The hypoxia conditioned mesenchymal stem cells promote hepatocellular carcinoma progression through YAP mediated lipogenesis reprogramming

Abstract Background Tumor microenvironment (TME) plays a very important role in cancer progression. The mesenchymal stem cells (MSC), a major compartment of TME, have been shown to promote hepatocellular carcinoma (HCC) progression and metastasis. As hypoxia is a common feature of TME, it is essenti...

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Main Authors: Yang Liu, Haozhen Ren, Yuan Zhou, Longcheng Shang, Yuheng Zhang, Faji Yang, Xiaolei Shi
Format: Article
Language:English
Published: BMC 2019-05-01
Series:Journal of Experimental & Clinical Cancer Research
Subjects:
YAP
Online Access:http://link.springer.com/article/10.1186/s13046-019-1219-7
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spelling doaj-2d07fd6cc66f4610bbff3f03263376262020-11-25T03:26:35ZengBMCJournal of Experimental & Clinical Cancer Research1756-99662019-05-0138111410.1186/s13046-019-1219-7The hypoxia conditioned mesenchymal stem cells promote hepatocellular carcinoma progression through YAP mediated lipogenesis reprogrammingYang Liu0Haozhen Ren1Yuan Zhou2Longcheng Shang3Yuheng Zhang4Faji Yang5Xiaolei Shi6Department of Hepatobiliary Surgery, The Affiliated Drum Tower Hospital of Nanjing University Medical SchoolDepartment of Hepatobiliary Surgery, The Affiliated Drum Tower Hospital of Nanjing University Medical SchoolDepartment of Hepatobiliary Surgery, The Affiliated Drum Tower Hospital of Nanjing University Medical SchoolDepartment of Hepatobiliary Surgery, The Affiliated Drum Tower Hospital of Nanjing University Medical SchoolDepartment of Hepatobiliary Surgery, The Affiliated Drum Tower Hospital of Nanjing University Medical SchoolDepartment of Hepatobiliary Surgery, The Affiliated Drum Tower Hospital of Nanjing University Medical SchoolDepartment of Hepatobiliary Surgery, The Affiliated Drum Tower Hospital of Nanjing University Medical SchoolAbstract Background Tumor microenvironment (TME) plays a very important role in cancer progression. The mesenchymal stem cells (MSC), a major compartment of TME, have been shown to promote hepatocellular carcinoma (HCC) progression and metastasis. As hypoxia is a common feature of TME, it is essential to investigate the effects of hypoxia on MSC during HCC progression. Methods The effects of hypoxia on MSC mediated cell proliferation and HCC progression were measured by cell counting kit-8 (CCK-8) assay, Edu incorporation assay and xenograft model. The role of cyclooxygenase 2 (COX2) during this process was evaluated via lentivirus mediated COX2 knockdown in MSC. We also assessed the levels and localization of yes-associated protein (YAP) in HCC cells by immunofluorescence, western blot and real-time PCR, in order to detect the alterations of Hippo pathway. The changes in lipogenesis was examined by triacylglycerol (TG) levels, BODIPY staining of neutral lipid, and lipogenic enzyme levels. The alterations in AKT/mTOR/SREBP1 pathway were measured by western blot. In addition, to evaluate the role of prostaglandin E receptor 4 (EP4) in MSC mediated cell proliferation under hypoxia, we manipulated the levels of EP4 in HCC cells via small interfering RNA (siRNA), EP4 antagonist or agonist. Results We found that MSC under hypoxia condition (hypo-MSC) could promote proliferation of HCC cell lines and tumor growth in xenograft model. Hypoxia increased COX2 expression in MSC and promoted the secretion of prostaglandin E2 (PGE2), which then activated YAP in HCC cells and led to increased cell proliferation. Meanwhile, YAP activation enhanced lipogenesis in HCC cell lines by upregulating AKT/mTOR/SREBP1 pathway. Knockdown or overexpression of YAP significantly decreased or increased lipogenesis. Finally, EP4 was found to mediate the effects of hypo-MSC on YAP activation and lipogenesis of HCC cells. Conclusions Hypo-MSC can promote HCC progression by activating YAP and the YAP mediated lipogenesis through COX2/PGE2/EP4 axis. The communication between MSC and cancer cells may be a potential therapeutic target for inhibiting cancer growth.http://link.springer.com/article/10.1186/s13046-019-1219-7HypoxiaMesenchymal stem cellsYAPLipogenesis
