Cargando…

An unbiased seed-based RNAi selection screen identifies small RNAs that inhibit androgen signaling and prostate cancer cell growth

Blocking androgen receptor signaling is the mainstay of therapy for advanced prostate cancer (PCa). However, acquired resistance to single agents targeting this pathway results in the development of lethal castration-resistant PCa. Combination therapy approaches represent a promising strategy for th...

Descripción completa

Detalles Bibliográficos
Autores principales: Corbin, Joshua M., Georgescu, Constantin, Wang, Lin, Wren, Jonathan D., Bieniasz, Magdalena, Xu, Chao, Asch, Adam S., Ruiz Echevarría, Maria J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10404560/
https://www.ncbi.nlm.nih.gov/pubmed/37554515
http://dx.doi.org/10.1016/j.omtn.2023.06.021
_version_ 1785085325453819904
author Corbin, Joshua M.
Georgescu, Constantin
Wang, Lin
Wren, Jonathan D.
Bieniasz, Magdalena
Xu, Chao
Asch, Adam S.
Ruiz Echevarría, Maria J.
author_facet Corbin, Joshua M.
Georgescu, Constantin
Wang, Lin
Wren, Jonathan D.
Bieniasz, Magdalena
Xu, Chao
Asch, Adam S.
Ruiz Echevarría, Maria J.
author_sort Corbin, Joshua M.
collection PubMed
description Blocking androgen receptor signaling is the mainstay of therapy for advanced prostate cancer (PCa). However, acquired resistance to single agents targeting this pathway results in the development of lethal castration-resistant PCa. Combination therapy approaches represent a promising strategy for the treatment of advanced disease. Here, we explore a therapeutic strategy for PCa based on the ability of shRNAs/siRNAs to function essentially as miRNAs and, via seed sequence complementarity, induce RNA interference of numerous targets simultaneously. We developed a library that contained shRNAs with all possible seed sequence combinations to identify those ones that most potently reduce cell growth and viability when expressed in PCa cells. Validation of some of these RNAi sequences indicated that the toxic effect is associated with seed sequence complementarity to the 3′ UTR of AR coregulatory and essential genes. In fact, expression of siRNAs containing the identified toxic seed sequences led to global inhibition of AR-mediated gene expression and reduced expression of cell-cycle genes. When tested in mice, the toxic shRNAs also inhibited castration-resistant PCa and exhibited therapeutic efficacy in pre-established tumors. Our findings highlight RNAi of androgen signaling networks as a promising therapeutic strategy for PCa.
format Online
Article
Text
id pubmed-10404560
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Society of Gene & Cell Therapy
record_format MEDLINE/PubMed
spelling pubmed-104045602023-08-08 An unbiased seed-based RNAi selection screen identifies small RNAs that inhibit androgen signaling and prostate cancer cell growth Corbin, Joshua M. Georgescu, Constantin Wang, Lin Wren, Jonathan D. Bieniasz, Magdalena Xu, Chao Asch, Adam S. Ruiz Echevarría, Maria J. Mol Ther Nucleic Acids Original Article Blocking androgen receptor signaling is the mainstay of therapy for advanced prostate cancer (PCa). However, acquired resistance to single agents targeting this pathway results in the development of lethal castration-resistant PCa. Combination therapy approaches represent a promising strategy for the treatment of advanced disease. Here, we explore a therapeutic strategy for PCa based on the ability of shRNAs/siRNAs to function essentially as miRNAs and, via seed sequence complementarity, induce RNA interference of numerous targets simultaneously. We developed a library that contained shRNAs with all possible seed sequence combinations to identify those ones that most potently reduce cell growth and viability when expressed in PCa cells. Validation of some of these RNAi sequences indicated that the toxic effect is associated with seed sequence complementarity to the 3′ UTR of AR coregulatory and essential genes. In fact, expression of