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PMID: 22429330 Published · epublish English Journal Article Research Support, Non-U.S. Gov't

Relevance of PTEN loss in brain metastasis formation in breast cancer patients.

Breast cancer research : BCR ·Vol. 14 ·No. 2 ·2012-03-19 ·Pages R49

Wikman H, Lamszus K, Detels N, Uslar L, Wrage M, Benner C, Hohensee I, Ylstra B, Eylmann K, Zapatka M, Sauter G, Kemming D, Glatzel M, Müller V, Westphal M, Pantel K

Abstract

With the improvement of therapeutic options for the treatment of breast cancer, the development of brain metastases has become a major limitation to life expectancy in many patients. Therefore, our aim was to identify molecular markers associated with the development of brain metastases in breast cancer. Patterns of chromosomal aberrations in primary breast tumors and brain metastases were compared with array-comparative genetic hybridization (CGH). The most significant region was further characterized in more detail by microsatellite and gene-expression analysis, and finally, the possible target gene was screened for mutations. The array CGH results showed that brain metastases, in general, display similar chromosomal aberrations as do primary tumors, but with a notably higher frequency. Statistically significant differences were found at nine different chromosomal loci, with a gain and amplification of EGFR (7p11.2) and a loss of 10q22.3-qter being among the most significant aberrations in brain metastases (P < 0.01; false discovery rate (fdr) < 0.04). Allelic imbalance (AI) patterns at 10q were further verified in 77 unmatched primary tumors and 21 brain metastases. AI at PTEN loci was found significantly more often in brain metastases (52%) and primary tumors with a brain relapse (59%) compared with primary tumors from patients without relapse (18%; P = 0.003) or relapse other than brain tumors (12%; P = 0.006). Loss of PTEN was especially frequent in HER2-negative brain metastases (64%). Furthermore, PTEN mRNA expression was significantly downregulated in brain metastases compared with primary tumors, and PTEN mutations were frequently found in brain metastases. These results demonstrate that brain metastases often show very complex genomic-aberration patterns, suggesting a potential role of PTEN and EGFR in brain metastasis formation.

