The increase in cytosolic levels of protein kinase C precedes the growth factor requirements during the transition stem cells to differentiated progeny in the MCF-7 breast tumor cells.

The expression of regulatory genes within the context of a differentiation program can have profound long-term consequences in tissues with permanent renewing populations. The breast tumor cell line MCF-7 retains in culture some of the characteristics of a unidirectional differentiation pathway. We...

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Autores principales: Gomez, M.L., Resnicoff, M., Medrano, E.E., Tellez-Inon, M.T.
Formato: JOUR
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Acceso en línea:http://hdl.handle.net/20.500.12110/paper_10656995_v17_n5_p495_Gomez
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spelling todo:paper_10656995_v17_n5_p495_Gomez2023-10-03T16:02:03Z The increase in cytosolic levels of protein kinase C precedes the growth factor requirements during the transition stem cells to differentiated progeny in the MCF-7 breast tumor cells. Gomez, M.L. Resnicoff, M. Medrano, E.E. Tellez-Inon, M.T. growth factor protein kinase c article breast tumor cell differentiation cell maturation cell subpopulation cytosol enzyme activity gene expression human human cell priority journal regulator gene stem cell tumor cell line Breast Neoplasms Cell Differentiation Cytosol Female Genes, Regulator Growth Substances Human Protein Kinase C Tumor Cells, Cultured Tumor Stem Cells The expression of regulatory genes within the context of a differentiation program can have profound long-term consequences in tissues with permanent renewing populations. The breast tumor cell line MCF-7 retains in culture some of the characteristics of a unidirectional differentiation pathway. We show that the cytosolic activity of the regulatory enzyme protein kinase C (PKC) precedes and continues the sequence of maturation in pre-differentiated subpopulations derived from a stem cell fraction. However, the activity declines in the most differentiated, post-mitotic fraction. These results indicate that PKC may be considered among the regulatory genes in MCF-7 cells that specify maturation of the stem cell progeny. © 1993 Academic Press. All rights reserved. Fil:Gomez, M.L. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. Fil:Resnicoff, M. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_10656995_v17_n5_p495_Gomez
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic growth factor
protein kinase c
article
breast tumor
cell differentiation
cell maturation
cell subpopulation
cytosol
enzyme activity
gene expression
human
human cell
priority journal
regulator gene
stem cell
tumor cell line
Breast Neoplasms
Cell Differentiation
Cytosol
Female
Genes, Regulator
Growth Substances
Human
Protein Kinase C
Tumor Cells, Cultured
Tumor Stem Cells
spellingShingle growth factor
protein kinase c
article
breast tumor
cell differentiation
cell maturation
cell subpopulation
cytosol
enzyme activity
gene expression
human
human cell
priority journal
regulator gene
stem cell
tumor cell line
Breast Neoplasms
Cell Differentiation
Cytosol
Female
Genes, Regulator
Growth Substances
Human
Protein Kinase C
Tumor Cells, Cultured
Tumor Stem Cells
Gomez, M.L.
Resnicoff, M.
Medrano, E.E.
Tellez-Inon, M.T.
The increase in cytosolic levels of protein kinase C precedes the growth factor requirements during the transition stem cells to differentiated progeny in the MCF-7 breast tumor cells.
topic_facet growth factor
protein kinase c
article
breast tumor
cell differentiation
cell maturation
cell subpopulation
cytosol
enzyme activity
gene expression
human
human cell
priority journal
regulator gene
stem cell
tumor cell line
Breast Neoplasms
Cell Differentiation
Cytosol
Female
Genes, Regulator
Growth Substances
Human
Protein Kinase C
Tumor Cells, Cultured
Tumor Stem Cells
description The expression of regulatory genes within the context of a differentiation program can have profound long-term consequences in tissues with permanent renewing populations. The breast tumor cell line MCF-7 retains in culture some of the characteristics of a unidirectional differentiation pathway. We show that the cytosolic activity of the regulatory enzyme protein kinase C (PKC) precedes and continues the sequence of maturation in pre-differentiated subpopulations derived from a stem cell fraction. However, the activity declines in the most differentiated, post-mitotic fraction. These results indicate that PKC may be considered among the regulatory genes in MCF-7 cells that specify maturation of the stem cell progeny. © 1993 Academic Press. All rights reserved.
format JOUR
author Gomez, M.L.
Resnicoff, M.
Medrano, E.E.
Tellez-Inon, M.T.
author_facet Gomez, M.L.
Resnicoff, M.
Medrano, E.E.
Tellez-Inon, M.T.
author_sort Gomez, M.L.
title The increase in cytosolic levels of protein kinase C precedes the growth factor requirements during the transition stem cells to differentiated progeny in the MCF-7 breast tumor cells.
title_short The increase in cytosolic levels of protein kinase C precedes the growth factor requirements during the transition stem cells to differentiated progeny in the MCF-7 breast tumor cells.
title_full The increase in cytosolic levels of protein kinase C precedes the growth factor requirements during the transition stem cells to differentiated progeny in the MCF-7 breast tumor cells.
title_fullStr The increase in cytosolic levels of protein kinase C precedes the growth factor requirements during the transition stem cells to differentiated progeny in the MCF-7 breast tumor cells.
title_full_unstemmed The increase in cytosolic levels of protein kinase C precedes the growth factor requirements during the transition stem cells to differentiated progeny in the MCF-7 breast tumor cells.
title_sort increase in cytosolic levels of protein kinase c precedes the growth factor requirements during the transition stem cells to differentiated progeny in the mcf-7 breast tumor cells.
url http://hdl.handle.net/20.500.12110/paper_10656995_v17_n5_p495_Gomez
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