The role of the newly discovered steroid receptor RNA activator protein (SRAP) in the estrogen signaling pathway and its implication in breast cancer

In 1999, the discovery of the Steroid Receptor RNA Activator (SRA) was unprecedented in the field of steroid receptor co-regulator research. It was the first time that an RNA molecule was demonstrated to function similarly to its protein counterpart and modulate the activity of steroid receptors. Th...

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Main Author: Chooniedass, Shilpa
Other Authors: Leygue, Etienne (Biochemistry and Medical Genetics)
Language:en_US
Published: 2011
Subjects:
Online Access:http://hdl.handle.net/1993/4421
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-MWU.1993-44212014-03-29T03:43:19Z The role of the newly discovered steroid receptor RNA activator protein (SRAP) in the estrogen signaling pathway and its implication in breast cancer Chooniedass, Shilpa Leygue, Etienne (Biochemistry and Medical Genetics) Murphy, Leigh (Biochemistry and Medical Genetics) Davie, Jim (Biochemistry and Medical Genetics) Xie, Juiyong (Physiology) steoid receptor RNA activator estrogen receptor In 1999, the discovery of the Steroid Receptor RNA Activator (SRA) was unprecedented in the field of steroid receptor co-regulator research. It was the first time that an RNA molecule was demonstrated to function similarly to its protein counterpart and modulate the activity of steroid receptors. This peculiar steroid receptor co-activator thus attracted the attention of numerous research groups. Over the years, studies were reported deciphering SRA mechanisms of action, its role in co-regulating nuclear receptors and its possible implication in human diseases. While SRA was originally thought to exist solely as a non-coding RNA, our laboratory has identified longer SRA RNA isoforms with the theoretical capacity to encode for a protein. This discovery impelled us to investigate the existence of a Steroid Receptor RNA Activator Protein or SRAP. In this thesis, we first demonstrated the existence and function of endogenous evolutionary conserved SRA proteins. Based on these results we further explored SRAP expression in breast tumors. Interestingly, Western blot analysis of a small cohort of estrogen positive breast tumors suggested that SRAP expression correlates with a better overall survival in patients treated with tamoxifen. This observation prompted us to explore the biological role of SRAP. We found that MCF-7 cells stably expressing coding SRA isoforms had lower ligand dependent estrogen receptor alpha transcriptional activity. In order to dissect the function of the protein independently of its RNA counterpart, we separated the functions of the protein by introducing extensive silent mutations into the RNA sequence. Using this model, we established that SRAP, independent of its RNA counterpart, enhances estrogen receptor alpha activity in a ligand and response-element dependent manner. Furthermore, we showed for the first time that SRAP physically interacts with multiple transcription factors and is recruited to specific promoter regions. Moreover, by artificially recruiting SRAP to the promoter of a luciferase reporter gene under the control of the strong transcriptional activator VP16, we observed a decrease in transcription. These latter results suggest that SRA could function as a repressor through direct association with promoters. Overall, we believe that SRA is a very peculiar example of a bi-faceted system consisting of a functional RNA and its corresponding protein. Altogether our data suggest that SRAP, similarly to its RNA counterpart, is involved in many critical pathways that directly participate in gene expression regulation. 2011-03-17T15:20:39Z 2011-03-17T15:20:39Z 2011-03-17T15:20:39Z Chooniedass-Kothari, S., Hamedani, M.K, Auge, C., Wang, X., Carascossa, S., Yan, Y., Cooper, C., Vincett, D., Myal, Y., Jalaguier, S., Cavailles, V., Leygue, E (2010). The steroid receptor RNA activator protein is recruited to promoter regions and acts as a transcriptional repressor. FEBS Letters 584, 2218–2224. Chooniedass-Kothari, S., Vincett, D., Yan, Y., Cooper, C., Hamedani, M.K., Myal. Y., and Leygue, E (2010). The protein encoded by the functional Steroid receptor RNA activator is a new modulator of ER alpha transcriptional activity. FEBS Letters. FEBS Letters 584, 1174–1180. Chooniedass-Kothari, S., Hamedani, M. K., Troup, S., Hube, F., & Leygue, E. (2006). Chooniedass-Kothari, S., Emberley, E., Hamedani, M. K., Troup, S., Wang, X., http://hdl.handle.net/1993/4421 en_US
