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PMID: 20215521 Published · ppublish English Journal Article Research Support, N.I.H., Extramural

Identification of hypermethylated genes associated with cisplatin resistance in human cancers.

Cancer research ·Vol. 70 ·No. 7 ·2010-04-01 ·Pages 2870-9

Chang X, Monitto CL, Demokan S, Kim MS, Chang SS, Zhong X, Califano JA, Sidransky D

Abstract

Cisplatin is among the most widely used cytotoxic anticancer agents in solid tumors; however, the development of secondary resistance remains a major obstacle to clinical efficacy. Treatment-related DNA hypermethylation may play a role in creating drug-resistant phenotypes by inactivating genes that are required for cytotoxicity. We applied a pharmacologic unmasking approach to detect hypermethylated genes whose inactivation contributes to cisplatin resistance. Using three pairs of isogeneic, cisplatin-sensitive, and cisplatin-resistant cell lines derived from two parental cell lines (KB-3-1 and SCC25), we identified several hundred genes that were downregulated in each resistant cell line and reactivated by the DNA methyltransferase inhibitor 5-aza-2'-deoxycytidine. Among them, 30 genes were common to two or more cell lines and/or reported to be downregulated in previous studies. Bisulfite sequencing confirmed that 14 genes were hypermethylated in resistant cell lines but not in the sensitive parental cell lines. Six of 14 genes (SAT, C8orf4, LAMB3, TUBB, G0S2, and MCAM) were cisplatin inducible in sensitive but not in resistant cell lines. Small interfering RNA knockdown of two genes, SAT and S100P, increased cell viability with cisplatin treatment in sensitive parental cell lines. S100P knockdown significantly decreased the S-phase fraction of parental sensitive cell lines and slowed cell proliferation, which was associated with decreased sensitivity to cisplatin. Based on these findings, we conclude that DNA methylation is a frequent event in cells that are chronically exposed to cisplatin and that methylation-induced gene silencing may play a role in the development of resistance to cytotoxic chemotherapeutic agents.

