Identification of stromally expressed molecules in the prostate by tag-profiling of cancer-associated fibroblasts, normal fibroblasts and fetal prostate

被引:102
作者
Orr, B. [1 ]
Riddick, A. C. P. [2 ]
Stewart, G. D. [2 ]
Anderson, R. A. [3 ]
Franco, O. E. [4 ,5 ]
Hayward, S. W. [4 ,5 ]
Thomson, A. A. [1 ]
机构
[1] Queens Med Res Inst, Med Res Council Human Reprod Sci Unit, Edinburgh EH16 4TJ, Midlothian, Scotland
[2] Western Gen Hosp, Dept Urol, Edinburgh EH4 2XU, Midlothian, Scotland
[3] Univ Edinburgh, Reprod & Dev Sci Sect, Queens Med Res Inst, Edinburgh, Midlothian, Scotland
[4] Vanderbilt Univ, Med Ctr, Dept Urol Surg, Nashville, TN USA
[5] Vanderbilt Univ, Med Ctr, Dept Canc Biol, Nashville, TN USA
关键词
prostate; stromal/epithelial interactions; cancer-associated fibroblasts; cancer microenvironment; Tag profiling; GENE-EXPRESSION; BREAST-CANCER; TUMOR MICROENVIRONMENT; REACTIVE STROMA; GROWTH-FACTOR; CELLS; CARCINOGENESIS; PROGRESSION; MESENCHYME; BETA;
D O I
10.1038/onc.2011.312
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
070307 [化学生物学]; 071010 [生物化学与分子生物学];
摘要
The stromal microenvironment has key roles in prostate development and cancer, and cancer-associated fibroblasts (CAFs) stimulate tumourigenesis via several mechanisms including the expression of pro-tumourigenic factors. Mesenchyme (embryonic stroma) controls prostate organogenesis, and in some circumstances can re-differentiate prostate tumours. We have applied next-generation Tag profiling to fetal human prostate, normal human prostate fibroblasts (NPFs) and CAFs to identify molecules expressed in prostatic stroma. Comparison of gene expression profiles of a patient-matched pair of NPFs vs CAFs identified 671 transcripts that were enriched in CAFs and 356 transcripts whose levels were decreased, relative to NPFs. Gene ontology analysis revealed that CAF-enriched transcripts were associated with prostate morphogenesis and CAF-depleted transcripts were associated with cell cycle. We selected mRNAs to follow-up by comparison of our data sets with published prostate cancer fibroblast microarray profiles as well as by focusing on transcripts encoding secreted and peripheral membrane proteins, as well as mesenchymal transcripts identified in a previous study from our group. We confirmed differential transcript expression between CAFs and NPFs using QrtPCR, and defined protein localization using immunohistochemistry in fetal prostate, adult prostate and prostate cancer. We demonstrated that ASPN, CAV1, CFH, CTSK, DCN, FBLN1, FHL1, FN, NKTR, OGN, PARVA, S100A6, SPARC, STC1 and ZEB1 proteins showed specific and varied expression patterns in fetal human prostate and in prostate cancer. Colocalization studies suggested that some stromally expressed molecules were also expressed in subsets of tumour epithelia, indicating that they may be novel markers of EMT. Additionally, two molecules (ASPN and STC1) marked overlapping and distinct subregions of stroma associated with tumour epithelia and may represent new CAF markers. Oncogene (2012) 31, 1130-1142; doi:10.1038/onc.2011.312; published online 1 August 2011
引用
收藏
页码:1130 / 1142
页数:13
相关论文
共 43 条
[1]
Molecular characterization of the tumor microenvironment in breast cancer [J].
Allinen, M ;
Beroukhim, R ;
Cai, L ;
Brennan, C ;
Lahti-Domenici, J ;
Huang, HY ;
Porter, D ;
Hu, M ;
Chin, L ;
Richardson, A ;
Schnitt, S ;
Sellers, WR ;
Polyak, K .
CANCER CELL, 2004, 6 (01) :17-32
[2]
Cross-talk between paracrine-acting cytokine and chemokine pathways promotes malignancy in benign human prostatic [J].
Ao, Mingfang ;
Franco, Omar E. ;
Park, Dean ;
Raman, Dayanidhi ;
Williams, Karin ;
Hayward, Simon W. .
CANCER RESEARCH, 2007, 67 (09) :4244-4253
[3]
CXCL14 is an autocrine growth factor for fibroblasts and acts as a multi-modal stimulator of prostate tumor growth [J].
Augsten, Martin ;
Hagglof, Christina ;
Olsson, Eleonor ;
Stolz, Claudia ;
Tsagozis, Panagiotis ;
Levchenko, Tetyana ;
Frederick, Mitchell J. ;
Borg, Ake ;
Micke, Patrick ;
Egevad, Lars ;
Ostman, Arne .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2009, 106 (09) :3414-3419
[4]
Ayala G, 2003, CLIN CANCER RES, V9, P4792
[5]
Stromal fibroblasts in cancer initiation and progression [J].
Bhowmick, NA ;
Neilson, EG ;
Moses, HL .
NATURE, 2004, 432 (7015) :332-337
[6]
Role of stroma in carcinogenesis of the prostate [J].
Cunha, GR ;
Hayward, SW ;
Wang, YZ .
DIFFERENTIATION, 2002, 70 (9-10) :473-485
[7]
Global Gene Expression Analysis of Reactive Stroma in Prostate Cancer [J].
Dakhova, Olga ;
Ozen, Mustafa ;
Creighton, Chad J. ;
Li, Rile ;
Ayala, Gustavo ;
Rowley, David ;
Ittmann, Michael .
CLINICAL CANCER RESEARCH, 2009, 15 (12) :3979-3989
[8]
An absence of stromal caveolin-1 is associated with advanced prostate cancer, metastatic disease and epithelial Akt activation [J].
Di Vizio, Dolores ;
Morello, Matteo ;
Sotgia, Federica ;
Pestell, Richard G. ;
Freeman, Michael R. ;
Lisanti, Michael P. .
CELL CYCLE, 2009, 8 (15) :2420-2424
[9]
Stromal gene expression predicts clinical outcome in breast cancer [J].
Finak, Greg ;
Bertos, Nicholas ;
Pepin, Francois ;
Sadekova, Svetlana ;
Souleimanova, Margarita ;
Zhao, Hong ;
Chen, Haiying ;
Omeroglu, Gulbeyaz ;
Meterissian, Sarkis ;
Omeroglu, Atilla ;
Hallett, Michael ;
Park, Morag .
NATURE MEDICINE, 2008, 14 (05) :518-527
[10]
Altered TGF-β Signaling in a Subpopulation of Human Stromal Cells Promotes Prostatic Carcinogenesis [J].
Franco, Omar E. ;
Jiang, Ming ;
Strand, Douglas W. ;
Peacock, James ;
Fernandez, Suzanne ;
Jackson, Roger S., II ;
Revelo, Monica P. ;
Bhowmick, Neil A. ;
Hayward, Simon W. .
CANCER RESEARCH, 2011, 71 (04) :1272-1281