centrosome composition, impacting cancer development.
Area of Science:
- Cell Biology
- Molecular Oncology
- Cancer Research
Background:
- Loss of the tumor suppressor PTEN is linked to chromosome instability and aneuploidy in human cancers.
- PTEN's subcellular localization influences cell growth, invasion, and chromosome stability.
Purpose of the Study:
- To investigate the novel role of PTEN in regulating mitotic centrosomes.
- To elucidate the interplay between PTEN, Akt signaling, and centrosome composition during mitosis.
Main Methods:
- Studied PTEN localization at mitotic centrosomes during prophase and metaphase.
- Utilized PTEN knockdown and Akt inhibition (MK2206) in primary keratinocytes.
- Assessed centrosomal levels of PLK-1, γ-tubulin, and pericentrin.
Main Results:
- PTEN knockdown increased whole-cell γ-tubulin and PLK-1 (Akt-dependent) but reduced centrosomal pericentrin (Akt-independent).
- Akt inhibition reduced centrosomal PLK-1 and γ-tubulin and PTEN recruitment.
- Combined PTEN knockdown and Akt inhibition mitigated centrosome defects.
Conclusions:
- PTEN and Akt signaling are essential for maintaining centrosome composition and integrity during mitosis.
- Dysregulation of PTEN and Akt contributes to centrosome abnormalities, potentially driving cancer progression.
- PTEN acts as a multifaceted tumor suppressor through its regulation of centrosome dynamics.
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