MeSH Terms
Algorithms Azacitidine/analogs & derivatives,pharmacology Calcium-Binding Proteins/genetics Carcinoma, Squamous Cell/drug therapy,genetics Cell Cycle/genetics Cell Growth Processes/genetics Cell Line, Tumor Cisplatin/pharmacology DNA Methylation Decitabine Drug Resistance, Neoplasm/genetics Gene Knockdown Techniques Gene Silencing Humans KB Cells Neoplasm Proteins/genetics Promoter Regions, Genetic RNA, Small Interfering/genetics Reverse Transcriptase Polymerase Chain Reaction Transcription, Genetic/drug effects Up-Regulation/drug effects
Chemicals
Calcium-Binding Proteins Neoplasm Proteins RNA, Small Interfering S100P protein, human Decitabine Azacitidine Cisplatin
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Chang Xiaofei
Department of Otolaryngology-Head and Neck Surgery, Head and Neck Cancer Research Division, Johns Hopkins University School of Medicine, Baltimore, MD 21231, USA.
Monitto Constance L
Demokan Semra
Kim Myoung Sook
Chang Steven S
Zhong Xiaoli
Califano Joseph A
Sidransky David
References (39)
39 references, click to expand
  1. Tumour resistance to cisplatin: a modelling approach.
    Phys Med Biol. 2005 Jan 7;50(1):93-102 PMID: 15715425
  2. Global DNA hypermethylation-associated cancer chemotherapy resistance and its reversion with the demethylating agent hydralazine.
    J Transl Med. 2006 Aug 07;4:32 PMID: 16893460
  3. Epigenetic profiling of multidrug-resistant human MCF-7 breast adenocarcinoma cells reveals novel hyper- and hypomethylated targets.
    Mol Cancer Ther. 2007 Mar;6(3):1089-98 PMID: 17363502
  4. Chemotherapy dose--response relationships in non-small cell lung cancer and implied resistance mechanisms.
    Cancer Treat Rev. 2007 Apr;33(2):101-37 PMID: 17276603
  5. Methylation-specific PCR: a novel PCR assay for methylation status of CpG islands.
    Proc Natl Acad Sci U S A. 1996 Sep 3;93(18):9821-6 PMID: 8790415
  6. RAGE activation by S100P in colon cancer stimulates growth, migration, and cell signaling pathways.
    Dis Colon Rectum. 2007 Aug;50(8):1230-40 PMID: 17587138
  7. Prognostic value of the S-phase fraction of breast cancers treated by primary radiotherapy or neoadjuvant chemotherapy.
    Ann N Y Acad Sci. 1993 Nov 30;698:193-203 PMID: 8279757
  8. Polyamine catabolism in platinum drug action: Interactions between oxaliplatin and the polyamine analogue N1,N11-diethylnorspermine at the level of spermidine/spermine N1-acetyltransferase.
    Mol Cancer Ther. 2004 Jul;3(7):813-22 PMID: 15252142
  9. SOCS-1, a negative regulator of the JAK/STAT pathway, is silenced by methylation in human hepatocellular carcinoma and shows growth-suppression activity.
    Nat Genet. 2001 May;28(1):29-35 PMID: 11326271
  10. Ineffectiveness of doxorubicin treatment on solitary dormant mammary carcinoma cells or late-developing metastases.
    Breast Cancer Res Treat. 2003 Dec;82(3):199-206 PMID: 14703067
  11. Aberrant patterns of DNA methylation, chromatin formation and gene expression in cancer.
    Hum Mol Genet. 2001 Apr;10(7):687-92 PMID: 11257100
  12. The role of spermidine/spermine N1-acetyltransferase in determining response to chemotherapeutic agents in colorectal cancer cells.
    Mol Cancer Ther. 2007 Jan;6(1):128-37 PMID: 17237273
  13. Disruption of the Fanconi anemia-BRCA pathway in cisplatin-sensitive ovarian tumors.
    Nat Med. 2003 May;9(5):568-74 PMID: 12692539
  14. S100A2-S100P expression profile and diagnosis of non-small cell lung carcinoma: impairment by advanced tumour stages and neoadjuvant chemotherapy.
    Eur J Cancer. 2007 Sep;43(13):1935-43 PMID: 17689067
  15. Inactivation of the DNA-repair gene MGMT and the clinical response of gliomas to alkylating agents.
    N Engl J Med. 2000 Nov 9;343(19):1350-4 PMID: 11070098
  16. A model of quiescent tumour microregions for evaluating multicellular resistance to chemotherapeutic drugs.
    Br J Cancer. 2005 Aug 8;93(3):302-9 PMID: 16052217
  17. Spermidine/spermine N1-acetyltransferase transient overexpression restores sensitivity of resistant human ovarian cancer cells to N1,N12-bis(ethyl)spermine and to cisplatin.
    Carcinogenesis. 2005 Oct;26(10):1677-86 PMID: 15905201
  18. Regulation of S100P expression by androgen.
    Prostate. 1996 Dec;29(6):350-5 PMID: 8977631
