High-resolution whole-genome analysis of skull base chordomas implicates FHIT loss in chordoma pathogenesis.
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J. Rutka | D. Munoz | A. Flanagan | R. Diaz | D. Shih | M. Pamir | Christian A. Smith | Paul Northcott | Rocco Romagnuolo | Mustafa Güdük | F. Berisha | Michael D. Cusimano
[1] B. Kerem,et al. The complex basis underlying common fragile site instability in cancer. , 2012, Trends in genetics : TIG.
[2] F. Şahin,et al. Characterization of cancer stem-like cells in chordoma. , 2012, Journal of neurosurgery.
[3] A. Helmrich,et al. Collisions between replication and transcription complexes cause common fragile site instability at the longest human genes. , 2011, Molecular cell.
[4] Xiao-qing Liu,et al. [Clinical application of multiplex ligation-dependent probe amplification for the detection exonic copy number alterations in the Dystrophin gene]. , 2011, Zhonghua yi xue yi chuan xue za zhi = Zhonghua yixue yichuanxue zazhi = Chinese journal of medical genetics.
[5] J. Roth,et al. The Effect of Adenovirus-Mediated Gene Expression of FHIT in Small Cell Lung Cancer Cells , 2011, Cancer investigation.
[6] Z. Gokaslan,et al. Generation of chordoma cell line JHC7 and the identification of Brachyury as a novel molecular target. , 2011, Journal of neurosurgery.
[7] D. Birnbaum,et al. Genome profiling of pancreatic adenocarcinoma , 2011, Genes, chromosomes & cancer.
[8] Julie M. Batten,et al. Recurrent Chromosomal Copy Number Alterations in Sporadic Chordomas , 2011, PloS one.
[9] R. Diaz,et al. The biological basis for modern treatment of chordoma , 2011, Journal of Neuro-Oncology.
[10] R. Scott Hansen,et al. Cell-type-specific replication initiation programs set fragility of the FRA3B fragile site , 2011, Nature.
[11] T. Jacques,et al. Role of the transcription factor T (brachyury) in the pathogenesis of sporadic chordoma: a genetic and functional‐based study , 2011, The Journal of pathology.
[12] Helga Thorvaldsdóttir,et al. Integrative Genomics Viewer , 2011, Nature Biotechnology.
[13] G. Guler,et al. FHIT Gene Sequence Variants and Reduced Fhit Protein Expression in Glioblastoma Multiforme , 2010, Cellular and Molecular Neurobiology.
[14] J. Zawacka-Pankau,et al. Corrigendum to “Enlightened protein: Fhit tumor suppressor protein structure and function and its role in the toxicity of protoporphyrin IX-mediated photodynamic reaction” [Toxicol. Appl. Pharmacol. 241 (2009) 246–252] , 2010 .
[15] J. Zawacka-Pankau,et al. Enlightened protein: Fhit tumor suppressor protein structure and function and its role in the toxicity of protoporphyrin IX-mediated photodynamic reaction. , 2009, Toxicology and applied pharmacology.
[16] Alessandra Bolsi,et al. Effectiveness and safety of spot scanning proton radiation therapy for chordomas and chondrosarcomas of the skull base: first long-term report. , 2009, International journal of radiation oncology, biology, physics.
[17] A. Goldstein,et al. T (brachyury) gene duplication confers major susceptibility to familial chordoma , 2009, Nature Genetics.
[18] C. Croce,et al. Intramitochondrial calcium regulation by the FHIT gene product sensitizes to apoptosis , 2009, Proceedings of the National Academy of Sciences.
[19] J. Sawyer,et al. Impact of cytogenetic abnormalities on the management of skull base chordomas. , 2009, Journal of neurosurgery.
[20] Paul A. Northcott,et al. Multiple recurrent genetic events converge on control of histone lysine methylation in medulloblastoma , 2009, Nature Genetics.
[21] S. Kvasha,et al. Hypermethylation of the 5'CpG island of the FHIT gene in clear cell renal carcinomas. , 2008, Cancer letters.
[22] D. Pinto,et al. Structural variation of chromosomes in autism spectrum disorder. , 2008, American journal of human genetics.
[23] P. Mortini,et al. Evaluation of 1p36 markers and clinical outcome in a skull base chordoma study. , 2008, Neuro-oncology.
