2015
DOI: 10.1042/bsr20140172
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Signalling mechanisms regulating phenotypic changes in breast cancer cells

Abstract: In MCF-7 breast cancer cells epidermal growth factor (EGF) induces cell proliferation, whereas heregulin (HRG)/neuregulin (NRG) induces irreversible phenotypic changes accompanied by lipid accumulation. Although these changes in breast cancer cells resemble processes that take place in the tissue, there is no understanding of signalling mechanisms regulating it. To identify molecular mechanisms mediating this cell-fate decision process, we applied different perturbations to pathways activated by these growth f… Show more

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Cited by 8 publications
(5 citation statements)
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“…Finally, we examined the biological function of PHLDA1 in the MCF-7 system. In a previous study, it was shown that HRGstimulated MCF-7 cells undergo cellular differentiation as indicated by lipid accumulation (18,39). We confirmed that HRG treatment induced lipid accumulation (Fig.…”
Section: Knockdown Of Phlda1 Accelerates Differentiation Of Mcf-7 Cellssupporting
confidence: 86%
See 1 more Smart Citation
“…Finally, we examined the biological function of PHLDA1 in the MCF-7 system. In a previous study, it was shown that HRGstimulated MCF-7 cells undergo cellular differentiation as indicated by lipid accumulation (18,39). We confirmed that HRG treatment induced lipid accumulation (Fig.…”
Section: Knockdown Of Phlda1 Accelerates Differentiation Of Mcf-7 Cellssupporting
confidence: 86%
“…We slightly modified the previously published method (39) as follows: 0.4 ϫ 10 5 cells/well were seeded in standard 24-well plates. Culture medium was replaced with serum-free medium 24 h prior to stimulation, and cells were stimulated with 10 nM HRG.…”
Section: Oil Red O Stainingmentioning
confidence: 99%
“…A second possibility is that additional signals are requited for HRG-induced differentiation. In this respect, it was shown that HRG-evoked differentiation of MCF-7 cells requires PI-3K activation ( Volinsky et al. , 2015 ).…”
Section: Discussionmentioning
confidence: 99%
“…However, the molecular mechanisms of BC remain to be fully elucidated. It is well known that an accumulation of hereditary and epigenetic changes, including oncogene activation, tumor suppressor gene inactivation ( 6 ), changes in intercellular complex signal networks, microenvironment ( 7 , 8 ) and epigenetic changes ( 9 , 10 ) contribute to the formation of malignant tumors. An increasing number of studies have indicated that epigenetic changes may represent important events in the pathogenesis of BC ( 11 - 13 ), and that gene silencing at the post-transcriptional level may be an important epigenetic change ( 14 , 15 ).…”
Section: Introductionmentioning
confidence: 99%