Higher order chromatin organization in cancer.
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[1] Manolis Kellis,et al. Constitutive nuclear lamina–genome interactions are highly conserved and associated with A/T-rich sequence , 2013, Genome research.
[2] P. Ferrier. Faculty Opinions recommendation of Global changes in the nuclear positioning of genes and intra- and interdomain genomic interactions that orchestrate B cell fate. , 2012 .
[3] Andrew P Feinberg,et al. Euchromatin islands in large heterochromatin domains are enriched for CTCF binding and differentially DNA-methylated regions , 2012, BMC Genomics.
[4] Dimos Gaidatzis,et al. Step-Wise Methylation of Histone H3K9 Positions Heterochromatin at the Nuclear Periphery , 2012, Cell.
[5] Bradley E. Bernstein,et al. DNA Sequence-Dependent Compartmentalization and Silencing of Chromatin at the Nuclear Lamina , 2012, Cell.
[6] M. Rubin,et al. Oncogene-mediated alterations in chromatin conformation , 2012, Proceedings of the National Academy of Sciences.
[7] J. Sedat,et al. Spatial partitioning of the regulatory landscape of the X-inactivation centre , 2012, Nature.
[8] P. Laird,et al. Regions of focal DNA hypermethylation and long-range hypomethylation in colorectal cancer coincide with nuclear lamina–associated domains , 2011, Nature Genetics.
[9] K. Wilson,et al. The nucleoskeleton as a genome-associated dynamic 'network of networks' , 2011, Nature Reviews Molecular Cell Biology.
[10] Abena B. Redwood,et al. Regulating the levels of key factors in cell cycle and DNA repair: New pathways revealed by lamins , 2011, Cell cycle.
[11] E. van den Berg,et al. Loss of lamin A/C expression in stage II and III colon cancer is associated with disease recurrence. , 2011, European journal of cancer.
[12] A. Feinberg,et al. Increased methylation variation in epigenetic domains across cancer types , 2011, Nature Genetics.
[13] Vijay K. Tiwari,et al. Genomic Prevalence of Heterochromatic H3K9me2 and Transcription Do Not Discriminate Pluripotent from Terminally Differentiated Cells , 2011, PLoS genetics.
[14] Nicholas J. Schork,et al. CCCTC-binding factor (CTCF) and cohesin influence the genomic architecture of the Igh locus and antisense transcription in pro-B cells , 2011, Proceedings of the National Academy of Sciences.
[15] A. Feinberg,et al. Genome-scale epigenetic reprogramming during epithelial to mesenchymal transition , 2011, Nature Structural &Molecular Biology.
[16] Tom Misteli,et al. Higher-order genome organization in human disease. , 2010, Cold Spring Harbor perspectives in biology.
[17] Job Dekker,et al. Integrating one-dimensional and three-dimensional maps of genomes , 2010, Journal of Cell Science.
[18] P. Flicek,et al. Molecular maps of the reorganization of genome-nuclear lamina interactions during differentiation. , 2010, Molecular cell.
[19] Lee E. Edsall,et al. Distinct epigenomic landscapes of pluripotent and lineage-committed human cells. , 2010, Cell stem cell.
[20] A. Ponti,et al. The spatial dynamics of tissue-specific promoters during C. elegans development. , 2010, Genes & development.
[21] S. Gonzalo,et al. Nurturing the genome: A-type lamins preserve genomic stability. , 2010, Nucleus.
[22] Lee E. Edsall,et al. Human DNA methylomes at base resolution show widespread epigenomic differences , 2009, Nature.
[23] S. Gilbert. Ageing and cancer as diseases of epigenesis , 2009, Journal of Biosciences.
[24] Helen A. Foster,et al. The spatial repositioning of adipogenesis genes is correlated with their expression status in a porcine mesenchymal stem cell adipogenesis model system , 2009, Chromosoma.
[25] A. Feinberg,et al. Intra-individual change over time in DNA methylation with familial clustering. , 2008, JAMA.
[26] L. Wessels,et al. Domain organization of human chromosomes revealed by mapping of nuclear lamina interactions , 2008, Nature.
[27] Harinder Singh,et al. Initiation of allelic exclusion by stochastic interaction of Tcrb alleles with repressive nuclear compartments , 2008, Nature Immunology.
[28] W. Bickmore,et al. Porin new light onto chromatin and nuclear organization , 2008, Genome Biology.
[29] E. Bertolino,et al. Transcriptional repression mediated by repositioning of genes to the nuclear lamina , 2008, Nature.
[30] K. Wilson,et al. An emerin "proteome": purification of distinct emerin-containing complexes from HeLa cells suggests molecular basis for diverse roles including gene regulation, mRNA splicing, signaling, mechanosensing, and nuclear architecture. , 2007, Biochemistry.
[31] Cameron S. Osborne,et al. Myc Dynamically and Preferentially Relocates to a Transcription Factory Occupied by Igh , 2007, PLoS biology.
[32] Bas van Steensel,et al. Detection of in vivo protein–DNA interactions using DamID in mammalian cells , 2007, Nature Protocols.
[33] A. Taddei,et al. Active genes at the nuclear pore complex. , 2007, Current opinion in cell biology.
[34] J. Broers,et al. The nuclear envelope, a key structure in cellular integrity and gene expression. , 2007, Current medicinal chemistry.