siRNAs containing the identified toxic seed sequences led to global inhibition of AR-mediated gene expression and reduced expression of cell-cycle genes. When tested in mice, the toxic shRNAs also inhibited castration-resistant PCa and exhibited therapeutic efficacy in pre-established tumors. Our findings highlight RNAi of androgen signaling networks as a promising therapeutic strategy for PCa. American Society of Gene & Cell Therapy 2023-06-28 /pmc/articles/PMC10404560/ /pubmed/37554515 http://dx.doi.org/10.1016/j.omtn.2023.06.021 Text en © 2023 The Author(s) https://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
Corbin, Joshua M.
Georgescu, Constantin
Wang, Lin
Wren, Jonathan D.
Bieniasz, Magdalena
Xu, Chao
Asch, Adam S.
Ruiz Echevarría, Maria J.
An unbiased seed-based RNAi selection screen identifies small RNAs that inhibit androgen signaling and prostate cancer cell growth
title An unbiased seed-based RNAi selection screen identifies small RNAs that inhibit androgen signaling and prostate cancer cell growth
title_full An unbiased seed-based RNAi selection screen identifies small RNAs that inhibit androgen signaling and prostate cancer cell growth
title_fullStr An unbiased seed-based RNAi selection screen identifies small RNAs that inhibit androgen signaling and prostate cancer cell growth
title_full_unstemmed An unbiased seed-based RNAi selection screen identifies small RNAs that inhibit androgen signaling and prostate cancer cell growth
title_short An unbiased seed-based RNAi selection screen identifies small RNAs that inhibit androgen signaling and prostate cancer cell growth
title_sort unbiased seed-based rnai selection screen identifies small rnas that inhibit androgen signaling and prostate cancer cell growth
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10404560/
https://www.ncbi.nlm.nih.gov/pubmed/37554515
http://dx.doi.org/10.1016/j.omtn.2023.06.021
work_keys_str_mv AT corbinjoshuam anunbiasedseedbasedrnaiselectionscreenidentifiessmallrnasthatinhibitandrogensignalingandprostatecancercellgrowth
AT georgescuconstantin anunbiasedseedbasedrnaiselectionscreenidentifiessmallrnasthatinhibitandrogensignalingandprostatecancercellgrowth
AT wanglin anunbiasedseedbasedrnaiselectionscreenidentifiessmallrnasthatinhibitandrogensignalingandprostatecancercellgrowth
AT wrenjonathand anunbiasedseedbasedrnaiselectionscreenidentifiessmallrnasthatinhibitandrogensignalingandprostatecancercellgrowth
AT bieniaszmagdalena anunbiasedseedbasedrnaiselectionscreenidentifiessmallrnasthatinhibitandrogensignalingandprostatecancercellgrowth
AT xuchao anunbiasedseedbasedrnaiselectionscreenidentifiessmallrnasthatinhibitandrogensignalingandprostatecancercellgrowth
AT aschadams anunbiasedseedbasedrnaiselectionscreenidentifiessmallrnasthatinhibitandrogensignalingandprostatecancercellgrowth
AT ruizechevarriamariaj anunbiasedseedbasedrnaiselectionscreenidentifiessmallrnasthatinhibitandrogensignalingandprostatecancercellgrowth
AT corbinjoshuam unbiasedseedbasedrnaiselectionscreenidentifiessmallrnasthatinhibitandrogensignalingandprostatecancercellgrowth
AT georgescuconstantin unbiasedseedbasedrnaiselectionscreenidentifiessmallrnasthatinhibitandrogensignalingandprostatecancercellgrowth
AT wanglin unbiasedseedbasedrnaiselectionscreenidentifiessmallrnasthatinhibitandrogensignalingandprostatecancercellgrowth
AT wrenjonathand unbiasedseedbasedrnaiselectionscreenidentifiessmallrnasthatinhibitandrogensignalingandprostatecancercellgrowth
AT bieniaszmagdalena unbiasedseedbasedrnaiselectionscreenidentifiessmallrnasthatinhibitandrogensignalingandprostatecancercellgrowth
AT xuchao unbiasedseedbasedrnaiselectionscreenidentifiessmallrnasthatinhibitandrogensignalingandprostatecancercellgrowth
AT aschadams unbiasedseedbasedrnaiselectionscreenidentifiessmallrnasthatinhibitandrogensignalingandprostatecancercellgrowth
AT ruizechevarriamariaj unbiasedseedbasedrnaiselectionscreenidentifiessmallrnasthatinhibitandrogensignalingandprostatecancercellgrowth