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Intravital imaging of SRF and Notch signalling identifies a key role for EZH2 in invasive melanoma cells

The acquisition of cell motility is an early step in melanoma metastasis. Here we use intravital imaging of signalling reporter cell-lines combined with genome-wide transcriptional analysis to define signalling pathways and genes associated with melanoma metastasis. Intravital imaging revealed heter...

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Autores principales: Manning, Cerys S, Hooper, Steven, Sahai, Erik A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4349503/
https://www.ncbi.nlm.nih.gov/pubmed/25381824
http://dx.doi.org/10.1038/onc.2014.362
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author Manning, Cerys S
Hooper, Steven
Sahai, Erik A
author_facet Manning, Cerys S
Hooper, Steven
Sahai, Erik A
author_sort Manning, Cerys S
collection PubMed
description The acquisition of cell motility is an early step in melanoma metastasis. Here we use intravital imaging of signalling reporter cell-lines combined with genome-wide transcriptional analysis to define signalling pathways and genes associated with melanoma metastasis. Intravital imaging revealed heterogeneous cell behaviour in vivo: less than 10% of cells were motile and both singly moving cells and streams of cells were observed. Motile melanoma cells had increased Notch- and SRF-dependent transcription. Subsequent genome-wide analysis identified an overlapping set of genes associated with high Notch and SRF activity. We identified EZH2, a histone methyltransferase in the Polycomb Repressor Complex 2, as a regulator of these genes. Heterogeneity of EZH2 levels is observed in melanoma models and co-ordinated up-regulation of genes positively regulated by EZH2 is associated with melanoma metastasis. EZH2 was also identified as regulating the amelanotic phenotype of motile cells in vivo by suppressing expression of the P-glycoprotein Oca2. Analysis of patient samples confirmed an inverse relationship between EZH2 levels and pigment. EZH2 targeting with siRNA and chemical inhibition reduced invasion in mouse and human melanoma cell lines. The EZH2 regulated SRF target genes KIF2C and KIF22 are required for melanoma cell invasion and important for lung colonisation. We propose that heterogeneity in EZH2 levels leads to heterogeneous expression of a cohort of genes associated with motile behaviour including KIF2C and KIF22. EZH2 dependent increased expression of these genes promotes melanoma cell motility and early steps in metastasis.
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spelling pubmed-43495032016-02-13 Intravital imaging of SRF and Notch signalling identifies a key role for EZH2 in invasive melanoma cells Manning, Cerys S Hooper, Steven Sahai, Erik A Oncogene Article The acquisition of cell motility is an early step in melanoma metastasis. Here we use intravital imaging of signalling reporter cell-lines combined with genome-wide transcriptional analysis to define signalling pathways and genes associated with melanoma metastasis. Intravital imaging revealed heterogeneous cell behaviour in vivo: less than 10% of cells were motile and both singly moving cells and streams of cells were observed. Motile melanoma cells had increased Notch- and SRF-dependent transcription. Subsequent genome-wide analysis identified an overlapping set of genes associated with high Notch and SRF activity. We identified EZH2, a histone methyltransferase in the Polycomb Repressor Complex 2, as a regulator of these genes. Heterogeneity of EZH2 levels is observed in melanoma models and co-ordinated up-regulation of genes positively regulated by EZH2 is associated with melanoma metastasis. EZH2 was also identified as regulating the amelanotic phenotype of motile cells in vivo by suppressing expression of the P-glycoprotein Oca2. Analysis of patient samples confirmed an inverse relationship between EZH2 levels and pigment. EZH2 targeting with siRNA and chemical inhibition reduced invasion in mouse and human melanoma cell lines. The EZH2 regulated SRF target genes KIF2C and KIF22 are required for melanoma cell invasion and important for lung colonisation. We propose that heterogeneity in EZH2 levels leads to heterogeneous expression of a cohort of genes associated with motile behaviour including KIF2C and KIF22. EZH2 dependent increased expression of these genes promotes melanoma cell motility and early steps in metastasis. 2014-11-10 2015-08-13 /pmc/articles/PMC4349503/ /pubmed/25381824 http://dx.doi.org/10.1038/onc.2014.362 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Manning, Cerys S
Hooper, Steven
Sahai, Erik A
Intravital imaging of SRF and Notch signalling identifies a key role for EZH2 in invasive melanoma cells
title Intravital imaging of SRF and Notch signalling identifies a key role for EZH2 in invasive melanoma cells
title_full Intravital imaging of SRF and Notch signalling identifies a key role for EZH2 in invasive melanoma cells
title_fullStr Intravital imaging of SRF and Notch signalling identifies a key role for EZH2 in invasive melanoma cells
title_full_unstemmed Intravital imaging of SRF and Notch signalling identifies a key role for EZH2 in invasive melanoma cells
title_short Intravital imaging of SRF and Notch signalling identifies a key role for EZH2 in invasive melanoma cells
title_sort intravital imaging of srf and notch signalling identifies a key role for ezh2 in invasive melanoma cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4349503/
https://www.ncbi.nlm.nih.gov/pubmed/25381824
http://dx.doi.org/10.1038/onc.2014.362
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