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Sustained conditional knockdown reveals intracellular bone sialoprotein as essential for breast cancer skeletal metastasis

Increased bone sialoprotein (BSP) serum levels are related to breast cancer skeletal metastasis, but their relevance is unknown. We elucidated novel intracellular BSP functions by a conditional knockdown of BSP. Conditional MDA-MB-231 subclones were equipped with a novel gene expression cassette con...

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Autores principales: Kovacheva, Marineta, Zepp, Michael, Berger, Stefan M., Berger, Martin R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4170606/
https://www.ncbi.nlm.nih.gov/pubmed/24980816
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author Kovacheva, Marineta
Zepp, Michael
Berger, Stefan M.
Berger, Martin R.
author_facet Kovacheva, Marineta
Zepp, Michael
Berger, Stefan M.
Berger, Martin R.
author_sort Kovacheva, Marineta
collection PubMed
description Increased bone sialoprotein (BSP) serum levels are related to breast cancer skeletal metastasis, but their relevance is unknown. We elucidated novel intracellular BSP functions by a conditional knockdown of BSP. Conditional MDA-MB-231 subclones were equipped with a novel gene expression cassette containing a tet-regulated miRNA providing knockdown of BSP production. These clones were used to assess the effect of BSP on morphology, proliferation, migration, colony formation and gene expression in vitro, and on soft tissue and osteolytic lesions in a xenograft model by three imaging methods. BSP knockdown caused significant anti-proliferative, anti-migratory and anti-clonogenic effects in vitro (p<0.001). In vivo, significant decreases of soft tissue and osteolytic lesions (p<0.03) were recorded after 3 weeks of miRNA treatment, leading to complete remission within 6 weeks. Microarray data revealed that 0.3% of genes were modulated in response to BSP knockdown. Upregulated genes included the endoplasmic reticulum stress genes ATF3 and DDIT3, the tumor suppressor gene EGR1, ID2 (related to breast epithelial differentiation), c-FOS and SERPINB2, whereas the metastasis associated genes CD44 and IL11 were downregulated. Also, activation of apoptotic pathways was demonstrated. These results implicate that intracellular BSP is essential for breast cancer skeletal metastasis and a target for treating these lesions.
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spelling pubmed-41706062014-09-22 Sustained conditional knockdown reveals intracellular bone sialoprotein as essential for breast cancer skeletal metastasis Kovacheva, Marineta Zepp, Michael Berger, Stefan M. Berger, Martin R. Oncotarget Research Paper Increased bone sialoprotein (BSP) serum levels are related to breast cancer skeletal metastasis, but their relevance is unknown. We elucidated novel intracellular BSP functions by a conditional knockdown of BSP. Conditional MDA-MB-231 subclones were equipped with a novel gene expression cassette containing a tet-regulated miRNA providing knockdown of BSP production. These clones were used to assess the effect of BSP on morphology, proliferation, migration, colony formation and gene expression in vitro, and on soft tissue and osteolytic lesions in a xenograft model by three imaging methods. BSP knockdown caused significant anti-proliferative, anti-migratory and anti-clonogenic effects in vitro (p<0.001). In vivo, significant decreases of soft tissue and osteolytic lesions (p<0.03) were recorded after 3 weeks of miRNA treatment, leading to complete remission within 6 weeks. Microarray data revealed that 0.3% of genes were modulated in response to BSP knockdown. Upregulated genes included the endoplasmic reticulum stress genes ATF3 and DDIT3, the tumor suppressor gene EGR1, ID2 (related to breast epithelial differentiation), c-FOS and SERPINB2, whereas the metastasis associated genes CD44 and IL11 were downregulated. Also, activation of apoptotic pathways was demonstrated. These results implicate that intracellular BSP is essential for breast cancer skeletal metastasis and a target for treating these lesions. Impact Journals LLC 2014-06-26 /pmc/articles/PMC4170606/ /pubmed/24980816 Text en Copyright: © 2014 Kovacheva 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
Kovacheva, Marineta
Zepp, Michael
Berger, Stefan M.
Berger, Martin R.
Sustained conditional knockdown reveals intracellular bone sialoprotein as essential for breast cancer skeletal metastasis
title Sustained conditional knockdown reveals intracellular bone sialoprotein as essential for breast cancer skeletal metastasis
title_full Sustained conditional knockdown reveals intracellular bone sialoprotein as essential for breast cancer skeletal metastasis
title_fullStr Sustained conditional knockdown reveals intracellular bone sialoprotein as essential for breast cancer skeletal metastasis
title_full_unstemmed Sustained conditional knockdown reveals intracellular bone sialoprotein as essential for breast cancer skeletal metastasis
title_short Sustained conditional knockdown reveals intracellular bone sialoprotein as essential for breast cancer skeletal metastasis
title_sort sustained conditional knockdown reveals intracellular bone sialoprotein as essential for breast cancer skeletal metastasis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4170606/
https://www.ncbi.nlm.nih.gov/pubmed/24980816
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