collection NDLTD
language en_US
sources NDLTD
topic steoid receptor RNA activator
estrogen receptor
spellingShingle steoid receptor RNA activator
estrogen receptor
Chooniedass, Shilpa
The role of the newly discovered steroid receptor RNA activator protein (SRAP) in the estrogen signaling pathway and its implication in breast cancer
description In 1999, the discovery of the Steroid Receptor RNA Activator (SRA) was unprecedented in the field of steroid receptor co-regulator research. It was the first time that an RNA molecule was demonstrated to function similarly to its protein counterpart and modulate the activity of steroid receptors. This peculiar steroid receptor co-activator thus attracted the attention of numerous research groups. Over the years, studies were reported deciphering SRA mechanisms of action, its role in co-regulating nuclear receptors and its possible implication in human diseases. While SRA was originally thought to exist solely as a non-coding RNA, our laboratory has identified longer SRA RNA isoforms with the theoretical capacity to encode for a protein. This discovery impelled us to investigate the existence of a Steroid Receptor RNA Activator Protein or SRAP. In this thesis, we first demonstrated the existence and function of endogenous evolutionary conserved SRA proteins. Based on these results we further explored SRAP expression in breast tumors. Interestingly, Western blot analysis of a small cohort of estrogen positive breast tumors suggested that SRAP expression correlates with a better overall survival in patients treated with tamoxifen. This observation prompted us to explore the biological role of SRAP. We found that MCF-7 cells stably expressing coding SRA isoforms had lower ligand dependent estrogen receptor alpha transcriptional activity. In order to dissect the function of the protein independently of its RNA counterpart, we separated the functions of the protein by introducing extensive silent mutations into the RNA sequence. Using this model, we established that SRAP, independent of its RNA counterpart, enhances estrogen receptor alpha activity in a ligand and response-element dependent manner. Furthermore, we showed for the first time that SRAP physically interacts with multiple transcription factors and is recruited to specific promoter regions. Moreover, by artificially recruiting SRAP to the promoter of a luciferase reporter gene under the control of the strong transcriptional activator VP16, we observed a decrease in transcription. These latter results suggest that SRA could function as a repressor through direct association with promoters. Overall, we believe that SRA is a very peculiar example of a bi-faceted system consisting of a functional RNA and its corresponding protein. Altogether our data suggest that SRAP, similarly to its RNA counterpart, is involved in many critical pathways that directly participate in gene expression regulation.
author2 Leygue, Etienne (Biochemistry and Medical Genetics)
author_facet Leygue, Etienne (Biochemistry and Medical Genetics)
Chooniedass, Shilpa
author Chooniedass, Shilpa
author_sort Chooniedass, Shilpa
title The role of the newly discovered steroid receptor RNA activator protein (SRAP) in the estrogen signaling pathway and its implication in breast cancer
title_short The role of the newly discovered steroid receptor RNA activator protein (SRAP) in the estrogen signaling pathway and its implication in breast cancer
title_full The role of the newly discovered steroid receptor RNA activator protein (SRAP) in the estrogen signaling pathway and its implication in breast cancer
title_fullStr The role of the newly discovered steroid receptor RNA activator protein (SRAP) in the estrogen signaling pathway and its implication in breast cancer
title_full_unstemmed The role of the newly discovered steroid receptor RNA activator protein (SRAP) in the estrogen signaling pathway and its implication in breast cancer
title_sort role of the newly discovered steroid receptor rna activator protein (srap) in the estrogen signaling pathway and its implication in breast cancer
publishDate 2011
url http://hdl.handle.net/1993/4421
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