Tumor-associated Endo180 requires stromal-derived LOX to promote metastatic prostate cancer cell migration on human ECM surfaces

被引:0
作者
Matthew P. Caley
Helen King
Neel Shah
Kai Wang
Mercedes Rodriguez-Teja
Julian H. Gronau
Jonathan Waxman
Justin Sturge
机构
[1] Imperial College London,Department of Surgery & Cancer
[2] Queen Mary University of London,Centre for Cutaneous Research, Blizard Institute, Barts & The London School of Medicine & Dentistry
[3] King’s College London,Division of Cancer Studies
[4] Memorial Sloan-Kettering Cancer Center,Human Oncology and Pathogenesis Program
[5] Memorial Sloan-Kettering Cancer Center,Louis V. Gerstner, Jr. Graduate School of Biomedical Sciences
[6] University of Hull,School of Biological, Biomedical & Environmental Sciences
[7] Universidad de la República (UDELAR),Departamento de Genética, Facultad de Medicina
来源
Clinical & Experimental Metastasis | 2016年 / 33卷
关键词
Bone; Cell migration; Collagen; Fibroblast; Osteoblast; Prostate cancer;
D O I
暂无
中图分类号
学科分类号
摘要
The diverse composition and structure of extracellular matrix (ECM) interfaces encountered by tumor cells at secondary tissue sites can influence metastatic progression. Extensive in vitro and in vivo data has confirmed that metastasizing tumor cells can adopt different migratory modes in response to their microenvironment. Here we present a model that uses human stromal cell-derived matrices to demonstrate that plasticity in tumor cell movement is controlled by the tumor-associated collagen receptor Endo180 (CD280, CLEC13E, KIAA0709, MRC2, TEM9, uPARAP) and the crosslinking of collagen fibers by stromal-derived lysyl oxidase (LOX). Human osteoblast-derived and fibroblast-derived ECM supported a rounded ‘amoeboid-like’ mode of cell migration and enhanced Endo180 expression in three prostate cancer cell lines (PC3, VCaP, DU145). Genetic silencing of Endo180 reverted PC3 cells from their rounded mode of migration towards a bipolar ‘mesenchymal-like’ mode of migration and blocked their translocation on human fibroblast-derived and osteoblast-derived matrices. The concomitant decrease in PC3 cell migration and increase in Endo180 expression induced by stromal LOX inhibition indicates that the Endo180-dependent rounded mode of prostate cancer cell migration requires ECM crosslinking. In conclusion, this study introduces a realistic in vitro model for the study of metastatic prostate cancer cell plasticity and pinpoints the cooperation between tumor-associated Endo180 and the stiff microenvironment imposed by stromal-derived LOX as a potential target for limiting metastatic progression in prostate cancer.
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页码:151 / 165
页数:14
相关论文
共 467 条
[1]  
Sturge J(2011)Bone metastasis in prostate cancer: emerging therapeutic strategies Nat Rev Clin Oncol 8 357-368
[2]  
Caley MP(2010)Mineralized human primary osteoblast matrices as a model system to analyse interactions of prostate cancer cells with the bone microenvironment Biomaterials 31 7928-7936
[3]  
Waxman J(2014)A humanized tissue-engineered in vivo model to dissect interactions between human prostate cancer cells and human bone Clin Exp Metastasis 226 775-783
[4]  
Reichert JC(2012)TGFbeta1-Endo180-dependent collagen deposition is dysregulated at the tumour–stromal interface in bone metastasis J Pathol 27 573-585
[5]  
Quent VMC(2015)Three-dimensional in vitro skin and skin cancer models based on human fibroblast-derived matrix Tissue Eng Part C Methods 147 992-1009
[6]  
Burke LJ(2008)Fibroblast-derived 3D matrix differentially regulates the growth and drug-responsiveness of human cancer cells Matrix Biol 13 743-747
[7]  
Stansfield SH(2011)Cancer invasion and the microenvironment: plasticity and reciprocity Cell 3 362-374
[8]  
Clements JA(2012)New dimensions in cell migration Nat Rev Mol Cell Biol 8 22-245
[9]  
Hutmacher DW(2003)Tumour-cell invasion and migration: diversity and escape mechanisms Nat Rev Cancer 20 229-277
[10]  
Hesami P(2010)The role of the tissue microenvironment in the regulation of cancer cell motility and invasion Cell Commun Signal 160 267-5740