MeSH Terms
Allelic Imbalance Brain Neoplasms/genetics,secondary,surgery Breast Neoplasms/genetics,metabolism,pathology Chromosome Aberrations Chromosome Deletion Chromosomes, Human, Pair 10 Comparative Genomic Hybridization ErbB Receptors/genetics Female Gene Expression Regulation, Neoplastic Humans Microsatellite Repeats Middle Aged Mutation PTEN Phosphohydrolase/genetics Receptor, ErbB-2/metabolism
Chemicals
EGFR protein, human ERBB2 protein, human ErbB Receptors Receptor, ErbB-2 PTEN Phosphohydrolase PTEN protein, human
Authors & Affiliations
16 authors, click to expand affiliations / ORCID
Wikman Harriet
Institute of Tumor Biology, University Medical Center Hamburg-Eppendorf, Martinistreet 52, 20246 Hamburg, Germany. h.wikman@uke.uni-hamburg.de
Lamszus Katrin
Detels Niclas
Uslar Liubov
Wrage Michaela
Benner Christian
Hohensee Ina
Ylstra Bauke
Eylmann Kathrin
Zapatka Marc
Sauter Guido
Kemming Dirk
Glatzel Markus
Müller Volkmar
Westphal Manfred
Pantel Klaus
References (49)
49 references, click to expand
  1. Gene expression profiling of human lymph node metastases and matched primary breast carcinomas: clinical implications.
    Mol Oncol. 2007 Sep;1(2):172-80 PMID: 19383293
  2. Genomic profiles associated with early micrometastasis in lung cancer: relevance of 4q deletion.
    Clin Cancer Res. 2009 Mar 1;15(5):1566-74 PMID: 19208797
  3. Analysis of array CGH data: from signal ratio to gain and loss of DNA regions.
    Bioinformatics. 2004 Dec 12;20(18):3413-22 PMID: 15381628
  4. PTEN signaling pathways in glioblastoma.
    Cancer Biol Ther. 2008 Sep;7(9):1321-5 PMID: 18836294
  5. A molecular signature of metastasis in primary solid tumors.
    Nat Genet. 2003 Jan;33(1):49-54 PMID: 12469122
  6. Subtypes of breast cancer show preferential site of relapse.
    Cancer Res. 2008 May 1;68(9):3108-14 PMID: 18451135
  7. Genome remodelling in a basal-like breast cancer metastasis and xenograft.
    Nature. 2010 Apr 15;464(7291):999-1005 PMID: 20393555
  8. Detection of complex genetic alterations in human glioblastoma multiforme using comparative genomic hybridization.
    J Neuropathol Exp Neurol. 1996 Jan;55(1):81-7 PMID: 8558174
  9. Crystal structure of the PTEN tumor suppressor: implications for its phosphoinositide phosphatase activity and membrane association.
    Cell. 1999 Oct 29;99(3):323-34 PMID: 10555148
  10. Genetic alterations and signaling pathways in the evolution of gliomas.
    Cancer Sci. 2009 Dec;100(12):2235-41 PMID: 19737147
  11. HtrA proteins as targets in therapy of cancer and other diseases.
    Expert Opin Ther Targets. 2010 Jul;14(7):665-79 PMID: 20469960
  12. PTEN loss in the continuum of common cancers, rare syndromes and mouse models.
    Nat Rev Cancer. 2011 Apr;11(4):289-301 PMID: 21430697
  13. Genetic alterations in primary breast cancers and their metastases: direct comparison using modified comparative genomic hybridization.
    Genes Chromosomes Cancer. 1997 Aug;19(4):267-72 PMID: 9258662
  14. Genetic similarities and differences between lobular in situ neoplasia (LN) and invasive lobular carcinoma of the breast.
    Virchows Arch. 2006 Jul;449(1):14-23 PMID: 16612623
  15. The genomic profile of human malignant glioma is altered early in primary cell culture and preserved in spheroids.
    Oncogene. 2008 Mar 27;27(14):2091-6 PMID: 17934519
  16. Dissecting the metastatic cascade.
    Nat Rev Cancer. 2004 Jun;4(6):448-56 PMID: 15170447
  17. Human and mouse oligonucleotide-based array CGH.
    Nucleic Acids Res. 2005 Dec 16;33(22):e192 PMID: 16361265
  18. Predominance of the basal type and HER-2/neu type in brain metastasis from breast cancer.
    Mod Pathol. 2007 Aug;20(8):864-70 PMID: 17541441
  19. CGHMultiArray: exact P-values for multi-array comparative genomic hybridization data.
    Bioinformatics. 2005 Jul 15;21(14):3193-4 PMID: 15879450
  20. Genome-wide analysis identifies 16q deletion associated with survival, molecular subtypes, mRNA expression, and germline haplotypes in breast cancer patients.
    Genes Chromosomes Cancer. 2008 Aug;47(8):680-96 PMID: 18398821
  21. Distinct patterns of DNA copy number alteration are associated with different clinicopathological features and gene-expression subtypes of breast cancer.
    Genes Chromosomes Cancer. 2006 Nov;45(11):1033-40 PMID: 16897746
  22. Regulator of G-protein signaling 10 promotes dopaminergic neuron survival via regulation of the microglial inflammatory response.
    J Neurosci. 2008 Aug 20;28(34):8517-28 PMID: 18716210
  23. Novel mutations of the suppressor gene PTEN in colorectal carcinomas stratified by microsatellite instability- and TP53 mutation- status.
    Hum Mutat. 2008 Nov;29(11):E252-62 PMID: 18781614