  19. Establishment and gene analysis of an oxaliplatin-resistant colon cancer cell line THC8307/L-OHP.
    Anticancer Drugs. 2007 Jul;18(6):633-9 PMID: 17762391
  20. Mislocalization of membrane proteins associated with multidrug resistance in cisplatin-resistant cancer cell lines.
    Cancer Res. 2003 Sep 15;63(18):5909-16 PMID: 14522917
  21. Estrogen-dependent cyclin E-cdk2 activation through p21 redistribution.
    Mol Cell Biol. 1997 Jul;17(7):4059-69 PMID: 9199341
  22. Gene-expression profiles predict survival of patients with lung adenocarcinoma.
    Nat Med. 2002 Aug;8(8):816-24 PMID: 12118244
  23. Pharmacologic unmasking of epigenetically silenced tumor suppressor genes in esophageal squamous cell carcinoma.
    Cancer Cell. 2002 Dec;2(6):485-95 PMID: 12498717
  24. Platinum drug effects on the expression of genes in the polyamine pathway: time-course and concentration-effect analysis based on Affymetrix gene expression profiling of A2780 ovarian carcinoma cells.
    Cancer Chemother Pharmacol. 2007 May;59(6):711-23 PMID: 17021820
  25. Induction of metastasis by S100P in a rat mammary model and its association with poor survival of breast cancer patients.
    Cancer Res. 2006 Jan 15;66(2):1199-207 PMID: 16424059
  26. Identification of maspin and S100P as novel hypomethylation targets in pancreatic cancer using global gene expression profiling.
    Oncogene. 2004 Feb 26;23(8):1531-8 PMID: 14716296
  27. Epigenetic inactivation of a RAS association domain family protein from the lung tumour suppressor locus 3p21.3.
    Nat Genet. 2000 Jul;25(3):315-9 PMID: 10888881
  28. Reduced expression of small GTPases and hypermethylation of the folate binding protein gene in cisplatin-resistant cells.
    Br J Cancer. 2004 Jul 19;91(2):270-6 PMID: 15199393
  29. Inositol 1,4,5-trisphosphate (IP3) receptor type1 (IP3R1) modulates the acquisition of cisplatin resistance in bladder cancer cell lines.
    Oncogene. 2005 Feb 17;24(8):1396-402 PMID: 15608674
  30. S100P stimulates cell proliferation and survival via receptor for activated glycation end products (RAGE).
    J Biol Chem. 2004 Feb 13;279(7):5059-65 PMID: 14617629
  31. The acquisition of hMLH1 methylation in plasma DNA after chemotherapy predicts poor survival for ovarian cancer patients.
    Clin Cancer Res. 2004 Jul 1;10(13):4420-6 PMID: 15240532
  32. Molecular profiling of pancreatic adenocarcinoma and chronic pancreatitis identifies multiple genes differentially regulated in pancreatic cancer.
    Cancer Res. 2003 May 15;63(10):2649-57 PMID: 12750293
  33. Differential responses of proliferating versus quiescent cells to adriamycin.
    Exp Cell Res. 1999 Jul 10;250(1):131-41 PMID: 10388527
  34. A phase II study of epigenetic therapy with hydralazine and magnesium valproate to overcome chemotherapy resistance in refractory solid tumors.
    Ann Oncol. 2007 Sep;18(9):1529-38 PMID: 17761710
  35. Do DNA ploidy and S-phase fraction in primary tumour predict the response to chemotherapy in metastatic breast cancer?
    Br J Cancer. 1995 May;71(5):1029-32 PMID: 7734295
  36. N1,N12-bis(ethyl)spermine effect on growth of cis-diamminedichloroplatinum(II)-sensitive and -resistant human ovarian-carcinoma cell lines.
    Int J Cancer. 1998 Sep 25;78(1):33-40 PMID: 9724091
  37. Introduction to resistance to anticancer agents.
    Oncogene. 2003 Oct 20;22(47):7262-4 PMID: 14576836
  38. Causal relationship between the loss of RUNX3 expression and gastric cancer.
    Cell. 2002 Apr 5;109(1):113-24 PMID: 11955451
  39. Clinical perspectives on platinum resistance.
    Drugs. 2000;59 Suppl 4:9-17; discussion 37-8 PMID: 10864226
Article Info
Journal
Cancer research
Abbr.
Cancer Res
ISSN
1538-7445
Published
2010-04-01
Epub
2010-00-09
Pages
2870-9
Language
English
Region
United States
NLM ID
2984705R
PMCID
PMC2849007
Subset
IM
Grants
NIDCR NIH HHS · R37 DE012588-06A1 · United States
NCI NIH HHS · P50 CA096784 · United States
NIDCR NIH HHS · P50 DE019032 · United States
NCI NIH HHS · U01 CA084986-01 · United States
NIDCR NIH HHS · R37 DE012588 · United States
NCI NIH HHS · P50 CA096784-01 · United States
NCI NIH HHS · U01 CA084986 · United States
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