The nuclear pool of tetraspanin CD9 contributes to mitotic processes in human breast carcinoma
Germana Rappa1, Toni M Green1, Aurelio Lorico2
1Cancer Research Center, Roseman University of Health Sciences, Las Vegas, Nevada.
Unlabelled:
Tetraspanin-29 (CD9) is an integral membrane protein involved in several fundamental cell processes and in cancer metastasis. Here, characterization of a panel of breast cancer cells revealed a nuclear pool of CD9, not present in normal human mammary epithelial cells. Antibody binding to surface CD9 of breast cancer cells resulted in increased nuclear CD9 fluorescence. CD9 was also found, along with a plasma membrane-associated pool, in the nuclei of all primary ductal breast carcinoma patient specimens analyzed. In all patients, about 40% of the total CD9 cellular fluorescence was nuclear. CD9 colocalized at the nuclear level with CEP97, a protein implicated in centrosome function, and with the IGSF8, an established CD9 partner in the plasma membrane. Co-immunoprecipitation of CEP97 and IGSF8 with CD9 was shown in nuclear extracts from breast cancer cells expressing a CD9-GFP fusion protein. However, by fluorescence resonance energy transfer (FRET) analysis, no direct binding of CD9 with either protein was observed, suggesting that CD9 is part of a larger nuclear protein complex. CD9 depletion or exposure of parental breast cancer cells to anti-CD9 mAb resulted in polynucleation and multipolar mitoses. These data indicate that the nuclear CD9 pool has an important role in the mitotic process.
Implications:
The discovery of a nuclear pool of CD9 has prognostic and/or therapeutic potential for patients with ductal carcinoma of the breast.
Insights
Tetraspanin-29 (CD9) was found in the nuclei of breast cancer cells, unlike normal cells. This nuclear CD9 plays a role in cell division, suggesting potential for breast cancer treatment.
Area of Science:
- Cell Biology
- Cancer Research
- Molecular Biology
Background:
- Tetraspanin-29 (CD9) is an integral membrane protein crucial for cell processes and cancer metastasis.
- CD9 is typically found at the plasma membrane, but its cellular localization can vary.
Purpose of the Study:
- To investigate the presence and function of CD9 in breast cancer cells.
- To determine the role of nuclear CD9 in breast cancer progression and mitosis.
Main Methods:
- Characterization of breast cancer cell lines and primary ductal breast carcinoma specimens.
- Immunofluorescence, co-immunoprecipitation, and FRET analysis to study CD9 localization and interactions.
- CD9 depletion and antibody treatment to assess effects on cell division.
Main Results:
- A nuclear pool of CD9 was identified in breast cancer cells and patient samples, absent in normal cells.
- Nuclear CD9 colocalized with CEP97 and IGSF8, suggesting involvement in a larger nuclear complex.
- CD9 depletion or antibody treatment led to abnormal cell division (polynucleation, multipolar mitoses).
Conclusions:
- The nuclear CD9 pool plays a significant role in the mitotic process of breast cancer cells.
- The discovery of nuclear CD9 offers potential prognostic and therapeutic strategies for ductal breast carcinoma patients.
More Related Videos
06:00Through the Looking Glass: Time-lapse Microscopy and Longitudinal Tracking of Single Cells to Study Anti-cancer Therapeutics
Published on: May 14, 2016
10:50Nanopodia - Thin, Fragile Membrane Projections with Roles in Cell Movement and Intercellular Interactions
Published on: April 3, 2014
Related Concept Videos
The Nucleolus
Microtubule Associated Proteins (MAPs)
