Characterization of NOL7 Gene Point Mutations, Promoter Methylation, and Protein Expression in Cervical Cancer
暂无分享,去创建一个
Alexander Langerman | Ravi Salgia | Timothy Best | Kenan Onel | Rajani Kanteti | R. Salgia | K. Onel | M. Lingen | A. Langerman | L. Godley | Lucy A Godley | R. Kanteti | Colleen L Doçi | Tanmayi P Mankame | Kelly R Ostler | Mark W Lingen | C. Doçi | T. Mankame | K. R. Ostler | T. Best | Colleen L. Doçi | Kelly R. Ostler
[1] C Saccone,et al. Isochore specificity of AUG initiator context of human genes , 1999, FEBS letters.
[2] Sam Griffiths-Jones,et al. The microRNA Registry , 2004, Nucleic Acids Res..
[3] A. Brothman,et al. Nonrandom rearrangements of 6p in malignant hematological disorders. , 2000, Cancer genetics and cytogenetics.
[4] M. Lingen,et al. RESEARCH ARTICLE Open Access Identification and functional analysis of NOL7 nuclear and nucleolar localization signals , 2022 .
[5] A. Bird,et al. DNA methylation landscapes: provocative insights from epigenomics , 2008, Nature Reviews Genetics.
[6] B. Haddad,et al. Evaluation of paediatric osteosarcomas by classic cytogenetic and CGH analyses , 2002, Molecular pathology : MP.
[7] D. Hanahan,et al. The Hallmarks of Cancer , 2000, Cell.
[8] S. Griffiths-Jones,et al. miRBase: microRNA Sequences and Annotation , 2010, Current protocols in bioinformatics.
[9] S. Niruthisard,et al. Angiogenesis in cervical intraepithelial neoplasia and early‐staged uterine cervical squamous cell carcinoma: clinical significance , 2006, International journal of gynecological cancer : official journal of the International Gynecological Cancer Society.
[10] I. Longden,et al. EMBOSS: the European Molecular Biology Open Software Suite. , 2000, Trends in genetics : TIG.
[11] G Bernardi,et al. Isochores and the evolutionary genomics of vertebrates. , 2000, Gene.
[12] Yao-Shan Fan,et al. Comprehensive cytogenetic analysis including multicolor spectral karyotyping and interphase fluorescence in situ hybridization in lymphoma diagnosis. a summary of 154 cases. , 2003, Cancer genetics and cytogenetics.
[13] S. Hirohashi,et al. An in vitro multistep carcinogenesis model for human cervical cancer. , 2008, Cancer research.
[14] T. Kinoshita,et al. Identification and mapping of novel tumor suppressor loci on 6p in diffuse large B‐cell non‐Hodgkin's lymphoma , 1999, Genes, chromosomes & cancer.
[15] J. Choi. Contrasting chromatin organization of CpG islands and exons in the human genome , 2010, Genome Biology.
[16] Lawrence B. Gardner,et al. Nonsense-Mediated RNA Decay Regulation by Cellular Stress: Implications for Tumorigenesis , 2010, Molecular Cancer Research.
[17] Gil Ast,et al. Alternative splicing and disease , 2008, RNA biology.
[18] E. Kubista,et al. Physical state and expression of HPV DNA in benign and dysplastic cervical tissue: different levels of viral integration are correlated with lesion grade. , 2004, Gynecologic oncology.
[19] Stijn van Dongen,et al. miRBase: tools for microRNA genomics , 2007, Nucleic Acids Res..
[20] H. Moch,et al. Angiogenesis in cervical neoplasia: microvessel quantitation in precancerous lesions and invasive carcinomas with clinicopathological correlations. , 1997, Gynecologic oncology.
[21] Thomas Werner,et al. MatInspector and beyond: promoter analysis based on transcription factor binding sites , 2005, Bioinform..
[22] L. Mariani,et al. Down-regulated nucleoside diphosphate kinase nm23-H1 expression is unrelated to high-risk human papillomavirus but associated with progression of cervical intraepithelial neoplasia and unfavourable prognosis in cervical cancer , 2006, Journal of Clinical Pathology.
[23] G. Fleuren,et al. Allelic loss and prognosis in carcinoma of the uterine cervix , 1998, International journal of cancer.
[24] H. Hausen. Papillomaviruses and cancer: from basic studies to clinical application , 2002, Nature Reviews Cancer.
[25] L. G. Koss,et al. Cervical Cancer , 1981, Current Topics in Pathology.
[26] C. Béroud,et al. Human Splicing Finder: an online bioinformatics tool to predict splicing signals , 2009, Nucleic acids research.
[27] H. Klinger,et al. Genomic alterations in cervical carcinoma: losses of chromosome heterozygosity and human papilloma virus tumor status. , 1996, Cancer research.
[28] Lee E. Edsall,et al. Human DNA methylomes at base resolution show widespread epigenomic differences , 2009, Nature.
