Proteomic characterization of human multiple myeloma bone marrow extracellular matrix

被引:68
作者
Glavey, S. V. [1 ,2 ]
Naba, A. [3 ,11 ]
Manier, S. [1 ]
Clauser, K. [4 ]
Tahri, S. [1 ]
Park, J. [1 ]
Reagan, M. R. [1 ]
Moschetta, M. [1 ]
Mishima, Y. [1 ]
Gambella, M. [5 ]
Rocci, A. [6 ,7 ]
Sacco, A. [1 ,8 ]
O'Dwyer, M. E. [2 ]
Asara, J. M. [9 ]
Palumbo, A. [5 ]
Roccaro, A. M. [1 ,8 ]
Hynes, R. O. [3 ,10 ]
Ghobrial, I. M. [1 ]
机构
[1] Harvard Med Sch, Dana Farber Canc Inst, Boston, MA USA
[2] Natl Univ Ireland, Dept Hematol, Galway, Ireland
[3] MIT, Koch Inst Integrat Canc Res, Cambridge, MA 02139 USA
[4] Broad Inst, Protem Platform, Cambridge, MA USA
[5] Univ Turin, Azienda Osped Univ Citta Salute & Sci Torino, Turin, Italy
[6] Univ Manchester, Manchester Royal Infirm, Manchester, Lancs, England
[7] Univ Manchester, Cent Manchester Univ Hosp NHS Fdn, Manchester, Lancs, England
[8] SST Spedali Civili, Dept Med Oncol, CREA Lab, Brescia, Italy
[9] Harvard Med Sch, Beth Israel Deaconess Med Ctr, Boston, MA USA
[10] MIT, Howard Hughes Med Inst, Cambridge, MA USA
[11] Univ Illinois, Dept Physiol & Biophys, Chicago, IL 60680 USA
关键词
STROMAL FIBROBLASTS; EXPRESSION; METASTASIS; MICROENVIRONMENT; PROGRESSION; ANGIOGENESIS; SIGNATURE; THERAPY; GROWTH;
D O I
10.1038/leu.2017.102
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
The extracellular matrix (ECM) is a major component of the tumor microenvironment, contributing to the regulation of cell survival, proliferation, differentiation and metastasis. In multiple myeloma (MM), interactions between MM cells and the bone marrow (BM) microenvironment, including the BM ECM, are critical to the pathogenesis of the disease and the development of drug resistance. Nevertheless, composition of the ECM in MM and its role in supporting MM pathogenesis has not been reported. We have applied a novel proteomic-based strategy and defined the BM ECM composition in patients with monoclonal gammopathy of undetermined significance (MGUS), newly diagnosed and relapsed MM compared with healthy donor-derived BM ECM. In this study, we show that the tumor ECM is remodeled at the mRNA and protein levels in MGUS and MM to allow development of a permissive microenvironment. We further demonstrate that two ECM-affiliated proteins, ANXA2 and LGALS1, are more abundant in MM and high expression is associated with a decreased overall survival. This study points to the importance of ECM remodeling in MM and provides a novel proteomic pipeline for interrogating the role of the ECM in cancers with BM tropism.
引用
收藏
页码:2426 / 2434
页数:9
相关论文
共 35 条
[1]   Osteoclasts promote immune suppressive microenvironment in multiple myeloma: therapeutic implication [J].
An, Gang ;
Acharya, Chirag ;
Feng, Xiaoyan ;
Wen, Kenneth ;
Zhong, Mike ;
Zhang, Li ;
Munshi, Nikhil C. ;
Qiu, Lugui ;
Tai, Yu-Tzu ;
Anderson, Kenneth C. .
BLOOD, 2016, 128 (12) :1590-1603
[2]   The Cancer Cell Line Encyclopedia enables predictive modelling of anticancer drug sensitivity [J].
