Home LiteratureArticle Details
PMID: 19701502 Published · ppublish English Journal Article

Preclinical efficacy of cystatin C to target the oncogenic activity of transforming growth factor Beta in breast cancer.

Translational oncology ·Vol. 2 ·No. 3 ·2009-08-18 ·Pages 174-83

Tian M, Schiemann WP

Abstract

We previously identified cystatin C (CystC) as a novel antagonist of transforming growth factor beta (TGF-beta) signaling in normal and malignant cells. However, whether the anti-TGF-beta activities of CystC can be translated to preclinical animal models of breast cancer growth and metastasis remains unproven. Assessing the preclinical efficacy of CystC was accomplished using metastatic 4T1 breast cancer cells, whose oncogenic responses to TGF-beta were inhibited both in vitro and in vivo. Indeed, we observed CystC to prevent TGF-beta from stimulating the growth and pulmonary metastasis of 4T1 tumors in mice in part by reducing the extent of Smad2, p38 mitogen-activated protein kinase, and extracellular signal-regulated kinase 1/2 phosphorylation present in 4T1 tumors. We also found CystC to significantly antagonize angiogenesis in developing 4T1 tumors, suggesting a novel role for CystC in uncoupling TGF-beta signaling in endothelial cells (ECs). Accordingly, CystC dramatically reduced murine and human EC responsiveness to TGF-beta, including their ability to regulate the expression of 1) TGF-beta signaling components, 2) inhibitor of differentiation (ID) family members, and 3) matrix metalloproteinases and their inhibitors (TIMPs) and to undergo cell invasion and angiogenic sprouting stimulated by TGF-beta. Importantly, CystC prevented TGF-beta from stimulating vessel development in Matrigel plugs implanted into genetically normal mice. Collectively, our findings provide the first preclinical evidence that CystC is efficacious in preventing breast cancer progression and angiogenesis stimulated by the oncogenic TGF-beta signaling system and suggest that CystC-based chemotherapeutics possesses translational efficacy to one day treat and improve the clinical course of late-stage breast cancers.

Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Tian Maozhen
Department of Pharmacology, University of Colorado Denver, Anschutz Medical Campus, Aurora, CO 80045, USA.
Schiemann William P
References (55)
55 references, click to expand
  1. Role of transforming growth factor beta in breast carcinogenesis.
    Lancet Oncol. 2004 Apr;5(4):229-39 PMID: 15050954
  2. Distinct regulation of gene expression in human endothelial cells by TGF-beta and its receptors.
    Microvasc Res. 2006 Jan;71(1):12-9 PMID: 16405919
  3. Cysteine cathepsins: multifunctional enzymes in cancer.
    Nat Rev Cancer. 2006 Oct;6(10):764-75 PMID: 16990854
  4. Altered TAB1:I kappaB kinase interaction promotes transforming growth factor beta-mediated nuclear factor-kappaB activation during breast cancer progression.
    Cancer Res. 2008 Mar 1;68(5):1462-70 PMID: 18316610
  5. Transforming growth factor-beta signal transduction in angiogenesis and vascular disorders.
    Chest. 2005 Dec;128(6 Suppl):585S-590S PMID: 16373850
  6. Activin receptor-like kinase 1 is implicated in the maturation phase of angiogenesis.
    Blood. 2002 Dec 15;100(13):4495-501 PMID: 12453878
  7. Id1 and Id3 are required for neurogenesis, angiogenesis and vascularization of tumour xenografts.
    Nature. 1999 Oct 14;401(6754):670-7 PMID: 10537105
  8. Fibulin-5 antagonizes vascular endothelial growth factor (VEGF) signaling and angiogenic sprouting by endothelial cells.
    DNA Cell Biol. 2004 Jun;23(6):367-79 PMID: 15231070
  9. Friends and relations of the cystatin superfamily--new members and their evolution.
    Protein Sci. 1997 Jan;6(1):5-12 PMID: 9007972
  10. Cystatin C antagonizes transforming growth factor beta signaling in normal and cancer cells.
    Mol Cancer Res. 2004 Mar;2(3):183-95 PMID: 15037657
  11. ID genes mediate tumor reinitiation during breast cancer lung metastasis.
    Proc Natl Acad Sci U S A. 2007 Dec 4;104(49):19506-11 PMID: 18048329
  12. Id family of helix-loop-helix proteins in cancer.
    Nat Rev Cancer. 2005 Aug;5(8):603-14 PMID: 16034366
  13. Therapy-induced acute recruitment of circulating endothelial progenitor cells to tumors.
    Science. 2006 Sep 22;313(5794):1785-7 PMID: 16990548
  14. Role of transforming growth factor-beta in cancer progression.
    Future Oncol. 2006 Dec;2(6):743-63 PMID: 17155901
  15. Extracellular control of TGFbeta signalling in vascular development and disease.
    Nat Rev Mol Cell Biol. 2007 Nov;8(11):857-69 PMID: 17895899
  16. Src phosphorylates Tyr284 in TGF-beta type II receptor and regulates TGF-beta stimulation of p38 MAPK during breast cancer cell proliferation and invasion.
    Cancer Res. 2007 Apr 15;67(8):3752-8 PMID: 17440088
  17. alpha 2-HS glycoprotein/fetuin, a transforming growth factor-beta/bone morphogenetic protein antagonist, regulates postnatal bone growth and remodeling.
    J Biol Chem. 2002 May 31;277(22):19991-7 PMID: 11901155
  18. ALK5- and TGFBR2-independent role of ALK1 in the pathogenesis of hereditary hemorrhagic telangiectasia type 2.
    Blood. 2008 Jan 15;111(2):633-42 PMID: 17911384
  19. Cooperative assembly of TGF-beta superfamily signaling complexes is mediated by two disparate mechanisms and distinct modes of receptor binding.
    Mol Cell. 2008 Feb 1;29(2):157-68 PMID: 18243111
  20. Abrogation of TGF beta signaling in mammary carcinomas recruits Gr-1+CD11b+ myeloid cells that promote metastasis.
    Cancer Cell. 2008 Jan;13(1):23-35 PMID: 18167337
  21. Blockade of cathepsin B expression in human glioblastoma cells is associated with suppression of angiogenesis.
    Oncogene. 2004 Mar 18;23(12):2224-30 PMID: 14730346
  22. Cathepsin cysteine proteases are effectors of invasive growth and angiogenesis during multistage tumorigenesis.
    Cancer Cell. 2004 May;5(5):443-53 PMID: 15144952
  23. Multiple roles for cysteine cathepsins in cancer.
    Cell Cycle. 2004 Dec;3(12):1516-619 PMID: 15539953
  24. Cytostatic and apoptotic actions of TGF-beta in homeostasis and cancer.
    Nat Rev Cancer. 2003 Nov;3(11):807-21 PMID: 14557817
  25. The tumor microenvironment: a potential arbitrator of the tumor suppressive and promoting actions of TGFbeta.
    Differentiation. 2002 Dec;70(9-10):574-82 PMID: 12492498
  26. Transforming growth factor beta1 induces angiogenesis in vivo with a threshold pattern.
    Lab Invest. 1996 Mar;74(3):600-8 PMID: 8600310
  27. TGF-beta signaling in breast cancer.
    Ann N Y Acad Sci. 2006 Nov;1089:119-26 PMID: 17261761
  28. A novel function for tissue inhibitor of metalloproteinases-3 (TIMP3): inhibition of angiogenesis by blockage of VEGF binding to VEGF receptor-2.
    Nat Med. 2003 Apr;9(4):407-15 PMID: 12652295
  29. Tumour microenvironment: TGFbeta: the molecular Jekyll and Hyde of cancer.