[29] D. Gerhard,et al. Cervical cancer suppressor gene is within 1 cM on 6p23 , 2000, Genes, chromosomes & cancer.
[30] M. Lingen,et al. Identification and characterization of the human NOL7 gene promoter. , 2010, Gene.
[31] P. Ravazoula,et al. Assessment of angiogenesis in human cervical lesions. , 1996, Anticancer research.
[32] K. Smith-McCune,et al. Demonstration and characterization of the angiogenic properties of cervical dysplasia. , 1994, Cancer research.
[33] H. Shiku,et al. Acute promyelocytic leukemia with del(6)(p23). , 2000, Leukemia research.
[34] Sam Griffiths-Jones,et al. miRBase: the microRNA sequence database. , 2006, Methods in molecular biology.
[35] S. Ozalp,et al. Microvessel density as a prognostic factor in preinvasive and invasive cervical lesions. , 2003, European journal of gynaecological oncology.
[36] A. Kaufmann,et al. HPV induced cervical carcinogenesis: molecular basis and vaccine development , 2002, Zentralblatt fur Gynakologie.
[37] M. Esteller,et al. Aberrant Regulation of Messenger RNA 3′-Untranslated Region in Human Cancer , 2007, Cellular oncology : the official journal of the International Society for Cellular Oncology.
[38] R. Sarin,et al. Constitutional genomic instability, chromosome aberrations in tumor cells and retinoblastoma. , 2004, Cancer genetics and cytogenetics.
[39] L. Maquat,et al. Quality control of eukaryotic mRNA: safeguarding cells from abnormal mRNA function. , 2007, Genes & development.
[40] D. Cooper,et al. A systematic analysis of disease-associated variants in the 3′ regulatory regions of human protein-coding genes I: general principles and overview , 2006, Human Genetics.
[41] J. Peto,et al. Human papillomavirus is a necessary cause of invasive cervical cancer worldwide , 1999, The Journal of pathology.
[42] H. Saito,et al. Frequent DNA methylation but not mutation of the ID4 gene in malignant lymphoma. , 2007, Journal of clinical and experimental hematopathology : JCEH.
[43] T. Inaba,et al. Deletion 6p23 and add(11)(p15) leading to NUP98 translocation in a case of therapy-related atypical chronic myelocytic leukemia transforming to acute myelocytic leukemia. , 2004, Cancer genetics and cytogenetics.
[44] I. Borecki,et al. CD83 polymorphisms and cervical cancer risk. , 2009, Gynecologic oncology.
[45] Jörg Kalla,et al. Gastric marginal zone B-cell lymphomas of MALT type develop along 2 distinct pathogenetic pathways. , 2002, Blood.
[46] G. Bernardi,et al. The human genome: organization and evolutionary history. , 1995, Annual review of genetics.
[47] P. Lazo,et al. The molecular genetics of cervical carcinoma , 1999, British Journal of Cancer.
[48] L. Konstantinova,et al. Chromosomal rearrangements with a common breakpoint at 6p23 in five cases of myeloid leukemia , 2004, Human Genetics.
[49] M. Bernardini,et al. Combined spectral karyotyping, multicolor banding, and microarray comparative genomic hybridization analysis provides a detailed characterization of complex structural chromosomal rearrangements associated with gene amplification in the osteosarcoma cell line MG-63. , 2004, Cancer genetics and cytogenetics.
[50] Adrian R. Krainer,et al. Aberrant 5′ splice sites in human disease genes: mutation pattern, nucleotide structure and comparison of computational tools that predict their utilization , 2007, Nucleic acids research.
[51] M. Irimia,et al. Intron mis-splicing: no alternative? , 2008, Genome Biology.
[52] I. Vořechovský,et al. Aberrant 3′ splice sites in human disease genes: mutation pattern, nucleotide structure and comparison of computational tools that predict their utilization , 2006, Nucleic acids research.
[53] H. S. Kim,et al. Promoter hypermethylation of multiple genes in carcinoma of the uterine cervix. , 2001, Clinical cancer research : an official journal of the American Association for Cancer Research.
[54] A. Knudson,et al. Two genetic hits (more or less) to cancer , 2001, Nature Reviews Cancer.
[55] Nicholas J. McGlincy,et al. Alternative splicing resulting in nonsense-mediated mRNA decay: what is the meaning of nonsense? , 2008, Trends in biochemical sciences.
[56] A. Jemal,et al. Global cancer statistics , 2011, CA: a cancer journal for clinicians.
[57] J. Doorbar,et al. Molecular biology of human papillomavirus infection and cervical cancer. , 2006, Clinical science.
[58] I. Ernberg,et al. Genome-wide allelotype analysis of sporadic primary nasopharyngeal carcinoma from southern China. , 2000, International journal of oncology.