[24] G. Jönsson,et al. Frequent deletion of the CDKN2A locus in chordoma: analysis of chromosomal imbalances using array comparative genomic hybridisation , 2007, British Journal of Cancer.
[25] M. Pamir,et al. New candidate chromosomal regions for chordoma development. , 2007, Surgical neurology.
[26] Motohiro Kato,et al. Highly sensitive method for genomewide detection of allelic composition in nonpaired, primary tumor specimens by use of affymetrix single-nucleotide-polymorphism genotyping microarrays. , 2007, American journal of human genetics.
[27] H. Ishii,et al. A Fhit-ing Role in the DNA Damage Checkpoint Response , 2007, Cell cycle.
[28] E. S. Venkatraman,et al. A faster circular binary segmentation algorithm for the analysis of array CGH data , 2007, Bioinform..
[29] C. Croce,et al. Fhit modulates the DNA damage checkpoint response. , 2006, Cancer research.
[30] K. Huebner,et al. Involvement of the Fhit gene in the ionizing radiation‐activated ATR/CHK1 pathway , 2005, Journal of cellular physiology.
[31] C. Haie-meder,et al. Chordomas of the base of the skull and upper cervical spine. One hundred patients irradiated by a 3D conformal technique combining photon and proton beams , 2005, Acta oncologica.
[32] L. Leider-Trejo,et al. Cytogenetic analysis of three variants of clival chordoma. , 2004, Cancer genetics and cytogenetics.
[33] J. Minna,et al. Synergistic Tumor Suppression by Coexpression of FHIT and p53 Coincides with FHIT-Mediated MDM2 Inactivation and p53 Stabilization in Human Non-Small Cell Lung Cancer Cells , 2004, Cancer Research.
[34] F. Mertens,et al. Combined binary ratio labeling fluorescence in situ hybridization analysis of chordoma. , 2004, Cancer genetics and cytogenetics.
[35] Cheng Li,et al. dChipSNP: significance curve and clustering of SNP-array-based loss-of-heterozygosity data , 2004, Bioinform..
[36] A. Gronchi,et al. Chordoma: Natural History and Results in 28 Patients Treated at a Single Institution , 2003, Annals of Surgical Oncology.
[37] C. Croce,et al. Restoration of fragile histidine triad (FHIT) expression induces apoptosis and suppresses tumorigenicity in breast cancer cell lines. , 2003, Cancer research.
[38] Tamas Beothe,et al. Deletion of chromosome 3p14.2-p25 involving the VHL and FHIT genes in conventional renal cell carcinoma. , 2003, Cancer research.
[39] P. Möller,et al. Genome‐wide analysis of sixteen chordomas by comparative genomic hybridization and cytogenetics of the first human chordoma cell line, U‐CH1 , 2001, Genes, chromosomes & cancer.
[40] C. Croce,et al. The tumor spectrum in FHIT-deficient mice , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[41] E. Rosato,et al. Fragile histidine triad expression delays tumor development and induces apoptosis in human pancreatic cancer. , 2001, Cancer research.
[42] J. Minna,et al. 5' CpG island methylation of the FHIT gene is correlated with loss of gene expression in lung and breast cancer. , 2001, Cancer research.
[43] J. Sawyer,et al. Identification of isochromosome 1q as a recurring chromosome aberration in skull base chordomas: a new marker for aggressive tumors? , 2001, Neurosurgical focus.
[44] C. Croce,et al. Effect of adenoviral transduction of the fragile histidine triad gene into esophageal cancer cells. , 2001, Cancer research.
[45] C. Li,et al. Model-based analysis of oligonucleotide arrays: expression index computation and outlier detection. , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[46] B. Rampy,et al. The expression of Fhit protein is related inversely to disease progression in patients with breast carcinoma , 2000, Cancer.
[47] J. Minna,et al. Induction of apoptosis and inhibition of tumorigenicity and tumor growth by adenovirus vector-mediated fragile histidine triad (FHIT) gene overexpression. , 1999, Cancer research.
[48] W. Liu,et al. Allele-specific late replication and fragility of the most active common fragile site, FRA3B. , 1999, Human molecular genetics.
[49] H. Harada,et al. Methylation of the 5' CpG island of the FHIT gene is closely associated with transcriptional inactivation in esophageal squamous cell carcinomas. , 1998, Cancer research.