collection DOAJ
language English
format Article
sources DOAJ
author Yang Liu
Haozhen Ren
Yuan Zhou
Longcheng Shang
Yuheng Zhang
Faji Yang
Xiaolei Shi
spellingShingle Yang Liu
Haozhen Ren
Yuan Zhou
Longcheng Shang
Yuheng Zhang
Faji Yang
Xiaolei Shi
The hypoxia conditioned mesenchymal stem cells promote hepatocellular carcinoma progression through YAP mediated lipogenesis reprogramming
Journal of Experimental & Clinical Cancer Research
Hypoxia
Mesenchymal stem cells
YAP
Lipogenesis
author_facet Yang Liu
Haozhen Ren
Yuan Zhou
Longcheng Shang
Yuheng Zhang
Faji Yang
Xiaolei Shi
author_sort Yang Liu
title The hypoxia conditioned mesenchymal stem cells promote hepatocellular carcinoma progression through YAP mediated lipogenesis reprogramming
title_short The hypoxia conditioned mesenchymal stem cells promote hepatocellular carcinoma progression through YAP mediated lipogenesis reprogramming
title_full The hypoxia conditioned mesenchymal stem cells promote hepatocellular carcinoma progression through YAP mediated lipogenesis reprogramming
title_fullStr The hypoxia conditioned mesenchymal stem cells promote hepatocellular carcinoma progression through YAP mediated lipogenesis reprogramming
title_full_unstemmed The hypoxia conditioned mesenchymal stem cells promote hepatocellular carcinoma progression through YAP mediated lipogenesis reprogramming
title_sort hypoxia conditioned mesenchymal stem cells promote hepatocellular carcinoma progression through yap mediated lipogenesis reprogramming
publisher BMC
series Journal of Experimental & Clinical Cancer Research
issn 1756-9966
publishDate 2019-05-01
description Abstract Background Tumor microenvironment (TME) plays a very important role in cancer progression. The mesenchymal stem cells (MSC), a major compartment of TME, have been shown to promote hepatocellular carcinoma (HCC) progression and metastasis. As hypoxia is a common feature of TME, it is essential to investigate the effects of hypoxia on MSC during HCC progression. Methods The effects of hypoxia on MSC mediated cell proliferation and HCC progression were measured by cell counting kit-8 (CCK-8) assay, Edu incorporation assay and xenograft model. The role of cyclooxygenase 2 (COX2) during this process was evaluated via lentivirus mediated COX2 knockdown in MSC. We also assessed the levels and localization of yes-associated protein (YAP) in HCC cells by immunofluorescence, western blot and real-time PCR, in order to detect the alterations of Hippo pathway. The changes in lipogenesis was examined by triacylglycerol (TG) levels, BODIPY staining of neutral lipid, and lipogenic enzyme levels. The alterations in AKT/mTOR/SREBP1 pathway were measured by western blot. In addition, to evaluate the role of prostaglandin E receptor 4 (EP4) in MSC mediated cell proliferation under hypoxia, we manipulated the levels of EP4 in HCC cells via small interfering RNA (siRNA), EP4 antagonist or agonist. Results We found that MSC under hypoxia condition (hypo-MSC) could promote proliferation of HCC cell lines and tumor growth in xenograft model. Hypoxia increased COX2 expression in MSC and promoted the secretion of prostaglandin E2 (PGE2), which then activated YAP in HCC cells and led to increased cell proliferation. Meanwhile, YAP activation enhanced lipogenesis in HCC cell lines by upregulating AKT/mTOR/SREBP1 pathway. Knockdown or overexpression of YAP significantly decreased or increased lipogenesis. Finally, EP4 was found to mediate the effects of hypo-MSC on YAP activation and lipogenesis of HCC cells. Conclusions Hypo-MSC can promote HCC progression by activating YAP and the YAP mediated lipogenesis through COX2/PGE2/EP4 axis. The communication between MSC and cancer cells may be a potential therapeutic target for inhibiting cancer growth.
topic Hypoxia
Mesenchymal stem cells
YAP
Lipogenesis
url http://link.springer.com/article/10.1186/s13046-019-1219-7
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