    Nat Rev Cancer. 2006 Jul;6(7):506-20 PMID: 16794634
  30. Id2 and Id3 define the potency of cell proliferation and differentiation responses to transforming growth factor beta and bone morphogenetic protein.
    Mol Cell Biol. 2004 May;24(10):4241-54 PMID: 15121845
  31. Inhibition of growth and metastasis of mouse mammary carcinoma by selective inhibitor of transforming growth factor-beta type I receptor kinase in vivo.
    Clin Cancer Res. 2006 Jul 15;12(14 Pt 1):4315-30 PMID: 16857807
  32. Global expression profiling of fibroblast responses to transforming growth factor-beta1 reveals the induction of inhibitor of differentiation-1 and provides evidence of smooth muscle cell phenotypic switching.
    Am J Pathol. 2003 Feb;162(2):533-46 PMID: 12547711
  33. Balancing the activation state of the endothelium via two distinct TGF-beta type I receptors.
    EMBO J. 2002 Apr 2;21(7):1743-53 PMID: 11927558
  34. Transforming growth factor-beta signaling in cancer invasion and metastasis.
    Int J Cancer. 2007 Nov 15;121(10):2119-24 PMID: 17849476
  35. Targets of transcriptional regulation by two distinct type I receptors for transforming growth factor-beta in human umbilical vein endothelial cells.
    J Cell Physiol. 2002 Dec;193(3):299-318 PMID: 12384983
  36. Controlling the angiogenic switch: a balance between two distinct TGF-b receptor signaling pathways.
    Trends Cardiovasc Med. 2003 Oct;13(7):301-7 PMID: 14522471
  37. Development of TGF-beta signalling inhibitors for cancer therapy.
    Nat Rev Drug Discov. 2004 Dec;3(12):1011-22 PMID: 15573100
  38. Fetuin/alpha2-HS glycoprotein is a transforming growth factor-beta type II receptor mimic and cytokine antagonist.
    J Biol Chem. 1996 May 31;271(22):12755-61 PMID: 8662721
  39. An anti-transforming growth factor beta antibody suppresses metastasis via cooperative effects on multiple cell compartments.
    Cancer Res. 2008 May 15;68(10):3835-43 PMID: 18483268
  40. Transforming growth factor-beta: vasculogenesis, angiogenesis, and vessel wall integrity.
    Cytokine Growth Factor Rev. 1997 Mar;8(1):21-43 PMID: 9174661
  41. Targeted TGF-beta chemotherapies: friend or foe in treating human malignancies?
    Expert Rev Anticancer Ther. 2007 May;7(5):609-11 PMID: 17492924
  42. Nonoverlapping expression patterns of ALK1 and ALK5 reveal distinct roles of each receptor in vascular development.
    Lab Invest. 2006 Feb;86(2):116-29 PMID: 16344855
  43. Grb2 binding to Tyr284 in TbetaR-II is essential for mammary tumor growth and metastasis stimulated by TGF-beta.
    Carcinogenesis. 2008 Feb;29(2):244-51 PMID: 18174260
  44. Biphasic effect of transforming growth factor-beta 1 on in vitro angiogenesis.
    Exp Cell Res. 1993 Feb;204(2):356-63 PMID: 7679998
  45. A self-enabling TGFbeta response coupled to stress signaling: Smad engages stress response factor ATF3 for Id1 repression in epithelial cells.
    Mol Cell. 2003 Apr;11(4):915-26 PMID: 12718878
  46. Activin receptor-like kinase 1 modulates transforming growth factor-beta 1 signaling in the regulation of angiogenesis.
    Proc Natl Acad Sci U S A. 2000 Mar 14;97(6):2626-31 PMID: 10716993
  47. Activin receptor-like kinase (ALK)1 is an antagonistic mediator of lateral TGFbeta/ALK5 signaling.
    Mol Cell. 2003 Oct;12(4):817-28 PMID: 14580334
  48. Angiogenesis in cancer and other diseases.
    Nature. 2000 Sep 14;407(6801):249-57 PMID: 11001068
  49. Immunomodulatory properties of cystatins.
    Cell Mol Life Sci. 2002 Sep;59(9):1503-12 PMID: 12440772
  50. Large- and small-molecule inhibitors of transforming growth factor-beta signaling.
    Curr Opin Investig Drugs. 2006 Jun;7(6):513-21 PMID: 16784021
  51. Inhibition of cathepsin B and MMP-9 gene expression in glioblastoma cell line via RNA interference reduces tumor cell invasion, tumor growth and angiogenesis.
    Oncogene. 2004 Jun 10;23(27):4681-9 PMID: 15122332
  52. TGF-beta receptor function in the endothelium.
    Cardiovasc Res. 2005 Feb 15;65(3):599-608 PMID: 15664386
  53. The use of cystatin C to inhibit epithelial-mesenchymal transition and morphological transformation stimulated by transforming growth factor-beta.
    Breast Cancer Res. 2005;7(5):R844-53 PMID: 16168131
  54. Fibulins 3 and 5 antagonize tumor angiogenesis in vivo.
    Cancer Res. 2006 Mar 1;66(5):2621-9 PMID: 16510581
  55. Angiogenesis in health and disease.
    Nat Med. 2003 Jun;9(6):653-60 PMID: 12778163
Article Info
Journal
Translational oncology
Abbr.
Transl Oncol
ISSN
1936-5233
Published
2009-08-18
Pages
174-83
Language
English
Region
United States
NLM ID
101472619
PMCID
PMC2730134
Grants
NCI NIH HHS · R01 CA114039 · United States
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com