[50] L. D. Barnes,et al. Replacement of Fhit in cancer cells suppresses tumorigenicity. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[51] C. Croce,et al. Absence of Fhit protein in primary lung tumors and cell lines with FHIT gene abnormalities. , 1997, Cancer research.
[52] D. Beer,et al. Frequent deletions of FHIT and FRA3B in Barrett's metaplasia and esophageal adenocarcinomas , 1997, Oncogene.
[53] J. Minna,et al. Precise localization of the FHIT gene to the common fragile site at 3p14.2 (FRA3B) and characterization of homozygous deletions within FRA3B that affect FHIT transcription in tumor cell lines , 1997, Genes, chromosomes & cancer.
[54] C. Croce,et al. The FHIT gene, a multiple tumor suppressor gene encompassing the carcinogen sensitive chromosome fragile site, FRA3B. , 1997, Biochimica et biophysica acta.
[55] G. Giaccone,et al. FHIT and FRA3B 3p14.2 allele loss are common in lung cancer and preneoplastic bronchial lesions and are associated with cancer-related FHIT cDNA splicing aberrations. , 1997, Cancer research.
[56] M. Kurosumi,et al. Abnormal FHIT transcripts in human breast carcinomas: a clinicopathological and epidemiological analysis of 61 Japanese cases. , 1997, Cancer research.
[57] C. Croce,et al. Structure and expression of the human FHIT gene in normal and tumor cells. , 1997, Cancer research.
[58] D. Wolfe,et al. Loss of heterozygosity in the retinoblastoma tumor suppressor gene in skull base chordomas and chondrosarcomas. , 1997, Surgical neurology.
[59] L. D. Barnes,et al. Fhit, a putative tumor suppressor in humans, is a dinucleoside 5',5"'-P1,P3-triphosphate hydrolase. , 1996, Biochemistry.
[60] C. Croce,et al. FHIT gene alterations in head and neck squamous cell carcinomas. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[61] H. Tideman. Abstract from international literatureBone cancers: H. D. Dorfman, B. Czerniak Cancer 1995: 75: 203–10 , 1995 .
[62] M. Becich,et al. Chordomas: pathological features; ploidy and silver nucleolar organizing region analysis , 1995, Acta Neuropathologica.
[63] R. Maestro,et al. Three discrete regions of deletion at 3p in head and neck cancers. , 1993, Cancer research.
[64] M. Oshimura,et al. Deletion mapping of chromosome 3p in human uterine cervical cancer. , 1993, Oncogene.
[65] R. Ueda,et al. Three distinct regions involved in 3p deletion in human lung cancer. , 1992, Oncogene.
[66] Y. Nakamura,et al. Accumulation of genetic alterations and progression of primary breast cancer. , 1991, Cancer research.
[67] Y. Nakamura,et al. A detailed deletion mapping of the short arm of chromosome 3 in sporadic renal cell carcinoma. , 1991, Cancer research.
[68] V. Reuter,et al. Chordomas with malignant spindle cell components. A DNA flow cytometric and immunohistochemical study with histogenetic implications. , 1990, The American journal of pathology.
[69] C. P. Schwinn,et al. Chordoma. A clinicopathologic study of metastasis. , 1979, American journal of clinical pathology.
[70] D. Dahlin,et al. Chordomas and cartilaginous tumors at the skull base , 1973, Cancer.
[71] H. O. Hustu,et al. Chordoma. Thirty‐five‐year study at memorial hospital , 1967, Cancer.
[72] M. L. Le Beau,et al. Impaired replication dynamics at the FRA3B common fragile site. , 2010, Human molecular genetics.
[73] M. Pamir,et al. Tumor-biology and current treatment of skull-base chordomas. , 2008, Advances and technical standards in neurosurgery.
[74] A. Goldstein,et al. Chordoma: incidence and survival patterns in the United States, 1973–1995 , 2004, Cancer Causes & Control.
[75] J. Wunder,et al. Chordoma: long-term follow-up after radical photon irradiation. , 1996, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[76] A. Rosenberg,et al. Chondroid chordoma--a variant of chordoma. A morphologic and immunohistochemical study. , 1994, American journal of clinical pathology.
[77] J. Minna,et al. Loss of heterozygosity of chromosome 3p markers in small-cell lung cancer , 1987, Nature.
[78] B. Eriksson,et al. Chordoma: A Clinicopathologic and Prognostic Study of a Swedish National Series , 1981 .