Cargando…

A Multifunctional LNA Oligonucleotide-Based Strategy Blocks AR Expression and Transactivation Activity in PCa Cells

The androgen receptor (AR) plays a critical role in the development of prostate cancer (PCa) through the activation of androgen-induced cellular proliferation genes. Thus, blocking AR-mediated transcriptional activation is expected to inhibit the growth and spread of PCa. Using tailor-made splice-sw...

Descripción completa

Detalles Bibliográficos
Autores principales: Castanotto, Daniela, Zhang, Xiaowei, Rüger, Jacqueline, Alluin, Jessica, Sharma, Ritin, Pirrotte, Patrick, Joenson, Lars, Ioannou, Silvia, Nelson, Michael S., Vikeså, Jonas, Hansen, Bo Rode, Koch, Troels, Jensen, Mads Aaboe, Rossi, John J., Stein, Cy A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7723773/
https://www.ncbi.nlm.nih.gov/pubmed/33335793
http://dx.doi.org/10.1016/j.omtn.2020.10.032
_version_ 1783620413534765056
author Castanotto, Daniela
Zhang, Xiaowei
Rüger, Jacqueline
Alluin, Jessica
Sharma, Ritin
Pirrotte, Patrick
Joenson, Lars
Ioannou, Silvia
Nelson, Michael S.
Vikeså, Jonas
Hansen, Bo Rode
Koch, Troels
Jensen, Mads Aaboe
Rossi, John J.
Stein, Cy A.
author_facet Castanotto, Daniela
Zhang, Xiaowei
Rüger, Jacqueline
Alluin, Jessica
Sharma, Ritin
Pirrotte, Patrick
Joenson, Lars
Ioannou, Silvia
Nelson, Michael S.
Vikeså, Jonas
Hansen, Bo Rode
Koch, Troels
Jensen, Mads Aaboe
Rossi, John J.
Stein, Cy A.
author_sort Castanotto, Daniela
collection PubMed
description The androgen receptor (AR) plays a critical role in the development of prostate cancer (PCa) through the activation of androgen-induced cellular proliferation genes. Thus, blocking AR-mediated transcriptional activation is expected to inhibit the growth and spread of PCa. Using tailor-made splice-switching locked nucleic acid (LNA) oligonucleotides (SSOs), we successfully redirected splicing of the AR precursor (pre-)mRNA and destabilized the transcripts via the introduction of premature stop codons. Furthermore, the SSOs simultaneously favored production of the AR45 mRNA in lieu of the full-length AR. AR45 is an AR isoform that can attenuate the activity of both full-length and oncogenic forms of AR by binding to their common N-terminal domain (NTD), thereby blocking their transactivation potential. A large screen was subsequently used to identify individual SSOs that could best perform this dual function. The selected SSOs powerfully silence AR expression and modulate the expression of AR-responsive cellular genes. This bi-functional strategy that uses a single therapeutic molecule can be the basis for novel PCa treatments. It might also be customized to other types of therapies that require the silencing of one gene and the simultaneous expression of a different isoform.
format Online
Article
Text
id pubmed-7723773
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher American Society of Gene & Cell Therapy
record_format MEDLINE/PubMed
spelling pubmed-77237732020-12-16 A Multifunctional LNA Oligonucleotide-Based Strategy Blocks AR Expression and Transactivation Activity in PCa Cells Castanotto, Daniela Zhang, Xiaowei Rüger, Jacqueline Alluin, Jessica Sharma, Ritin Pirrotte, Patrick Joenson, Lars Ioannou, Silvia Nelson, Michael S. Vikeså, Jonas Hansen, Bo Rode Koch, Troels Jensen, Mads Aaboe Rossi, John J. Stein, Cy A. Mol Ther Nucleic Acids Original Article The androgen receptor (AR) plays a critical role in the development of prostate cancer (PCa) through the activation of androgen-induced cellular proliferation genes. Thus, blocking AR-mediated transcriptional activation is expected to inhibit the growth and spread of PCa. Using tailor-made splice-switching locked nucleic acid (LNA) oligonucleotides (SSOs), we successfully redirected splicing of the AR precursor (pre-)mRNA and destabilized the transcripts via the introduction of premature stop codons. Furthermore, the SSOs simultaneously favored production of the AR45 mRNA in lieu of the full-length AR. AR45 is an AR isoform that can attenuate the activity of both full-length and oncogenic forms of AR by binding to their common N-terminal domain (NTD), thereby blocking their transactivation potential. A large screen was subsequently used to identify individual SSOs that could best perform this dual function. The selected SSOs powerfully silence AR expression and modulate the expression of AR-responsive cellular genes. This bi-functional strategy that uses a single therapeutic molecule can be the basis for novel PCa treatments. It might also be customized to other types of therapies that require the silencing of one gene and the simultaneous expression of a different isoform. American Society of Gene & Cell Therapy 2020-10-27 /pmc/articles/PMC7723773/ /pubmed/33335793 http://dx.doi.org/10.1016/j.omtn.2020.10.032 Text en © 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Castanotto, Daniela
Zhang, Xiaowei
Rüger, Jacqueline
Alluin, Jessica
Sharma, Ritin
Pirrotte, Patrick
Joenson, Lars
Ioannou, Silvia
Nelson, Michael S.
Vikeså, Jonas
Hansen, Bo Rode
Koch, Troels
Jensen, Mads Aaboe
Rossi, John J.
Stein, Cy A.
A Multifunctional LNA Oligonucleotide-Based Strategy Blocks AR Expression and Transactivation Activity in PCa Cells
title A Multifunctional LNA Oligonucleotide-Based Strategy Blocks AR Expression and Transactivation Activity in PCa Cells
title_full A Multifunctional LNA Oligonucleotide-Based Strategy Blocks AR Expression and Transactivation Activity in PCa Cells
title_fullStr A Multifunctional LNA Oligonucleotide-Based Strategy Blocks AR Expression and Transactivation Activity in PCa Cells
title_full_unstemmed A Multifunctional LNA Oligonucleotide-Based Strategy Blocks AR Expression and Transactivation Activity in PCa Cells
title_short A Multifunctional LNA Oligonucleotide-Based Strategy Blocks AR Expression and Transactivation Activity in PCa Cells
title_sort multifunctional lna oligonucleotide-based strategy blocks ar expression and transactivation activity in pca cells
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7723773/
https://www.ncbi.nlm.nih.gov/pubmed/33335793
http://dx.doi.org/10.1016/j.omtn.2020.10.032
work_keys_str_mv AT castanottodaniela amultifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT zhangxiaowei amultifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT rugerjacqueline amultifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT alluinjessica amultifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT sharmaritin amultifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT pirrottepatrick amultifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT joensonlars amultifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT ioannousilvia amultifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT nelsonmichaels amultifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT vikesajonas amultifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT hansenborode amultifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT kochtroels amultifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT jensenmadsaaboe amultifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT rossijohnj amultifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT steincya amultifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT castanottodaniela multifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT zhangxiaowei multifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT rugerjacqueline multifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT alluinjessica multifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT sharmaritin multifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT pirrottepatrick multifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT joensonlars multifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT ioannousilvia multifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT nelsonmichaels multifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT vikesajonas multifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT hansenborode multifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT kochtroels multifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT jensenmadsaaboe multifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT rossijohnj multifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells
AT steincya multifunctionallnaoligonucleotidebasedstrategyblocksarexpressionandtransactivationactivityinpcacells