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Steroid hormone receptor signaling in cancer
1Cancer Biology Program, Hematology-Oncology Division, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA, USA.
Abstract:
SHRs function as hormone activated, sequence specific DNA binding transcription factors that recruit multiple coactivator and other proteins to specific genes and generally stimulate transcription of these genes. SHR may have further genomic actions, that do not involve direct DNA binding, through protein-protein interactions with other sequence specific transcription factors, although these may still involve weak binding to nonconsensus steroid responsive elements in vivo. SHRs also appear to have nongenomic effects mediated through interactions with cytoplasmic signaling proteins. The major functions of SHRs in normal adult tissues appear to involve stimulation of differentiation, rather than proliferation. In contrast, the ER alpha and AR directly stimulate the growth of breast and prostate cancers, respectively, indicating a critical change in their functions. The ER alpha and AR appear to undergo further adaptation in tumor cells in response to hormonal therapies, that render these therapies ineffective. Understanding the molecular basis for these changes in SHR function during cancer development and progression may provide new targets for the generation of drugs to prevent and treat steroid stimulated cancers.
Insights
Steroid hormone receptors (SHRs) regulate gene transcription and cellular differentiation. In cancer, estrogen receptor alpha (ER alpha) and androgen receptor (AR) promote tumor growth and resist therapies, highlighting new drug targets.
Area of Science:
- Molecular Biology
- Endocrinology
- Cancer Research
Background:
- Steroid hormone receptors (SHRs) are transcription factors regulating gene expression.
- SHRs can act through direct DNA binding or protein-protein interactions.
- SHRs also mediate non-genomic effects via cytoplasmic signaling pathways.
Purpose of the Study:
- To elucidate the diverse functions of SHRs in normal tissues and cancer.
- To investigate the altered roles of ER alpha and AR in breast and prostate cancers.
- To identify molecular targets for novel cancer therapies.
Main Methods:
- Analysis of SHR genomic and non-genomic activities.
- Comparison of SHR functions in normal tissues versus cancer cells.
- Investigation of SHR adaptation to hormonal therapies in tumors.
Main Results:
- SHRs primarily stimulate differentiation in normal tissues.
- ER alpha and AR promote cancer cell proliferation in breast and prostate tumors.
- ER alpha and AR adapt to hormonal therapies, leading to treatment resistance.
Conclusions:
- SHR functions critically change during cancer development.
- Altered SHR activity in tumors presents therapeutic vulnerabilities.
- Understanding these molecular changes can lead to new cancer drug targets.