Positioning of the mouse Hox gene clusters in the nuclei of developing embryos and differentiating embryoid bodies.
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[1] S. Brenner,et al. A conserved retinoic acid response element required for early expression of the homeobox gene Hoxb-1 , 1994, Nature.
[2] Erik Splinter,et al. Looping and interaction between hypersensitive sites in the active beta-globin locus. , 2002, Molecular cell.
[3] T. Cremer,et al. Inheritance of gene density–related higher order chromatin arrangements in normal and tumor cell nuclei , 2003, The Journal of cell biology.
[4] Chia-Lun Tsai,et al. Transient Homologous Chromosome Pairing Marks the Onset of X Inactivation , 2006, Science.
[5] K. Yamamura,et al. Region‐specific gastrointestinal Hox code during murine embryonal gut development , 2002, Development, growth & differentiation.
[6] Tom Misteli,et al. Concepts in nuclear architecture , 2005, BioEssays : news and reviews in molecular, cellular and developmental biology.
[7] E. Carpenter,et al. Expression patterns of Hox10 paralogous genes during lumbar spinal cord development. , 2006, Gene expression patterns : GEP.
[8] Richard Axel,et al. Interchromosomal Interactions and Olfactory Receptor Choice , 2006, Cell.
[9] R. Krumlauf,et al. Retinoids and Hox genes , 1996, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[10] M. Gassmann,et al. Embryoid Bodies: An In Vitro Model of Mouse Embryogenesis , 2000, Experimental physiology.
[11] Cameron S. Osborne,et al. Replication and transcription: Shaping the landscape of the genome , 2005, Nature Reviews Genetics.
[12] C. Amemiya,et al. Genomics of the HOX gene cluster. , 2002, Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology.
[13] S J Gaunt,et al. Expression patterns of mouse hox genes: Clues to an understanding of developmental and evolutionary strategies , 1991, BioEssays : news and reviews in molecular, cellular and developmental biology.
[14] R. Flavell,et al. Interchromosomal associations between alternatively expressed loci , 2005, Nature.
[15] Mark Groudine,et al. Form follows function: The genomic organization of cellular differentiation. , 2004, Genes & development.
[16] B. Steensel,et al. Nuclear organization of active and inactive chromatin domains uncovered by chromosome conformation capture–on-chip (4C) , 2006, Nature Genetics.
[17] R. Eils,et al. Three-Dimensional Maps of All Chromosomes in Human Male Fibroblast Nuclei and Prometaphase Rosettes , 2005, PLoS biology.
[18] A. Murray,et al. Interphase chromosomes undergo constrained diffusional motion in living cells , 1997, Current Biology.
[19] Veronica J. Buckle,et al. Coregulated human globin genes are frequently in spatial proximity when active , 2006, The Journal of cell biology.
[20] Thomas Cremer,et al. Common themes and cell type specific variations of higher order chromatin arrangements in the mouse , 2005, BMC Cell Biology.
[21] Richard T. Lee,et al. Ascorbic Acid Enhances Differentiation of Embryonic Stem Cells Into Cardiac Myocytes , 2003, Circulation.
[22] C. Allis,et al. Translating the Histone Code , 2001, Science.
[23] Denis Duboule,et al. A Global Control Region Defines a Chromosomal Regulatory Landscape Containing the HoxD Cluster , 2003, Cell.
[24] Roland Eils,et al. Transient colocalization of X-inactivation centres accompanies the initiation of X inactivation , 2006, Nature Cell Biology.
[25] S. Forlani,et al. Initiation, establishment and maintenance of Hox gene expression patterns in the mouse. , 1999, The International journal of developmental biology.
[26] R. Krumlauf. Hox genes in vertebrate development , 1994, Cell.
[27] D. Duboule. Vertebrate hox gene regulation: clustering and/or colinearity? , 1998, Current opinion in genetics & development.
[28] T. Cremer,et al. Histone lysine methylation patterns in human cell types are arranged in distinct three-dimensional nuclear zones , 2005, Histochemistry and Cell Biology.
[29] T. Jenuwein,et al. An epigenetic road map for histone lysine methylation , 2003, Journal of Cell Science.
[30] Hui Ling Chen,et al. CTCF Mediates Interchromosomal Colocalization Between Igf2/H19 and Wsb1/Nf1 , 2006, Science.
[31] Wendy A Bickmore,et al. Chromatin Motion Is Constrained by Association with Nuclear Compartments in Human Cells , 2002, Current Biology.
[32] Thomas Cremer,et al. Chromosome order in HeLa cells changes during mitosis and early G1, but is stably maintained during subsequent interphase stages , 2003, The Journal of cell biology.
[33] Peter Teague,et al. Differences in the Localization and Morphology of Chromosomes in the Human Nucleus , 1999, The Journal of cell biology.
[34] Cameron S. Osborne,et al. Active genes dynamically colocalize to shared sites of ongoing transcription , 2004, Nature Genetics.