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Heregulin β-1 Induces Loss of Cell-Cell Contact and Enhances Expression of MUC1 at the Cell Surface in HCC2998 and MKN45-1 Cells

Signal transduction and cell responses after stimulation with heregulin β-1 (HRG) are examined in HCC2998 and MKN45-1 cells, which have been used for a model system to study the formation of signet ring carcinomas, one of poorly differentiated adenocarcinomas. HRG stimulation causes rounding of the...

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Autores principales: Okoshi, Rintaro, Shu, Chung-Li, Ihara, Sayoko, Fukui, Yasuhisa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3245292/
https://www.ncbi.nlm.nih.gov/pubmed/22216327
http://dx.doi.org/10.1371/journal.pone.0029599
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author Okoshi, Rintaro
Shu, Chung-Li
Ihara, Sayoko
Fukui, Yasuhisa
author_facet Okoshi, Rintaro
Shu, Chung-Li
Ihara, Sayoko
Fukui, Yasuhisa
author_sort Okoshi, Rintaro
collection PubMed
description Signal transduction and cell responses after stimulation with heregulin β-1 (HRG) are examined in HCC2998 and MKN45-1 cells, which have been used for a model system to study the formation of signet ring carcinomas, one of poorly differentiated adenocarcinomas. HRG stimulation causes rounding of the cells, responding to HRG. The adherens junction, which is present in the control cells, is disrupted and cell-cell interaction is lost after stimulation. Inhibition of phosphatidylinositol (PI)-3 kinase or p38 MAP kinase blocked this reaction, which indicates that the PI-3 kinase-p38 MAP kinase pathway is required for this reaction. Inhibition of the p38 MAP kinase pathway resulted in immediate restoration of cell-cell interaction. This result indicates that signaling for adherent molecules is strictly regulated by growth factor signaling. Expression of MUC1 at the cell surface is also observed and found to be expressed only after HRG stimulation. The total amount of MUC1 remains unchanged, suggesting that this amount is not due to induction of gene expression but to translocation of MUC1 from the inner membrane to the plasma membrane. This reaction is independent of the cytohesin pathway but dependent on PI-3 kinase activity. In addition to these reactions, HRG stimulates cell growth of both HCC2998 and MKN45-1 cells, depending on the ERK pathway given that the MEK inhibitor abolishes this effect. Therefore, HRG induces various reactions in HCC2998 and MKN45-1 cells by different pathways. These reactions are all related to characteristics of tumors, which implicates that HRG signaling can contribute to the formation of tumors.
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spelling pubmed-32452922012-01-03 Heregulin β-1 Induces Loss of Cell-Cell Contact and Enhances Expression of MUC1 at the Cell Surface in HCC2998 and MKN45-1 Cells Okoshi, Rintaro Shu, Chung-Li Ihara, Sayoko Fukui, Yasuhisa PLoS One Research Article Signal transduction and cell responses after stimulation with heregulin β-1 (HRG) are examined in HCC2998 and MKN45-1 cells, which have been used for a model system to study the formation of signet ring carcinomas, one of poorly differentiated adenocarcinomas. HRG stimulation causes rounding of the cells, responding to HRG. The adherens junction, which is present in the control cells, is disrupted and cell-cell interaction is lost after stimulation. Inhibition of phosphatidylinositol (PI)-3 kinase or p38 MAP kinase blocked this reaction, which indicates that the PI-3 kinase-p38 MAP kinase pathway is required for this reaction. Inhibition of the p38 MAP kinase pathway resulted in immediate restoration of cell-cell interaction. This result indicates that signaling for adherent molecules is strictly regulated by growth factor signaling. Expression of MUC1 at the cell surface is also observed and found to be expressed only after HRG stimulation. The total amount of MUC1 remains unchanged, suggesting that this amount is not due to induction of gene expression but to translocation of MUC1 from the inner membrane to the plasma membrane. This reaction is independent of the cytohesin pathway but dependent on PI-3 kinase activity. In addition to these reactions, HRG stimulates cell growth of both HCC2998 and MKN45-1 cells, depending on the ERK pathway given that the MEK inhibitor abolishes this effect. Therefore, HRG induces various reactions in HCC2998 and MKN45-1 cells by different pathways. These reactions are all related to characteristics of tumors, which implicates that HRG signaling can contribute to the formation of tumors. Public Library of Science 2011-12-22 /pmc/articles/PMC3245292/ /pubmed/22216327 http://dx.doi.org/10.1371/journal.pone.0029599 Text en Okoshi et al. http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Okoshi, Rintaro
Shu, Chung-Li
Ihara, Sayoko
Fukui, Yasuhisa
Heregulin β-1 Induces Loss of Cell-Cell Contact and Enhances Expression of MUC1 at the Cell Surface in HCC2998 and MKN45-1 Cells
title Heregulin β-1 Induces Loss of Cell-Cell Contact and Enhances Expression of MUC1 at the Cell Surface in HCC2998 and MKN45-1 Cells
title_full Heregulin β-1 Induces Loss of Cell-Cell Contact and Enhances Expression of MUC1 at the Cell Surface in HCC2998 and MKN45-1 Cells
title_fullStr Heregulin β-1 Induces Loss of Cell-Cell Contact and Enhances Expression of MUC1 at the Cell Surface in HCC2998 and MKN45-1 Cells
title_full_unstemmed Heregulin β-1 Induces Loss of Cell-Cell Contact and Enhances Expression of MUC1 at the Cell Surface in HCC2998 and MKN45-1 Cells
title_short Heregulin β-1 Induces Loss of Cell-Cell Contact and Enhances Expression of MUC1 at the Cell Surface in HCC2998 and MKN45-1 Cells
title_sort heregulin β-1 induces loss of cell-cell contact and enhances expression of muc1 at the cell surface in hcc2998 and mkn45-1 cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3245292/
https://www.ncbi.nlm.nih.gov/pubmed/22216327
http://dx.doi.org/10.1371/journal.pone.0029599
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