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Cyclin D1: mechanism and consequence of androgen receptor co-repressor activity
Christin E Petre1, Yelena B Wetherill, Mark Danielsen
1Department of Cell Biology, the University of Cincinnati College of Medicine, Cincinnati, Ohio 45267-0521, USA.
Abstract:
Androgen receptor regulation is pivotal for prostate growth and development. Activation of the receptor is dictated by association with androgen (ligand) and through interaction with co-activators and co-repressors. We have shown previously that cyclin D1 functions as a co-repressor to inhibit ligand-dependent androgen receptor activation. We demonstrate that cyclin D1 directly binds the N terminus of the androgen receptor and that this interaction is independent of ligand. Furthermore, we show that the interaction occurs in the nucleus and does not require the LXXLL motif of cyclin D1. Although two distinct transactivation domains exist in the N terminus (AF-1 and AF-5), the data shown support the hypothesis that cyclin D1 targets the AF-1 transactivation function. The constitutively active AF-5 domain was refractory to cyclin D1 inhibition. By contrast, cyclin D1 completely abolished androgen receptor activity, even in the presence of potent androgen receptor co-activators. This action of cyclin D1 at least partially required de-acetylase activity. Finally, we show that transient, ectopic expression of cyclin D1 results in reduced cell cycle progression in androgen-dependent LNCaP cells independent of CDK4 association. Collectively, our data support a model wherein cyclin D1 has a mitogenic (CDK4-dependent) function and an anti-mitogenic function (dependent on regulation of the AF-1 domain) that can collectively control the rate of androgen-dependent cellular proliferation. These findings provide insight into the non-cell cycle functions of cyclin D1 and provide the impetus to study its pleiotropic effects in androgen-dependent cells, especially prostatic adenocarcinomas.
Insights
Cyclin D1 acts as a co-repressor, inhibiting androgen receptor (AR) activation in prostate cells. This interaction, independent of ligand, targets the AR
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- Androgen receptor (AR) regulation is crucial for prostate development and growth.
- AR activation depends on ligand binding and interactions with co-regulators.
- Cyclin D1 was previously identified as a co-repressor of AR activation.
Purpose of the Study:
- To elucidate the mechanism by which cyclin D1 inhibits AR activity.
- To investigate the specific domains and conditions of the cyclin D1-AR interaction.
- To understand the functional consequences of this interaction on cell proliferation.
Main Methods:
- Direct binding assays to confirm cyclin D1 interaction with AR N-terminus.
- Nuclear localization studies and analysis of LXXLL motif involvement.
- Transactivation assays using distinct AR domains (AF-1, AF-5) and co-activators.
- Assessment of cyclin D1 effects on cell cycle progression in LNCaP cells.
Main Results:
- Cyclin D1 directly binds the AR N-terminus independently of ligand, occurring in the nucleus.
- The interaction specifically inhibits the AF-1 transactivation domain, not the constitutively active AF-5 domain.
- Cyclin D1 abolishes AR activity, requiring de-acetylase activity and reducing LNCaP cell proliferation independently of CDK4.
Conclusions:
- Cyclin D1 possesses both mitogenic (CDK4-dependent) and anti-mitogenic (AR-dependent) functions.
- Cyclin D1's regulation of the AR AF-1 domain provides an anti-mitogenic effect on androgen-dependent proliferation.
- These findings highlight the pleiotropic roles of cyclin D1 in prostate cancer and warrant further investigation.