Cyclin D1b is aberrantly regulated in response to therapeutic challenge and promotes resistance to estrogen
Ying Wang1, Jeffry L Dean, Ewan K A Millar
1Department of Cell and Cancer Biology, University of Cincinnati, Cincinnati, Ohio, USA.
Abstract:
Cyclin D1 is a key mediator of cell cycle progression that is aberrantly regulated in multiple cancers, especially in breast cancers. A number of studies have indicated that a polymorphism in a splice donor site in the cyclin D1 gene is associated with alternative splicing and the production of the alternative cyclin D1b transcript. Furthermore, this polymorphism is selectively associated with disease outcomes. However, relatively little is known regarding the protein product of the alternatively spliced message, cyclin D1b. Using antibodies specific for cyclin D1b, it was found that this protein is readily detectable in a number of cancer cell lines and primary breast cancers. Whereas cyclin D1b interacts with cyclin-dependent kinase 4 (CDK4), it is relatively inefficient at mediating RB phosphorylation and cell cycle progression in model systems due to the lack of exon 5 of cyclin D1-encoded sequences. However, cyclin D1b protein levels are not significantly attenuated by DNA damage or antiestrogen treatment, indicating that the protein may have significant effect on the response to such therapeutic modalities. Whereas enforced expression of cyclin D1b was not sufficient to abrogate DNA damage checkpoint responses, it did efficiently overcome cell cycle arrest mediated by antiestrogen therapeutics. This action of cyclin D1b was not associated with effects on estrogen receptor activity, but was rather dependent on functional association with CDK4. Combined, these studies indicate that the cyclin D1b protein is aberrantly regulated and could contribute to therapeutic failure in the context of ER-positive breast cancer.
Insights
The cyclin D1b protein, resulting from alternative splicing in breast cancer, interacts with CDK4 but poorly drives cell cycle progression. It may contribute to therapeutic failure in ER-positive breast cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Cyclin D1 is crucial for cell cycle progression and is often dysregulated in cancers, particularly breast cancer.
- A specific gene polymorphism leads to alternative splicing, producing the cyclin D1b transcript, which is linked to disease outcomes.
Purpose of the Study:
- To investigate the characteristics and functional significance of the cyclin D1b protein.
- To determine the role of cyclin D1b in cancer cell cycle regulation and response to therapy.
Main Methods:
- Utilized antibodies specific to cyclin D1b to detect its presence in cancer cell lines and primary breast tumors.
- Assessed cyclin D1b's interaction with CDK4 and its effect on RB phosphorylation and cell cycle progression in model systems.
- Evaluated the impact of cyclin D1b on cellular responses to DNA damage and antiestrogen treatment.
Main Results:
- Cyclin D1b protein is detectable in various cancer types, including breast cancer.
- While cyclin D1b binds to CDK4, it is inefficient at promoting cell cycle progression due to a lack of exon 5.
- Cyclin D1b levels are stable under DNA damage or antiestrogen treatment.
- Enforced cyclin D1b expression overcomes antiestrogen-mediated cell cycle arrest, independent of estrogen receptor activity but dependent on CDK4.
Conclusions:
- The cyclin D1b protein is aberrantly expressed in breast cancer.
- Cyclin D1b's resistance to certain treatments and its ability to counteract antiestrogen therapy suggest a role in therapeutic failure, especially in ER-positive breast cancer.
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