[35] M. Fraga,et al. Epigenetic disruption of ribosomal RNA genes and nucleolar architecture in DNA methyltransferase 1 (Dnmt1) deficient cells , 2007, Nucleic acids research.
[36] T. Misteli,et al. Nuclear architecture--an island no more. , 2007, Developmental cell.
[37] Karl Rohr,et al. Chromatin domains and the interchromatin compartment form structurally defined and functionally interacting nuclear networks , 2006, Chromosome Research.
[38] Lisa L. Smith,et al. Characterization of the TCL-1 transgenic mouse as a preclinical drug development tool for human chronic lymphocytic leukemia. , 2006, Blood.
[39] Tom Misteli,et al. Distinct structural and mechanical properties of the nuclear lamina in Hutchinson–Gilford progeria syndrome , 2006, Proceedings of the National Academy of Sciences.
[40] Thomas Cremer,et al. Rise, fall and resurrection of chromosome territories: a historical perspective. Part I. The rise of chromosome territories. , 2006, European journal of histochemistry : EJH.
[41] J. Thyberg,et al. Asi1 is an inner nuclear membrane protein that restricts promoter access of two latent transcription factors , 2006, The Journal of cell biology.
[42] J. Ihle,et al. Regulation of interleukin 7–dependent immunoglobulin heavy-chain variable gene rearrangements by transcription factor STAT5 , 2005, Nature Immunology.
[43] M. Fraga,et al. Inactivation of the lamin A/C gene by CpG island promoter hypermethylation in hematologic malignancies, and its association with poor survival in nodal diffuse large B-cell lymphoma. , 2005, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[44] N. Amariglio,et al. Nuclear Envelopathies—Raising the Nuclear Veil , 2005, Pediatric Research.
[45] T. Misteli,et al. Condensed mitotic chromatin is accessible to transcription factors and chromatin structural proteins , 2005, The Journal of cell biology.
[46] Patrick Heun,et al. Long-range compaction and flexibility of interphase chromatin in budding yeast analyzed by high-resolution imaging techniques. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[47] Joseph Rosenecker,et al. Transcription-dependent spatial arrangements of CFTR and adjacent genes in human cell nuclei , 2004, The Journal of cell biology.
[48] Daniele Zink,et al. Nuclear structure in cancer cells , 2004, Nature Reviews Cancer.
[49] Yosef Gruenbaum,et al. Accumulation of mutant lamin A causes progressive changes in nuclear architecture in Hutchinson–Gilford progeria syndrome , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[50] K. Wilson,et al. Transcriptional Repressor Germ Cell-less (GCL) and Barrier to Autointegration Factor (BAF) Compete for Binding to Emerin in Vitro * , 2003, The Journal of Biological Chemistry.
[51] D. Mierke,et al. Mechanisms regulating the expression, self‐maintenance, and signaling‐function of the bradykinin B2 and B1 receptors , 2002, Journal of cellular physiology.
[52] D. S. Coffey. Nuclear matrix proteins as proteomic markers of preneoplastic and cancer lesions : commentary re: G. Brunagel et al., nuclear matrix protein alterations associated with colon cancer metastasis to the liver. Clin. Cancer Res., 8: 3039-3045, 2002. , 2002, Clinical cancer research : an official journal of the American Association for Cancer Research.
[53] Roy Riblet,et al. Subnuclear Compartmentalization of Immunoglobulin Loci During Lymphocyte Development , 2002, Science.
[54] A. Politou,et al. Dynamic associations of heterochromatin protein 1 with the nuclear envelope , 2000, The EMBO journal.
[55] Peter Teague,et al. Differences in the Localization and Morphology of Chromosomes in the Human Nucleus , 1999, The Journal of cell biology.
[56] Papanicolaou Gn,et al. The diagnostic value of vaginal smears in carcinoma of the uterus. 1941. , 1997 .
[57] C. Cramer,et al. Bioproduction of Human Enzymes in Transgenic Tobacco a , 1996, Annals of the New York Academy of Sciences.
[58] M. Cohen,et al. Classics in cytology VI: The early cytologic discoveries of Lionel S. Beale , 1993, Diagnostic cytopathology.
[59] H. Ribbert,et al. Zur Frage der Entstehung maligner Tumoren , 1914, Naturwissenschaften.
[60] Guillaume J. Filion,et al. Reassessing the abundance of H3K9me2 chromatin domains in embryonic stem cells , 2010, Nature Genetics.
[61] N. Maraldi,et al. Nuclear envelope proteins and chromatin arrangement: a pathogenic mechanism for laminopathies. , 2006, European journal of histochemistry : EJH.
[62] C. Woodcock,et al. Chromatin architecture. , 2006, Current opinion in structural biology.
[63] Wendy A Bickmore,et al. Chromatin organization in the mammalian nucleus. , 2005, International review of cytology.
[64] A. C. Chinault,et al. Differentially methylated forms of histone H3 show unique association patterns with inactive human X chromosomes , 2002, Nature Genetics.
[65] C Cremer,et al. Chromosome territories, interchromatin domain compartment, and nuclear matrix: an integrated view of the functional nuclear architecture. , 2000, Critical reviews in eukaryotic gene expression.
[66] B. Blencowe,et al. The architectural organization of nuclear metabolism. , 1995, International review of cytology.
[67] É. Khandjian,et al. Repression of nuclear lamin A and C gene expression in human acute lymphoblastic leukemia and non-Hodgkin's lymphoma cells. , 1990, Leukemia research.