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s-SHIP expression identifies a subset of murine basal prostate cells as neonatal stem cells

Isolation of prostate stem cells (PSCs) is crucial for understanding their biology during normal development and tumorigenesis. In this aim, we used a transgenic mouse model expressing GFP from the stem cell-specific s-SHIP promoter to mark putative stem cells during postnatal prostate development....

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Autores principales: Brocqueville, Guillaume, Chmelar, Renee S., Bauderlique-Le Roy, Hélène, Deruy, Emeric, Tian, Lu, Vessella, Robert L., Greenberg, Norman M., Rohrschneider, Larry R., Bourette, Roland P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5045392/
https://www.ncbi.nlm.nih.gov/pubmed/27081082
http://dx.doi.org/10.18632/oncotarget.8709
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author Brocqueville, Guillaume
Chmelar, Renee S.
Bauderlique-Le Roy, Hélène
Deruy, Emeric
Tian, Lu
Vessella, Robert L.
Greenberg, Norman M.
Rohrschneider, Larry R.
Bourette, Roland P.
author_facet Brocqueville, Guillaume
Chmelar, Renee S.
Bauderlique-Le Roy, Hélène
Deruy, Emeric
Tian, Lu
Vessella, Robert L.
Greenberg, Norman M.
Rohrschneider, Larry R.
Bourette, Roland P.
author_sort Brocqueville, Guillaume
collection PubMed
description Isolation of prostate stem cells (PSCs) is crucial for understanding their biology during normal development and tumorigenesis. In this aim, we used a transgenic mouse model expressing GFP from the stem cell-specific s-SHIP promoter to mark putative stem cells during postnatal prostate development. Here we show that cells identified by GFP expression are present transiently during early prostate development and localize to the basal cell layer of the epithelium. These prostate GFP(+) cells are a subpopulation of the Lin(−) CD24(+) Sca-1(+) CD49f(+) cells and are capable of self-renewal together with enhanced growth potential in sphere-forming assay in vitro, a phenotype consistent with that of a PSC population. Transplantation assays of prostate GFP(+) cells demonstrate reconstitution of prostate ducts containing both basal and luminal cells in renal grafts. Altogether, these results demonstrate that s-SHIP promoter expression is a new marker for neonatal basal prostate cells exhibiting stem cell properties that enables PSCs in situ identification and isolation via a single consistent parameter. Transcriptional profiling of these GFP(+) neonatal stem cells showed an increased expression of several components of the Wnt signaling pathway. It also identified stem cell regulators with potential applications for further analyses of normal and cancer stem cells.
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spelling pubmed-50453922016-10-13 s-SHIP expression identifies a subset of murine basal prostate cells as neonatal stem cells Brocqueville, Guillaume Chmelar, Renee S. Bauderlique-Le Roy, Hélène Deruy, Emeric Tian, Lu Vessella, Robert L. Greenberg, Norman M. Rohrschneider, Larry R. Bourette, Roland P. Oncotarget Research Paper Isolation of prostate stem cells (PSCs) is crucial for understanding their biology during normal development and tumorigenesis. In this aim, we used a transgenic mouse model expressing GFP from the stem cell-specific s-SHIP promoter to mark putative stem cells during postnatal prostate development. Here we show that cells identified by GFP expression are present transiently during early prostate development and localize to the basal cell layer of the epithelium. These prostate GFP(+) cells are a subpopulation of the Lin(−) CD24(+) Sca-1(+) CD49f(+) cells and are capable of self-renewal together with enhanced growth potential in sphere-forming assay in vitro, a phenotype consistent with that of a PSC population. Transplantation assays of prostate GFP(+) cells demonstrate reconstitution of prostate ducts containing both basal and luminal cells in renal grafts. Altogether, these results demonstrate that s-SHIP promoter expression is a new marker for neonatal basal prostate cells exhibiting stem cell properties that enables PSCs in situ identification and isolation via a single consistent parameter. Transcriptional profiling of these GFP(+) neonatal stem cells showed an increased expression of several components of the Wnt signaling pathway. It also identified stem cell regulators with potential applications for further analyses of normal and cancer stem cells. Impact Journals LLC 2016-04-12 /pmc/articles/PMC5045392/ /pubmed/27081082 http://dx.doi.org/10.18632/oncotarget.8709 Text en Copyright: © 2016 Brocqueville et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Brocqueville, Guillaume
Chmelar, Renee S.
Bauderlique-Le Roy, Hélène
Deruy, Emeric
Tian, Lu
Vessella, Robert L.
Greenberg, Norman M.
Rohrschneider, Larry R.
Bourette, Roland P.
s-SHIP expression identifies a subset of murine basal prostate cells as neonatal stem cells
title s-SHIP expression identifies a subset of murine basal prostate cells as neonatal stem cells
title_full s-SHIP expression identifies a subset of murine basal prostate cells as neonatal stem cells
title_fullStr s-SHIP expression identifies a subset of murine basal prostate cells as neonatal stem cells
title_full_unstemmed s-SHIP expression identifies a subset of murine basal prostate cells as neonatal stem cells
title_short s-SHIP expression identifies a subset of murine basal prostate cells as neonatal stem cells
title_sort s-ship expression identifies a subset of murine basal prostate cells as neonatal stem cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5045392/
https://www.ncbi.nlm.nih.gov/pubmed/27081082
http://dx.doi.org/10.18632/oncotarget.8709
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