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SRF promotes gastric cancer metastasis through stromal fibroblasts in an SDF1-CXCR4-dependent manner

It has been suggested that the overexpression of serum response factor (SRF) in cancer cells may promote cancer metastasis. However, the exact pathway by which SRF promotes metastasis has not been clarified. Here we showed that SRF promotes gastric cancer (GC) metastasis through stromal fibroblasts...

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Autores principales: Qiao, Juanli, Liu, Zhaojun, Yang, Chen, Gu, Liankun, Deng, Dajun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5216783/
https://www.ncbi.nlm.nih.gov/pubmed/27323859
http://dx.doi.org/10.18632/oncotarget.10024
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author Qiao, Juanli
Liu, Zhaojun
Yang, Chen
Gu, Liankun
Deng, Dajun
author_facet Qiao, Juanli
Liu, Zhaojun
Yang, Chen
Gu, Liankun
Deng, Dajun
author_sort Qiao, Juanli
collection PubMed
description It has been suggested that the overexpression of serum response factor (SRF) in cancer cells may promote cancer metastasis. However, the exact pathway by which SRF promotes metastasis has not been clarified. Here we showed that SRF promotes gastric cancer (GC) metastasis through stromal fibroblasts in an SDF1-CXCR4-dependent manner. SRF expression was significantly increased in metastatic GCs compared with the non-metastatic GCs (n=50, p=0.013). Immuno-staining indicated that SRF was primarily expressed in a-smooth muscle actin (αSMA)-expressing periglandular fibroblasts in GCs. The conditioned medium (CM) from CCD18Co fibroblasts stably transfected with the SRF vector (CCD18Co-SRF) significantly enhanced migration of MKN45 gastric cancer cells. In contrast, the CM from CCD18Co fibroblasts, in which SRF was downregulated, inhibited mobility of MKN45 cells. Similar results were observed in cultured BGC823 cells even when they were treated with the NIH3T3-SRF CM. When MKN45 cells and SRF-upregulated or downregulated CCD18Co cells were simultaneously co-injected into the tail veins of NOD-SCID mice, a significant increase or decrease was, respectively, observed in the experimental pulmonary metastasis of cancer cells. Furthermore, SRF overexpression significantly upregulated `SMA and stromal cell derived factor1 (SDF1) expression in these fibroblasts, and an anti-SDF1 antibody or the SDF1 receptor CXCR4-specific inhibitor AMD3100 treatment completely reversed the SRF-enhanced migration of cancer cells. Quantitative RT-PCR demonstrated that the expression level of SRF was positively correlated with that of SDF1 in 92 GC samples (r=0.63, p<0.001). In conclusion, SRF promote GC metastasis by facilitating myofibroblast-cancer cell crosstalk in an SDF1-CXCR4 dependent manner, and maybe a therapeutic target.
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spelling pubmed-52167832017-01-15 SRF promotes gastric cancer metastasis through stromal fibroblasts in an SDF1-CXCR4-dependent manner Qiao, Juanli Liu, Zhaojun Yang, Chen Gu, Liankun Deng, Dajun Oncotarget Research Paper It has been suggested that the overexpression of serum response factor (SRF) in cancer cells may promote cancer metastasis. However, the exact pathway by which SRF promotes metastasis has not been clarified. Here we showed that SRF promotes gastric cancer (GC) metastasis through stromal fibroblasts in an SDF1-CXCR4-dependent manner. SRF expression was significantly increased in metastatic GCs compared with the non-metastatic GCs (n=50, p=0.013). Immuno-staining indicated that SRF was primarily expressed in a-smooth muscle actin (αSMA)-expressing periglandular fibroblasts in GCs. The conditioned medium (CM) from CCD18Co fibroblasts stably transfected with the SRF vector (CCD18Co-SRF) significantly enhanced migration of MKN45 gastric cancer cells. In contrast, the CM from CCD18Co fibroblasts, in which SRF was downregulated, inhibited mobility of MKN45 cells. Similar results were observed in cultured BGC823 cells even when they were treated with the NIH3T3-SRF CM. When MKN45 cells and SRF-upregulated or downregulated CCD18Co cells were simultaneously co-injected into the tail veins of NOD-SCID mice, a significant increase or decrease was, respectively, observed in the experimental pulmonary metastasis of cancer cells. Furthermore, SRF overexpression significantly upregulated `SMA and stromal cell derived factor1 (SDF1) expression in these fibroblasts, and an anti-SDF1 antibody or the SDF1 receptor CXCR4-specific inhibitor AMD3100 treatment completely reversed the SRF-enhanced migration of cancer cells. Quantitative RT-PCR demonstrated that the expression level of SRF was positively correlated with that of SDF1 in 92 GC samples (r=0.63, p<0.001). In conclusion, SRF promote GC metastasis by facilitating myofibroblast-cancer cell crosstalk in an SDF1-CXCR4 dependent manner, and maybe a therapeutic target. Impact Journals LLC 2016-06-14 /pmc/articles/PMC5216783/ /pubmed/27323859 http://dx.doi.org/10.18632/oncotarget.10024 Text en Copyright: © 2016 Qiao 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
Qiao, Juanli
Liu, Zhaojun
Yang, Chen
Gu, Liankun
Deng, Dajun
SRF promotes gastric cancer metastasis through stromal fibroblasts in an SDF1-CXCR4-dependent manner
title SRF promotes gastric cancer metastasis through stromal fibroblasts in an SDF1-CXCR4-dependent manner
title_full SRF promotes gastric cancer metastasis through stromal fibroblasts in an SDF1-CXCR4-dependent manner
title_fullStr SRF promotes gastric cancer metastasis through stromal fibroblasts in an SDF1-CXCR4-dependent manner
title_full_unstemmed SRF promotes gastric cancer metastasis through stromal fibroblasts in an SDF1-CXCR4-dependent manner
title_short SRF promotes gastric cancer metastasis through stromal fibroblasts in an SDF1-CXCR4-dependent manner
title_sort srf promotes gastric cancer metastasis through stromal fibroblasts in an sdf1-cxcr4-dependent manner
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5216783/
https://www.ncbi.nlm.nih.gov/pubmed/27323859
http://dx.doi.org/10.18632/oncotarget.10024
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