Barretina, Jordi ;
Caponigro, Giordano ;
Stransky, Nicolas ;
Venkatesan, Kavitha ;
Margolin, Adam A. ;
Kim, Sungjoon ;
Wilson, Christopher J. ;
Lehar, Joseph ;
Kryukov, Gregory V. ;
Sonkin, Dmitriy ;
Reddy, Anupama ;
Liu, Manway ;
Murray, Lauren ;
Berger, Michael F. ;
Monahan, John E. ;
Morais, Paula ;
Meltzer, Jodi ;
Korejwa, Adam ;
Jane-Valbuena, Judit ;
Mapa, Felipa A. ;
Thibault, Joseph ;
Bric-Furlong, Eva ;
Raman, Pichai ;
Shipway, Aaron ;
Engels, Ingo H. ;
Cheng, Jill ;
Yu, Guoying K. ;
Yu, Jianjun ;
Aspesi, Peter, Jr. ;
de Silva, Melanie ;
Jagtap, Kalpana ;
Jones, Michael D. ;
Wang, Li ;
Hatton, Charles ;
Palescandolo, Emanuele ;
Gupta, Supriya ;
Mahan, Scott ;
Sougnez, Carrie ;
Onofrio, Robert C. ;
Liefeld, Ted ;
MacConaill, Laura ;
Winckler, Wendy ;
Reich, Michael ;
Li, Nanxin ;
Mesirov, Jill P. ;
Gabriel, Stacey B. ;
Getz, Gad ;
Ardlie, Kristin ;
Chan, Vivien ;
Myer, Vic E. .
NATURE, 2012, 483 (7391) :603-607
[3]   Extracellular matrix signature identifies breast cancer subgroups with different clinical outcome [J].
Bergamaschi, A. ;
Tagliabue, E. ;
Sorlie, T. ;
Naurne, B. ;
Triulzi, T. ;
Orlandi, R. ;
Russnes, H. G. ;
Nesland, J. M. ;
Tammi, R. ;
Auvinen, P. ;
Kosma, V-M ;
Menard, S. ;
Borresen-Dale, A-L .
JOURNAL OF PATHOLOGY, 2008, 214 (03) :357-367
[4]   Stromal fibroblasts in cancer initiation and progression [J].
Bhowmick, NA ;
Neilson, EG ;
Moses, HL .
NATURE, 2004, 432 (7015) :332-337
[5]   Molecular dissection of hyperdiploid multiple myeloma by gene expression profiling [J].
Chng, Wee J. ;
Kumar, Shaji ;
VanWier, Scott ;
Ahmann, Greg ;
Price-Troska, Tammy ;
Henderson, Kim ;
Chung, Tae-Hoon ;
Kim, Seungchan ;
Mulligan, George ;
Bryant, Barbara ;
Carpten, John ;
Gertz, Morie ;
Rajkumar, S. Vincent ;
Lacy, Martha ;
Dispenzieri, Angela ;
Kyle, Robert ;
Greipp, Philip ;
Bergsagel, P. Leif ;
Fonseca, Rafael .
CANCER RESEARCH, 2007, 67 (07) :2982-2989
[6]   The biology of cancer metastasis [J].
Fidler, Isaiah J. .
SEMINARS IN CANCER BIOLOGY, 2011, 21 (02) :71-71
[7]   Bone Marrow Stromal Cells Create a Permissive Microenvironment for Myeloma Development: A New Stromal Role for Wnt Inhibitor Dkk1 [J].
Fowler, Jessica A. ;
Mundy, Gregory R. ;
Lwin, Seint T. ;
Edwards, Claire M. .
CANCER RESEARCH, 2012, 72 (09) :2183-2189
[8]   Myeloma as a model for the process of metastasis: implications for therapy [J].
Ghobrial, Irene M. .
BLOOD, 2012, 120 (01) :20-30
[9]   Deregulation of microRNA expression in the different genetic subtypes of multiple myeloma and correlation with gene expression profiling [J].
Gutierrez, N. C. ;
Sarasquete, M. E. ;
Misiewicz-Krzeminska, I. ;
Delgado, M. ;
De Las Rivas, J. ;
Ticona, F. V. ;
Ferminan, E. ;
Martin-Jimenez, P. ;
Chillon, C. ;
Risueno, A. ;
Hernandez, J. M. ;
Garcia-Sanz, R. ;
Gonzalez, M. ;
San Miguel, J. F. .
LEUKEMIA, 2010, 24 (03) :629-637
[10]   Prognostic value of cyclin D2 mRNA expression in newly diagnosed multiple myeloma treated with high-dose chemotherapy and tandem autologous stem cell transplantations [J].
Hanamura, I. ;
Huang, Y. ;
Zhan, F. ;
Barlogie, B. ;
Shaughnessy, J., Jr. .
LEUKEMIA, 2006, 20 (07) :1288-1290