Tumor-secreted PAI-1 promotes breast cancer metastasis via the induction of adipocyte-derived collagen remodeling

Abstract Background Breast cancer cells recruit surrounding stromal cells, such as cancer-associated fibroblasts (CAFs), to remodel collagen and promote tumor metastasis. Adipocytes are the most abundant stromal partners in breast tissue, local invasion of breast cancer leads to the proximity of can...

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Main Authors: Xiaohui Wei, Sijing Li, Jinyong He, Hongzhi Du, Yang Liu, Wei Yu, Haolin Hu, Lifei Han, Chenfei Wang, Hongyang Li, Xin Shi, Meixiao Zhan, Ligong Lu, Shengtao Yuan, Li Sun
Format: Article
Language:English
Published: BMC 2019-06-01
Series:Cell Communication and Signaling
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12964-019-0373-z
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record_format Article
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language English
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sources DOAJ
author Xiaohui Wei
Sijing Li
Jinyong He
Hongzhi Du
Yang Liu
Wei Yu
Haolin Hu
Lifei Han
Chenfei Wang
Hongyang Li
Xin Shi
Meixiao Zhan
Ligong Lu
Shengtao Yuan
Li Sun
spellingShingle Xiaohui Wei
Sijing Li
Jinyong He
Hongzhi Du
Yang Liu
Wei Yu
Haolin Hu
Lifei Han
Chenfei Wang
Hongyang Li
Xin Shi
Meixiao Zhan
Ligong Lu
Shengtao Yuan
Li Sun
Tumor-secreted PAI-1 promotes breast cancer metastasis via the induction of adipocyte-derived collagen remodeling
Cell Communication and Signaling
Breast Cancer
PAI-1
PLOD2
Microenvironment
Metastasis
Collagen
author_facet Xiaohui Wei
Sijing Li
Jinyong He
Hongzhi Du
Yang Liu
Wei Yu
Haolin Hu
Lifei Han
Chenfei Wang
Hongyang Li
Xin Shi
Meixiao Zhan
Ligong Lu
Shengtao Yuan
Li Sun
author_sort Xiaohui Wei
title Tumor-secreted PAI-1 promotes breast cancer metastasis via the induction of adipocyte-derived collagen remodeling
title_short Tumor-secreted PAI-1 promotes breast cancer metastasis via the induction of adipocyte-derived collagen remodeling
title_full Tumor-secreted PAI-1 promotes breast cancer metastasis via the induction of adipocyte-derived collagen remodeling
title_fullStr Tumor-secreted PAI-1 promotes breast cancer metastasis via the induction of adipocyte-derived collagen remodeling
title_full_unstemmed Tumor-secreted PAI-1 promotes breast cancer metastasis via the induction of adipocyte-derived collagen remodeling
title_sort tumor-secreted pai-1 promotes breast cancer metastasis via the induction of adipocyte-derived collagen remodeling
publisher BMC
series Cell Communication and Signaling
issn 1478-811X
publishDate 2019-06-01
description Abstract Background Breast cancer cells recruit surrounding stromal cells, such as cancer-associated fibroblasts (CAFs), to remodel collagen and promote tumor metastasis. Adipocytes are the most abundant stromal partners in breast tissue, local invasion of breast cancer leads to the proximity of cancer cells and adipocytes, which respond to generate cancer-associated adipocytes (CAAs). These cells exhibit enhanced secretion of extracellular matrix related proteins, including collagens. However, the role of adipocyte-derived collagen on breast cancer progression still remains unclear. Methods Adipocytes were cocultured with breast cancer cells for 3D collagen invasion and collagen organization exploration. Breast cancer cells and adipose tissue co- implanted mouse model, clinical breast cancer samples analysis were used to study the crosstalk between adipose and breast cancer cells in vivo. A combination of proteomics, enzyme-linked immunosorbent assay, loss of function assay, qPCR, western blot, database analysis and chromatin immunoprecipitation assays were performed to study the mechanism mediated the activation of PLOD2 in adipocytes. Results It was found that CAAs remodeled collagen alignment during crosstalk with breast cancer cells in vitro and in vivo, which further promoted breast cancer metastasis. Tumor-derived PAI-1 was required to activate the expression of the intracellular enzyme procollagen-lysine, 2-oxoglutarate 5-dioxygenase 2 (PLOD2) in CAAs. Pharmacologic blockade of PAI-1 or PLOD2 disrupted the collagen reorganization in CAAs. Mechanistically, it was observed that PI3K/AKT pathway was activated in adipocytes upon co-culturing with breast cancer cells or treatment with recombinant PAI-1, which could promote the translocation of transcription factor FOXP1 into the nucleus and further enhanced the promoter activity of PLOD2 in CAAs. In addition, collagen reorganization at the tumor-adipose periphery, as well as the positive relevance between PAI-1 and PLOD2 in invasive breast carcinoma were confirmed in clinical specimens of breast cancer. Conclusion In summary, our findings revealed a new stromal collagen network that favors tumor invasion and metastasis establish between breast cancer cells and surrounding adipocytes at the tumor invasive front, and identified PLOD2 as a therapeutic target for metastatic breast cancer treatment.