[59] P. Grigsby,et al. CD83 gene polymorphisms increase susceptibility to human invasive cervical cancer. , 2007, Cancer research.
[60] Vesselin Baev,et al. Computational identification of novel microRNA homologs in the chimpanzee genome , 2009, Comput. Biol. Chem..
[61] Robert S Illingworth,et al. CpG islands – ‘A rough guide’ , 2009, FEBS letters.
[62] K. Maclennan,et al. Genetic events during the transformation of a tamoxifen-sensitive human breast cancer cell line into a drug-resistant clone. , 2001, Cancer genetics and cytogenetics.
[63] J. Pal,et al. Role of 5′‐ and 3′‐untranslated regions of mRNAs in human diseases , 2009, Biology of the cell.
[64] J. Královičová,et al. Global control of aberrant splice-site activation by auxiliary splicing sequences: evidence for a gradient in exon and intron definition , 2007, Nucleic acids research.
[65] R. Malik,et al. RNA regulation and cancer development. , 2007, Cancer letters.
[66] B. Hartmann,et al. Decrypting the genome's alternative messages. , 2009, Current opinion in cell biology.
[67] S. Liao,et al. Chromosomal abnormalities of a new nasopharyngeal carcinoma cell line (NPC-BM1) derived from a bone marrow metastatic lesion. , 1998, Cancer genetics and cytogenetics.
[68] B. Davidson,et al. Angiogenesis in Uterine Cervical Intraepithelial Neoplasia and Squamous Cell Carcinoma: An Immunohistochemical Study , 1997, International Journal of Gynecological Pathology.
[69] J. Rader,et al. Aberrant promoter methylation and silencing of the POU2F3 gene in cervical cancer , 2006, Oncogene.
[70] M. Frommer,et al. CpG islands in vertebrate genomes. , 1987, Journal of molecular biology.
[71] D. Gerhard,et al. Loss of heterozygosity in clinical stage IB cervical carcinoma: relationship with clinical and histopathologic features. , 1998, Human pathology.
[72] Yi Zhang,et al. Dnmt3a-Dependent Nonpromoter DNA Methylation Facilitates Transcription of Neurogenic Genes , 2010, Science.
[73] M. Lizano,et al. Epigenetics of cervical cancer. An overview and therapeutic perspectives , 2005, Molecular Cancer.
[74] S. Clark,et al. High sensitivity mapping of methylated cytosines. , 1994, Nucleic acids research.
[75] R. Skotheim,et al. Alternative splicing in cancer: noise, functional, or systematic? , 2007, The international journal of biochemistry & cell biology.
[76] A. Mutirangura,et al. Genomic alterations in nasopharyngeal carcinoma: loss of heterozygosity and Epstein-Barr virus infection. , 1997, British Journal of Cancer.
[77] L. Coignet,et al. NOL7 is a nucleolar candidate tumor suppressor gene in cervical cancer that modulates the angiogenic phenotype , 2006, Oncogene.
[78] Chang Soo Park,et al. Angiogenesis, cell proliferation and apoptosis in progression of cervical neoplasia. , 2002, Analytical and quantitative cytology and histology.
[79] D. Gerhard,et al. Cervial intraepithelial neoplasia III shows frequent allelic loss in 3p and 6p , 1998, Genes, chromosomes & cancer.
[80] J. Herman,et al. Gene silencing in cancer in association with promoter hypermethylation. , 2003, The New England journal of medicine.
[81] C. Woodman,et al. The natural history of cervical HPV infection: unresolved issues , 2007, Nature Reviews Cancer.
[82] R. Chaganti,et al. Allelotype analysis of cervical carcinoma. , 1994, Cancer research.
[83] D. Ma,et al. The physical state of HPV16 infection and its clinical significance in cancer precursor lesion and cervical carcinoma , 2008, Journal of Cancer Research and Clinical Oncology.
[84] P. Sherrington,et al. Translocation (3;6)(q21;p21) in acute myeloid leukemia with abnormal thrombopoiesis and basophilia. , 1988, Cancer genetics and cytogenetics.
[85] Ravi Salgia,et al. MET, HGF, EGFR, and PXN gene copy number in lung cancer using DNA extracts from FFPE archival samples and prognostic significance. , 2009, Journal of environmental pathology, toxicology and oncology : official organ of the International Society for Environmental Toxicology and Cancer.
[86] D. Catovsky,et al. Molecular cytogenetics of chronic myeloid leukemia with atypical t(6;9) (p23;q34) translocation. , 1995, Leukemia.
[87] F. Koppitch,et al. Acute basophilic leukemia. , 1984, The American journal of medicine.
[88] A. Knudson. Mutation and cancer: statistical study of retinoblastoma. , 1971, Proceedings of the National Academy of Sciences of the United States of America.
[89] Stijn van Dongen,et al. miRBase: microRNA sequences, targets and gene nomenclature , 2005, Nucleic Acids Res..