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PMID: 17060621 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

The chemokine growth-regulated oncogene 1 (Gro-1) links RAS signaling to the senescence of stromal fibroblasts and ovarian tumorigenesis.

Yang G, Rosen DG, Zhang Z, Bast RC, Mills GB, Colacino JA, Mercado-Uribe I, Liu J

Abstract

Epithelial-stromal interactions play a critical role in tumor initiation and progression; cancer-associated stroma, but not normal stroma, is known to be tumor-promoting. However, the molecular signal used by epithelial cancer cells to reprogram normal stroma to a tumorigenic stroma is not known. Here, we present evidence to suggest that the chemokine growth-regulated oncogene 1 (Gro-1) may be one such signaling molecule. We showed that the expression of Gro-1 is activated by RAS and is vital for cell survival and the malignant transformation of ovarian epithelial cells. Surprisingly, we found that Gro-1 is a potent inducer of senescence in stromal fibroblasts and that this effect depends on functional p53. Senescent fibroblasts induced by Gro-1 can promote tumor growth whereas abrogation of senescence through immortalization results in loss of such tumor promoting activity. We also demonstrated that stromal fibroblasts adjacent to epithelial cancer cells are senescent in human ovarian cancer specimens and in heterografts from RAS-transformed human ovarian epithelial cells and ovarian cancer cells. Moreover, Gro-1 was expressed at significantly higher amounts in ovarian cancer than in normal tissues and was higher in serum samples from women with ovarian cancer than in serum from women without ovarian cancer. These findings provide strong evidence that RAS-induced Gro-1 can reprogram the stromal microenvironment through the induction of senescence of fibroblasts and thus can promote tumorigenesis. Therefore, Gro-1 may be a therapeutic target as well as a diagnostic marker in ovarian cancer.