topic Breast Cancer
PAI-1
PLOD2
Microenvironment
Metastasis
Collagen
url http://link.springer.com/article/10.1186/s12964-019-0373-z
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spelling doaj-5258b3b11d7644ab950a61b3b648aeac2020-11-25T02:46:59ZengBMCCell Communication and Signaling1478-811X2019-06-0117111810.1186/s12964-019-0373-zTumor-secreted PAI-1 promotes breast cancer metastasis via the induction of adipocyte-derived collagen remodelingXiaohui Wei0Sijing Li1Jinyong He2Hongzhi Du3Yang Liu4Wei Yu5Haolin Hu6Lifei Han7Chenfei Wang8Hongyang Li9Xin Shi10Meixiao Zhan11Ligong Lu12Shengtao Yuan13Li Sun14Jiangsu Center for Pharmacodynamics Research and Evaluation, China Pharmaceutical UniversityJiangsu Key laboratory of Drug Screening, China Pharmaceutical UniversityJiangsu Key laboratory of Drug Screening, China Pharmaceutical UniversitySchool of Pharmacy, Hubei University of Chinese MedicineJiangsu Center for Pharmacodynamics Research and Evaluation, China Pharmaceutical UniversityJiangsu Center for Pharmacodynamics Research and Evaluation, China Pharmaceutical UniversityBreast Disease Center, Zhong-Da Hospital, Southeast UniversityBreast Disease Center, Zhong-Da Hospital, Southeast UniversityBreast Disease Center, Zhong-Da Hospital, Southeast UniversityInstitute of Dermatology, Chinese Academy of Medical Sciences, Peking Union Medical CollegeDepartment of General Surgery, Zhong-Da Hospital, Southeast UniversityZhuhai Interventional Medical Center, Zhuhai Precision Medical Center, Zhuhai People’s Hospital, Zhuhai Hospital of Jinan UniversityZhuhai Interventional Medical Center, Zhuhai Precision Medical Center, Zhuhai People’s Hospital, Zhuhai Hospital of Jinan UniversityJiangsu Center for Pharmacodynamics Research and Evaluation, China Pharmaceutical UniversityJiangsu Key laboratory of Drug Screening, China Pharmaceutical UniversityAbstract Background Breast cancer cells recruit surrounding stromal cells, such as cancer-associated fibroblasts (CAFs), to remodel collagen and promote tumor metastasis. Adipocytes are the most abundant stromal partners in breast tissue, local invasion of breast cancer leads to the proximity of cancer cells and adipocytes, which respond to generate cancer-associated adipocytes (CAAs). These cells exhibit enhanced secretion of extracellular matrix related proteins, including collagens. However, the role of adipocyte-derived collagen on breast cancer progression still remains unclear. Methods Adipocytes were cocultured with breast cancer cells for 3D collagen invasion and collagen organization exploration. Breast cancer cells and adipose tissue co- implanted mouse model, clinical breast cancer samples analysis were used to study the crosstalk between adipose and breast cancer cells in vivo. A combination of proteomics, enzyme-linked immunosorbent assay, loss of function assay, qPCR, western blot, database analysis and chromatin immunoprecipitation assays were performed to study the mechanism mediated the activation of PLOD2 in adipocytes. Results It was found that CAAs remodeled collagen alignment during crosstalk with breast cancer cells in vitro and in vivo, which further promoted breast cancer metastasis. Tumor-derived PAI-1 was required to activate the expression of the intracellular enzyme procollagen-lysine, 2-oxoglutarate 5-dioxygenase 2 (PLOD2) in CAAs. Pharmacologic blockade of PAI-1 or PLOD2 disrupted the collagen reorganization in CAAs. Mechanistically, it was observed that PI3K/AKT pathway was activated in adipocytes upon co-culturing with breast cancer cells or treatment with recombinant PAI-1, which could promote the translocation of transcription factor FOXP1 into the nucleus and further enhanced the promoter activity of PLOD2 in CAAs. In addition, collagen reorganization at the tumor-adipose periphery, as well as the positive relevance between PAI-1 and PLOD2 in invasive breast carcinoma were confirmed in clinical specimens of breast cancer. Conclusion In summary, our findings revealed a new stromal collagen network that favors tumor invasion and metastasis establish between breast cancer cells and surrounding adipocytes at the tumor invasive front, and identified PLOD2 as a therapeutic target for metastatic breast cancer treatment.http://link.springer.com/article/10.1186/s12964-019-0373-zBreast CancerPAI-1PLOD2MicroenvironmentMetastasisCollagen