CCL5 activation of CCR5 regulates cell metabolism to enhance proliferation of breast cancer cells

In earlier studies, we showed that CCL5 enhances proliferation and survival of MCF-7 breast cancer cells in an mTOR-dependent manner and we provided evidence that, for T cells, CCL5 activation of CCR5 results in increased glycolysis and enhanced ATP production. Increases in metabolic activity of can...

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Main Authors: Darrin Gao, Ramtin Rahbar, Eleanor N. Fish
Format: Article
Language:English
Published: The Royal Society 2016-01-01
Series:Open Biology
Subjects:
Online Access:https://royalsocietypublishing.org/doi/pdf/10.1098/rsob.160122
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spelling doaj-477d0390d4e248c6850284b8be7ab2d22020-11-25T03:28:26ZengThe Royal SocietyOpen Biology2046-24412016-01-016610.1098/rsob.160122160122CCL5 activation of CCR5 regulates cell metabolism to enhance proliferation of breast cancer cellsDarrin GaoRamtin RahbarEleanor N. FishIn earlier studies, we showed that CCL5 enhances proliferation and survival of MCF-7 breast cancer cells in an mTOR-dependent manner and we provided evidence that, for T cells, CCL5 activation of CCR5 results in increased glycolysis and enhanced ATP production. Increases in metabolic activity of cancer cells, specifically increased glycolytic activity and increased expression of glucose transporters, are associated with tumour progression. In this report, we provide evidence that CCL5 enhances the proliferation of human breast cancer cell lines (MDA-MB-231, MCF-7) and mouse mammary tumour cells (MMTV-PyMT), mediated by CCR5 activation. Concomitant with enhanced proliferation we show that CCL5 increases cell surface expression of the glucose transporter GLUT1, and increases glucose uptake and ATP production by these cells. Blocking CCL5-inducible glucose uptake abrogates the enhanced proliferation induced by CCL5. We provide evidence that increased glucose uptake is associated with enhanced glycolysis, as measured by extracellular acidification. Moreover, CCL5 enhances the invasive capacity of these breast cancer cells. Using metabolomics, we demonstrate that the metabolic signature of CCL5-treated primary mouse mammary tumour cells reflects increased anabolic metabolism. The implications are that CCL5–CCR5 interactions in the tumour microenvironment regulate metabolic events, specifically glycolysis, to promote tumour proliferation and invasion.https://royalsocietypublishing.org/doi/pdf/10.1098/rsob.160122breast cancerccl5ccr5glycolysisanabolic metabolism
collection DOAJ
language English
format Article
sources DOAJ
author Darrin Gao
Ramtin Rahbar
Eleanor N. Fish
spellingShingle Darrin Gao
Ramtin Rahbar
Eleanor N. Fish
CCL5 activation of CCR5 regulates cell metabolism to enhance proliferation of breast cancer cells
Open Biology
breast cancer
ccl5
ccr5
glycolysis
anabolic metabolism
author_facet Darrin Gao
Ramtin Rahbar
Eleanor N. Fish
author_sort Darrin Gao
title CCL5 activation of CCR5 regulates cell metabolism to enhance proliferation of breast cancer cells
title_short CCL5 activation of CCR5 regulates cell metabolism to enhance proliferation of breast cancer cells
title_full CCL5 activation of CCR5 regulates cell metabolism to enhance proliferation of breast cancer cells
title_fullStr CCL5 activation of CCR5 regulates cell metabolism to enhance proliferation of breast cancer cells
title_full_unstemmed CCL5 activation of CCR5 regulates cell metabolism to enhance proliferation of breast cancer cells
title_sort ccl5 activation of ccr5 regulates cell metabolism to enhance proliferation of breast cancer cells
publisher The Royal Society
series Open Biology
issn 2046-2441
publishDate 2016-01-01
description In earlier studies, we showed that CCL5 enhances proliferation and survival of MCF-7 breast cancer cells in an mTOR-dependent manner and we provided evidence that, for T cells, CCL5 activation of CCR5 results in increased glycolysis and enhanced ATP production. Increases in metabolic activity of cancer cells, specifically increased glycolytic activity and increased expression of glucose transporters, are associated with tumour progression. In this report, we provide evidence that CCL5 enhances the proliferation of human breast cancer cell lines (MDA-MB-231, MCF-7) and mouse mammary tumour cells (MMTV-PyMT), mediated by CCR5 activation. Concomitant with enhanced proliferation we show that CCL5 increases cell surface expression of the glucose transporter GLUT1, and increases glucose uptake and ATP production by these cells. Blocking CCL5-inducible glucose uptake abrogates the enhanced proliferation induced by CCL5. We provide evidence that increased glucose uptake is associated with enhanced glycolysis, as measured by extracellular acidification. Moreover, CCL5 enhances the invasive capacity of these breast cancer cells. Using metabolomics, we demonstrate that the metabolic signature of CCL5-treated primary mouse mammary tumour cells reflects increased anabolic metabolism. The implications are that CCL5–CCR5 interactions in the tumour microenvironment regulate metabolic events, specifically glycolysis, to promote tumour proliferation and invasion.
topic breast cancer
ccl5
ccr5
glycolysis
anabolic metabolism
url https://royalsocietypublishing.org/doi/pdf/10.1098/rsob.160122
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