Divergent Molecular Mechanisms Underlying the Pleiotropic Functions of Macrophage Inhibitory Cytokine-1 in Cancer

被引:224
作者
Mimeault, Murielle [1 ]
Batra, Surinder K. [1 ]
机构
[1] Univ Nebraska Med Ctr, Dept Biochem & Mol Biol, Eppley Inst Res Canc & Allied Dis, Omaha, NE 68198 USA
基金
美国国家卫生研究院;
关键词
TGF-BETA SUPERFAMILY; GROWTH-FACTOR-BETA; DIFFERENTIATION FACTOR 15; ACTIVATED GENE NAG-1; DEPENDENT REGULATION; SIGNALING PATHWAYS; UP-REGULATION; DNA-DAMAGE; EXPRESSION; PROTEIN;
D O I
10.1002/jcp.22196
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Multifunctional macrophage inhibitory cytokine-1, MIC-1, is a member of the transforming growth factor-beta (TGF-beta) superfamily that plays key roles in the prenatal development and regulation of the cellular responses to stress signals and inflammation and tissue repair after acute injuries in adult life. The stringent control of the MIC-1 expression, secretion, and functions involves complex regulatory mechanisms and the interplay of other growth factor signaling networks that control the cell behavior. The deregulation of MIC-1 expression and signaling pathways has been associated with diverse human diseases and cancer progression. The MIC-1 expression levels substantially increase in cancer cells, serum, and/or cerebrospinal fluid during the progression of diverse human aggressive cancers, such as intracranial brain tumors, melanoma, and lung, gastrointestinal, pancreatic, colorectal, prostate, and breast epithelial cancers. Of clinical interest, an enhanced MIC-1 expression has been positively correlated with poor prognosis and patient survival. Secreted MIC-1 cytokine, like the TGF-beta prototypic member of the superfamily, may provide pleiotropic roles in the early and late stages of carcinogenesis. In particular, MIC-1 may contribute to the proliferation, migration, invasion, metastases, and treatment resistance of cancer cells as well as tumor-induced anorexia and weight loss in the late stages of cancer. Thus, secreted MIC-1 cytokine constitutes a new potential biomarker and therapeutic target of great clinical interest for the development of novel diagnostic and prognostic methods and/or cancer treatment against numerous metastatic, recurrent, and lethal cancers. J. Cell. Physiol. 224: 626-63.5,2010. (C) 2010 Wiley-Liss, Inc.
引用
收藏
页码:626 / 635
页数:10
相关论文
共 88 条
[31]   Molecular alterations in prostate carcinomas that associate with in vivo exposure to chemotherapy:: Identification of a cytoprotective mechanism involving growth differentiation factor 15 [J].
Huang, Chung-Ying ;
Beer, Tomasz M. ;
Higano, Celestia S. ;
True, Lawrence D. ;
Vessella, Robert ;
Lange, Paulh. ;
Garzotto, Mark ;
Nelson, Peter S. .
CLINICAL CANCER RESEARCH, 2007, 13 (19) :5825-5833
[32]   TAp63-dependent induction of growth differentiation factor 15 (GDF15) plays a critical role in the regulation of keratinocyte differentiation [J].
Ichikawa, T. ;
Suenaga, Y. ;
Koda, T. ;
Ozaki, T. ;
Nakagawara, A. .
ONCOGENE, 2008, 27 (04) :409-420
[33]   Tumor-induced anorexia and weight loss are mediated by the TGF-β superfamily cytokine MIC-1 [J].
Johnen, Heiko ;
Lin, Shu ;
Kuffner, Tamara ;
Brown, David A. ;
Tsai, Vicky Wang-Wei ;
Bauskin, Asne R. ;
Wu, Liyun ;
Pankhurst, Greg ;
Jiang, Lele ;
Junankar, Simon ;
Hunter, Mark ;
Fairlie, W. Douglas ;
Lee, Nicola J. ;
Enriquez, Ronaldo F. ;
Baldock, Paul A. ;
Corey, Eva ;
Apple, Fred S. ;
Murakami, MaryAnn M. ;
Lin, En-Ju ;
Wang, Chuansong ;
During, Matthew J. ;
Sainsbury, Amanda ;
Herzog, Herbert ;
Breit, Samuel N. .
NATURE MEDICINE, 2007, 13 (11) :1333-1340
[34]   Down-regulation of macrophage inhibitory cytokine-1/prostate derived factor in benign prostatic hyperplasia [J].
Kakehi, Y ;
Segawa, T ;
Wu, XX ;
Kulkarni, P ;
Dhir, R ;
Getzenberg, RH .
PROSTATE, 2004, 59 (04) :351-356
[35]   Dysregulated expression of MIC-1/PDF in human prostate tumor cells [J].
Karan, D ;
Chen, SJ ;
Johansson, SL ;
Singh, AP ;
Paralkar, VM ;
Lin, MF ;
Batra, SK .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2003, 305 (03) :598-604
[36]   Macrophage Inhibitory Cytokine-1: Possible Bridge Molecule of Inflammation and Prostate Cancer [J].
Karan, Dev ;
Holzbeierlein, Jeffrey ;
Thrasher, J. Brantley .
CANCER RESEARCH, 2009, 69 (01) :2-5
[37]   p53 controls prostate-derived factor/macrophage inhibitory cytokine/NSAID-activated gene expression in response to cell density, DNA damage and hypoxia through diverse mechanisms [J].
Kelly, Julie A. ;
Lucia, M. Scott ;
Lambert, James R. .
CANCER LETTERS, 2009, 277 (01) :38-47
[38]   The transforming growth factor-β superfamily member growth-differentiation factor-15 protects the heart from ischemia/reperfusion injury [J].
Kempf, T ;
Eden, M ;
Strelau, J ;
Naguib, M ;
Willenbockel, C ;
Tongers, J ;
Heineke, J ;
Kotlarz, D ;
Xu, J ;
Molkentin, JD ;
Niessen, HW ;
Drexler, H ;
Wollert, KC .
CIRCULATION RESEARCH, 2006, 98 (03) :351-360
[39]   Expression and regulation of nonsteroidal anti-inflammatory drug-activated gene (NAG-1) in human and mouse tissue [J].
Kim, KS ;
Baek, SJ ;
Flake, GP ;
Loftin, CD ;
Calvo, BF ;
Eling, TE .
GASTROENTEROLOGY, 2002, 122 (05) :1388-1398
[40]   Macrophage inhibitory cytokine-1 activates AKT and ERK-1/2 via the transactivation of ErbB2 in human breast and gastric cancer cells [J].
Kim, Kwang-Kyu ;
Lee, Jung Joon ;
Yang, Young ;
You, Kwan-Hee ;
Lee, Jeong-Hyung .
CARCINOGENESIS, 2008, 29 (04) :704-712