Cargando…

Human snoRNA-93 is processed into a microRNA-like RNA that promotes breast cancer cell invasion

Genetic searches for tumor suppressors have recently linked small nucleolar RNA misregulations with tumorigenesis. In addition to their classically defined functions, several small nucleolar RNAs are now known to be processed into short microRNA-like fragments called small nucleolar RNA-derived RNAs...

Descripción completa

Detalles Bibliográficos
Autores principales: Patterson, Dillon G., Roberts, Justin T., King, Valeria M., Houserova, Dominika, Barnhill, Emmaline C., Crucello, Aline, Polska, Caroline J., Brantley, Lucas W., Kaufman, Garrett C., Nguyen, Michael, Santana, Megann W., Schiller, Ian A., Spicciani, Julius S., Zapata, Anastasia K., Miller, Molly M., Sherman, Timothy D., Ma, Ruixia, Zhao, Hongyou, Arora, Ritu, Coley, Alexander B., Zeidan, Melody M., Tan, Ming, Xi, Yaguang, Borchert, Glen M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5503938/
https://www.ncbi.nlm.nih.gov/pubmed/28702505
http://dx.doi.org/10.1038/s41523-017-0032-8
_version_ 1783249180536340480
author Patterson, Dillon G.
Roberts, Justin T.
King, Valeria M.
Houserova, Dominika
Barnhill, Emmaline C.
Crucello, Aline
Polska, Caroline J.
Brantley, Lucas W.
Kaufman, Garrett C.
Nguyen, Michael
Santana, Megann W.
Schiller, Ian A.
Spicciani, Julius S.
Zapata, Anastasia K.
Miller, Molly M.
Sherman, Timothy D.
Ma, Ruixia
Zhao, Hongyou
Arora, Ritu
Coley, Alexander B.
Zeidan, Melody M.
Tan, Ming
Xi, Yaguang
Borchert, Glen M.
author_facet Patterson, Dillon G.
Roberts, Justin T.
King, Valeria M.
Houserova, Dominika
Barnhill, Emmaline C.
Crucello, Aline
Polska, Caroline J.
Brantley, Lucas W.
Kaufman, Garrett C.
Nguyen, Michael
Santana, Megann W.
Schiller, Ian A.
Spicciani, Julius S.
Zapata, Anastasia K.
Miller, Molly M.
Sherman, Timothy D.
Ma, Ruixia
Zhao, Hongyou
Arora, Ritu
Coley, Alexander B.
Zeidan, Melody M.
Tan, Ming
Xi, Yaguang
Borchert, Glen M.
author_sort Patterson, Dillon G.
collection PubMed
description Genetic searches for tumor suppressors have recently linked small nucleolar RNA misregulations with tumorigenesis. In addition to their classically defined functions, several small nucleolar RNAs are now known to be processed into short microRNA-like fragments called small nucleolar RNA-derived RNAs. To determine if any small nucleolar RNA-derived RNAs contribute to breast malignancy, we recently performed a RNA-seq-based comparison of the small nucleolar RNA-derived RNAs of two breast cancer cell lines (MCF-7 and MDA-MB-231) and identified small nucleolar RNA-derived RNAs derived from 13 small nucleolar RNAs overexpressed in MDA-MB-231s. Importantly, we find that inhibiting the most differentially expressed of these small nucleolar RNA-derived RNAs (sdRNA-93) in MDA-MB-231 cells results primarily in a loss of invasiveness, whereas increased sdRNA-93 expression in either cell line conversely results in strikingly enhanced invasion. Excitingly, we recently determined sdRNA-93 expressions in small RNA-seq data corresponding to 116 patient tumors and normal breast controls, and while we find little sdRNA-93 expression in any of the controls and only sporadic expression in most subtypes, we find robust expression of sdRNA-93 in 92.8% of Luminal B Her2+tumors. Of note, our analyses also indicate that at least one of sdRNA-93’s endogenous roles is to regulate the expression of Pipox, a sarcosine metabolism-related protein whose expression significantly correlates with distinct molecular subtypes of breast cancer. We find sdRNA-93 can regulate the Pipox 3′UTR via standard reporter assays and that manipulating endogenous sdRNA-93 levels inversely correlates with altered Pipox expression. In summary, our results strongly indicate that sdRNA-93 expression actively contributes to the malignant phenotype of breast cancer through participating in microRNA-like regulation.
format Online
Article
Text
id pubmed-5503938
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-55039382017-07-12 Human snoRNA-93 is processed into a microRNA-like RNA that promotes breast cancer cell invasion Patterson, Dillon G. Roberts, Justin T. King, Valeria M. Houserova, Dominika Barnhill, Emmaline C. Crucello, Aline Polska, Caroline J. Brantley, Lucas W. Kaufman, Garrett C. Nguyen, Michael Santana, Megann W. Schiller, Ian A. Spicciani, Julius S. Zapata, Anastasia K. Miller, Molly M. Sherman, Timothy D. Ma, Ruixia Zhao, Hongyou Arora, Ritu Coley, Alexander B. Zeidan, Melody M. Tan, Ming Xi, Yaguang Borchert, Glen M. NPJ Breast Cancer Article Genetic searches for tumor suppressors have recently linked small nucleolar RNA misregulations with tumorigenesis. In addition to their classically defined functions, several small nucleolar RNAs are now known to be processed into short microRNA-like fragments called small nucleolar RNA-derived RNAs. To