  24. Meningioma pathology, genetics, and biology.
    J Neuropathol Exp Neurol. 2004 Apr;63(4):275-86 PMID: 15099018
  25. Patterns of DNA copy number changes in sentinel lymph node breast cancer metastases.
    Cytogenet Genome Res. 2008;122(1):16-21 PMID: 18931481
  26. Incidence of brain metastases in a cohort of patients with carcinoma of the breast, colon, kidney, and lung and melanoma.
    Cancer. 2002 May 15;94(10):2698-705 PMID: 12173339
  27. Genetic disparity between primary tumours, disseminated tumour cells, and manifest metastasis.
    Int J Cancer. 2010 Feb 1;126(3):589-98 PMID: 19795462
  28. Phosphatidylinositol 3-kinase pathway activation in breast cancer brain metastases.
    Breast Cancer Res. 2011;13(6):R125 PMID: 22132754
  29. A subset of breast cancer predisposes to brain metastasis.
    Med Mol Morphol. 2011 Mar;44(1):15-20 PMID: 21424932
  30. Human epidermal growth factor receptor 2-positive breast cancer and central nervous system metastases.
    J Clin Oncol. 2009 Nov 1;27(31):5278-86 PMID: 19770385
  31. Inhibition of activated fibroblast growth factor receptor 2 in endometrial cancer cells induces cell death despite PTEN abrogation.
    Cancer Res. 2008 Sep 1;68(17):6902-7 PMID: 18757403
  32. An integrative genomic and proteomic analysis of PIK3CA, PTEN, and AKT mutations in breast cancer.
    Cancer Res. 2008 Aug 1;68(15):6084-91 PMID: 18676830
  33. Analyses of resected human brain metastases of breast cancer reveal the association between up-regulation of hexokinase 2 and poor prognosis.
    Mol Cancer Res. 2009 Sep;7(9):1438-45 PMID: 19723875
  34. Translational research in brain metastasis is identifying molecular pathways that may lead to the development of new therapeutic strategies.
    Eur J Cancer. 2010 May;46(7):1204-10 PMID: 20303257
  35. Heat shock protein 12A shows reduced expression in the prefrontal cortex of subjects with schizophrenia.
    Biol Psychiatry. 2004 Dec 15;56(12):943-50 PMID: 15601604
  36. Heterogeneity of breast cancer metastases: comparison of therapeutic target expression and promoter methylation between primary tumors and their multifocal metastases.
    Clin Cancer Res. 2008 Apr 1;14(7):1938-46 PMID: 18381931
  37. Genes that mediate breast cancer metastasis to the brain.
    Nature. 2009 Jun 18;459(7249):1005-9 PMID: 19421193
  38. A specific isoform of glial cell line-derived neurotrophic factor family receptor alpha 1 regulates RhoA expression and glioma cell migration.
    J Neurochem. 2010 Nov;115(3):759-70 PMID: 20807316
  39. Genomic and transcriptional aberrations linked to breast cancer pathophysiologies.
    Cancer Cell. 2006 Dec;10(6):529-41 PMID: 17157792
  40. Genomic alterations in primary breast cancers compared with their sentinel and more distal lymph node metastases: an aCGH study.
    Genes Chromosomes Cancer. 2009 Dec;48(12):1091-101 PMID: 19760610
  41. PIK3CA mutations correlate with hormone receptors, node metastasis, and ERBB2, and are mutually exclusive with PTEN loss in human breast carcinoma.
    Cancer Res. 2005 Apr 1;65(7):2554-9 PMID: 15805248
  42. Differential gene and protein expression in primary breast malignancies and their lymph node metastases as revealed by combined cDNA microarray and tissue microarray analysis.
    Cancer. 2004 Mar 15;100(6):1110-22 PMID: 15022276
  43. Intratumor genomic heterogeneity in breast cancer with clonal divergence between primary carcinomas and lymph node metastases.
    Breast Cancer Res Treat. 2007 Apr;102(2):143-55 PMID: 16906480
  44. Chromosomal imbalances in brain metastases of solid tumors.
    Brain Pathol. 2000 Jul;10(3):395-401 PMID: 10885658
  45. A gene expression signature associated with metastatic cells in effusions of breast carcinoma patients.
    Int J Cancer. 2007 Sep 1;121(5):1036-46 PMID: 17450528
  46. Detection, clinical relevance and specific biological properties of disseminating tumour cells.
    Nat Rev Cancer. 2008 May;8(5):329-40 PMID: 18404148
  47. Accumulation of genetic alterations in brain metastases of sporadic breast carcinomas is associated with reduced survival after metastasis.
    Invasion Metastasis. 1998-1999;18(2):81-95 PMID: 10364688
  48. EGFR signaling in breast cancer: bad to the bone.
    Semin Cell Dev Biol. 2010 Dec;21(9):951-60 PMID: 20813200
  49. Gene expression profiles of primary breast tumors maintained in distant metastases.
    Proc Natl Acad Sci U S A. 2003 Dec 23;100(26):15901-5 PMID: 14665696
Article Info
Journal
Breast cancer research : BCR
Abbr.
Breast Cancer Res
ISSN
1465-542X
Published
2012-03-19
Epub
2012-00-19
Pages
R49
Language
English
Region
England
NLM ID
100927353
PMCID
PMC3446383
Subset
IM
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