MeSH Terms
Apoptosis Biomarkers Cell Transformation, Neoplastic/genetics,metabolism,pathology Cells, Cultured Cellular Senescence/physiology Chemokine CXCL1 Chemokines, CXC/genetics,metabolism Female Fibroblasts/cytology Gene Expression Regulation Humans Ovarian Neoplasms/genetics,metabolism,pathology Signal Transduction Stromal Cells/cytology,pathology Tumor Suppressor Protein p53/metabolism ras Proteins/genetics,metabolism
Chemicals
Biomarkers CXCL1 protein, human Chemokine CXCL1 Chemokines, CXC Tumor Suppressor Protein p53 ras Proteins
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Yang Gong
Department of Pathology, University of Texas M. D. Anderson Cancer Center, 1515 Holcombe Boulevard, Houston, TX 77030, USA.
Rosen Daniel G
Zhang Zhihong
Bast Robert C
Mills Gordon B
Colacino Justin A
Mercado-Uribe Imelda
Liu Jinsong
References (48)
48 references, click to expand
  1. Mechanism and biological significance of constitutive expression of MGSA/GRO chemokines in malignant melanoma tumor progression.
    J Leukoc Biol. 1997 Nov;62(5):588-97 PMID: 9365113
  2. Know thy neighbor: stromal cells can contribute oncogenic signals.
    Curr Opin Genet Dev. 2001 Feb;11(1):54-9 PMID: 11163151
  3. Carcinoma-associated fibroblasts direct tumor progression of initiated human prostatic epithelium.
    Cancer Res. 1999 Oct 1;59(19):5002-11 PMID: 10519415
  4. Friends or foes - bipolar effects of the tumour stroma in cancer.
    Nat Rev Cancer. 2004 Nov;4(11):839-49 PMID: 15516957
  5. THE LIMITED IN VITRO LIFETIME OF HUMAN DIPLOID CELL STRAINS.
    Exp Cell Res. 1965 Mar;37:614-36 PMID: 14315085
  6. Tumour-stroma interaction: cancer-associated fibroblasts as novel targets in anti-cancer therapy?
    Lung Cancer. 2004 Aug;45 Suppl 2:S163-75 PMID: 15552797
  7. Stromal fibroblasts in cancer initiation and progression.
    Nature. 2004 Nov 18;432(7015):332-7 PMID: 15549095
  8. Subcellular localization of p27kip1 expression predicts poor prognosis in human ovarian cancer.
    Clin Cancer Res. 2005 Jan 15;11(2 Pt 1):632-7 PMID: 15701850
  9. Expression of progesterone receptor is a favorable prognostic marker in ovarian cancer.
    Gynecol Oncol. 2005 Mar;96(3):671-7 PMID: 15721410
  10. Senescent cells, tumor suppression, and organismal aging: good citizens, bad neighbors.
    Cell. 2005 Feb 25;120(4):513-22 PMID: 15734683
  11. Stromal fibroblasts present in invasive human breast carcinomas promote tumor growth and angiogenesis through elevated SDF-1/CXCL12 secretion.
    Cell. 2005 May 6;121(3):335-48 PMID: 15882617
  12. Tumour biology: senescence in premalignant tumours.
    Nature. 2005 Aug 4;436(7051):642 PMID: 16079833
  13. Tumors are unique organs defined by abnormal signaling and context.
    Semin Cancer Biol. 2001 Apr;11(2):87-95 PMID: 11322828
  14. Stromal-epithelial interactions in the progression of ovarian cancer: influence and source of tumor stromal cells.
    Mol Cell Endocrinol. 2001 Apr 25;175(1-2):29-39 PMID: 11325514
  15. Senescent fibroblasts promote epithelial cell growth and tumorigenesis: a link between cancer and aging.
    Proc Natl Acad Sci U S A. 2001 Oct 9;98(21):12072-7 PMID: 11593017
  16. The dominance of the microenvironment in breast and ovarian cancer.
    Semin Cancer Biol. 2002 Apr;12(2):97-104 PMID: 12027581
  17. Mutations in BRAF and KRAS characterize the development of low-grade ovarian serous carcinoma.
    J Natl Cancer Inst. 2003 Mar 19;95(6):484-6 PMID: 12644542
  18. Rb-mediated heterochromatin formation and silencing of E2F target genes during cellular senescence.
    Cell. 2003 Jun 13;113(6):703-16 PMID: 12809602
  19. Integrating epithelial cancer, aging stroma and cellular senescence.
    Adv Gerontol. 2003;11:109-16 PMID: 12820530
  20. Silencing of H-ras gene expression by retrovirus-mediated siRNA decreases transformation efficiency and tumorgrowth in a model of human ovarian cancer.
    Oncogene. 2003 Aug 28;22(36):5694-701 PMID: 12944918
  21. Inhibition of breast and ovarian tumor growth through multiple signaling pathways by using retrovirus-mediated small interfering RNA against Her-2/neu gene expression.