determine if any small nucleolar RNA-derived RNAs contribute to breast malignancy, we recently performed a RNA-seq-based comparison of the small nucleolar RNA-derived RNAs of two breast cancer cell lines (MCF-7 and MDA-MB-231) and identified small nucleolar RNA-derived RNAs derived from 13 small nucleolar RNAs overexpressed in MDA-MB-231s. Importantly, we find that inhibiting the most differentially expressed of these small nucleolar RNA-derived RNAs (sdRNA-93) in MDA-MB-231 cells results primarily in a loss of invasiveness, whereas increased sdRNA-93 expression in either cell line conversely results in strikingly enhanced invasion. Excitingly, we recently determined sdRNA-93 expressions in small RNA-seq data corresponding to 116 patient tumors and normal breast controls, and while we find little sdRNA-93 expression in any of the controls and only sporadic expression in most subtypes, we find robust expression of sdRNA-93 in 92.8% of Luminal B Her2+tumors. Of note, our analyses also indicate that at least one of sdRNA-93’s endogenous roles is to regulate the expression of Pipox, a sarcosine metabolism-related protein whose expression significantly correlates with distinct molecular subtypes of breast cancer. We find sdRNA-93 can regulate the Pipox 3′UTR via standard reporter assays and that manipulating endogenous sdRNA-93 levels inversely correlates with altered Pipox expression. In summary, our results strongly indicate that sdRNA-93 expression actively contributes to the malignant phenotype of breast cancer through participating in microRNA-like regulation. Nature Publishing Group UK 2017-07-10 /pmc/articles/PMC5503938/ /pubmed/28702505 http://dx.doi.org/10.1038/s41523-017-0032-8 Text en © The Author(s) 2017 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Patterson, Dillon G.
Roberts, Justin T.
King, Valeria M.
Houserova, Dominika
Barnhill, Emmaline C.
Crucello, Aline
Polska, Caroline J.
Brantley, Lucas W.
Kaufman, Garrett C.
Nguyen, Michael
Santana, Megann W.
Schiller, Ian A.
Spicciani, Julius S.
Zapata, Anastasia K.
Miller, Molly M.
Sherman, Timothy D.
Ma, Ruixia
Zhao, Hongyou
Arora, Ritu
Coley, Alexander B.
Zeidan, Melody M.
Tan, Ming
Xi, Yaguang
Borchert, Glen M.
Human snoRNA-93 is processed into a microRNA-like RNA that promotes breast cancer cell invasion
title Human snoRNA-93 is processed into a microRNA-like RNA that promotes breast cancer cell invasion
title_full Human snoRNA-93 is processed into a microRNA-like RNA that promotes breast cancer cell invasion
title_fullStr Human snoRNA-93 is processed into a microRNA-like RNA that promotes breast cancer cell invasion
title_full_unstemmed Human snoRNA-93 is processed into a microRNA-like RNA that promotes breast cancer cell invasion
title_short Human snoRNA-93 is processed into a microRNA-like RNA that promotes breast cancer cell invasion
title_sort human snorna-93 is processed into a microrna-like rna that promotes breast cancer cell invasion
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5503938/
https://www.ncbi.nlm.nih.gov/pubmed/28702505
http://dx.doi.org/10.1038/s41523-017-0032-8
work_keys_str_mv AT pattersondillong humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT robertsjustint humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT kingvaleriam humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT houserovadominika humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT barnhillemmalinec humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT crucelloaline humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT polskacarolinej humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT brantleylucasw humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT kaufmangarrettc humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT nguyenmichael humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT santanamegannw humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT schilleriana humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT spiccianijuliuss humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT zapataanastasiak humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT millermollym humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT shermantimothyd humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT maruixia humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT zhaohongyou humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT aroraritu humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT coleyalexanderb humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT zeidanmelodym humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT tanming humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT xiyaguang humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion
AT borchertglenm humansnorna93isprocessedintoamicrornalikernathatpromotesbreastcancercellinvasion