    J Biol Chem. 2004 Feb 6;279(6):4339-45 PMID: 14625284
  22. In ovarian neoplasms, BRAF, but not KRAS, mutations are restricted to low-grade serous tumours.
    J Pathol. 2004 Mar;202(3):336-40 PMID: 14991899
  23. A genetically defined model for human ovarian cancer.
    Cancer Res. 2004 Mar 1;64(5):1655-63 PMID: 14996724
  24. Characterization of the role of melanoma growth stimulatory activity (MGSA) in the growth of normal melanocytes, nevocytes, and malignant melanocytes.
    J Cell Biochem. 1990 Dec;44(4):207-19 PMID: 2095366
  25. Effects of MGSA/GRO alpha on melanocyte transformation.
    Oncogene. 1991 Jul;6(7):1115-24 PMID: 1861861
  26. Mutation of K-ras protooncogene in human ovarian epithelial tumors of borderline malignancy.
    Cancer Res. 1993 Apr 1;53(7):1489-92 PMID: 8384077
  27. Epithelial-stromal interactions in colon cancer.
    Int J Dev Biol. 1993 Mar;37(1):203-11 PMID: 8507562
  28. Mutation of K-ras protooncogene is associated with histological subtypes in human mucinous ovarian tumors.
    Cancer Res. 1994 Jan 1;54(1):33-5 PMID: 8261457
  29. Autocrine and paracrine roles for growth factors in melanoma.
    In Vivo. 1994 Jan-Feb;8(1):113-23 PMID: 7519892
  30. A biomarker that identifies senescent human cells in culture and in aging skin in vivo.
    Proc Natl Acad Sci U S A. 1995 Sep 26;92(20):9363-7 PMID: 7568133
  31. Tumor-stromal cytokine interactions in ovarian neoplasms.
    EXS. 1995;74:181-90 PMID: 8527894
  32. Nuclear and cytoplasmic localizations of the adenomatous polyposis coli protein.
    Proc Natl Acad Sci U S A. 1997 Apr 1;94(7):3034-9 PMID: 9096341
  33. K-ras mutations in mucinous ovarian tumors: a clinicopathologic and molecular study of 95 cases.
    Cancer. 1997 Apr 15;79(8):1581-6 PMID: 9118042
  34. Oncogene-induced senescence as an initial barrier in lymphoma development.
    Nature. 2005 Aug 4;436(7051):660-5 PMID: 16079837
  35. BRAFE600-associated senescence-like cell cycle arrest of human naevi.
    Nature. 2005 Aug 4;436(7051):720-4 PMID: 16079850
  36. Crucial role of p53-dependent cellular senescence in suppression of Pten-deficient tumorigenesis.
    Nature. 2005 Aug 4;436(7051):725-30 PMID: 16079851
  37. Role for CXCR2 and CXCL1 on glia in multiple sclerosis.
    Glia. 2006 Jan 1;53(1):24-31 PMID: 16086366
  38. The gene expression program of prostate fibroblast senescence modulates neoplastic epithelial cell proliferation through paracrine mechanisms.
    Cancer Res. 2006 Jan 15;66(2):794-802 PMID: 16424011
  39. Lysophosphatidic acid is a major regulator of growth-regulated oncogene alpha in ovarian cancer.
    Cancer Res. 2006 Mar 1;66(5):2740-8 PMID: 16510595
  40. Cellular senescence in aging primates.
    Science. 2006 Mar 3;311(5765):1257 PMID: 16456035
  41. Use of Ras-transformed human ovarian surface epithelial cells as a model for studying ovarian cancer.
    Methods Enzymol. 2006;407:660-76 PMID: 16757360
  42. Knockdown of p53 combined with expression of the catalytic subunit of telomerase is sufficient to immortalize primary human ovarian surface epithelial cells.
    Carcinogenesis. 2007 Jan;28(1):174-82 PMID: 16829690
  43. The tumorigenic and angiogenic effects of MGSA/GRO proteins in melanoma.
    J Leukoc Biol. 2000 Jan;67(1):53-62 PMID: 10647998
  44. Autocrine and paracrine regulation by cytokines and growth factors in melanoma.
    Cytokine. 2000 Jun;12(6):547-54 PMID: 10843728
  45. Growth factors and epithelial-stromal interactions in prostate cancer development.
    Int Rev Cytol. 2000;199:65-116 PMID: 10874577
  46. MGSA/GRO-mediated melanocyte transformation involves induction of Ras expression.
    Oncogene. 2000 Sep 21;19(40):4647-59 PMID: 11030154
  47. The age of cancer.
    Nature. 2000 Nov 9;408(6809):248-54 PMID: 11089982
  48. K-ras mutations in nonmucinous ovarian epithelial tumors: a molecular analysis and clinicopathologic study of 144 patients.
    Cancer. 1998 Mar 15;82(6):1088-95 PMID: 9506354
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
2006-10-31
Epub
2006-00-23
Pages
16472-7
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC1637606
Subset
IM
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