Chromosome conformation capture (from 3C to 5C) and its ChIP-based modification.
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M. Lipinski | A. Gavrilov | S. Razin | Y. Vassetzky | Yegor Vassetzky | Marc Lipinski | Alexey Gavrilov | Elvira Eivazova | Iryna Priozhkova | Sergey Razin | E. Eivazova | Iryna Priozhkova
[1] B. Steensel,et al. Nuclear organization of active and inactive chromatin domains uncovered by chromosome conformation capture–on-chip (4C) , 2006, Nature Genetics.
[2] A. Chinnaiyan,et al. Integrative analysis of the cancer transcriptome , 2005, Nature Genetics.
[3] C. Nusbaum,et al. Chromosome Conformation Capture Carbon Copy (5C): a massively parallel solution for mapping interactions between genomic elements. , 2006, Genome research.
[4] M. Groudine,et al. Proximity among distant regulatory elements at the beta-globin locus requires GATA-1 and FOG-1. , 2005, Molecular cell.
[5] J. Dekker,et al. Capturing Chromosome Conformation , 2002, Science.
[6] Job Dekker,et al. The three 'C' s of chromosome conformation capture: controls, controls, controls , 2005, Nature Methods.
[7] Hui Ling Chen,et al. CTCF Mediates Interchromosomal Colocalization Between Igf2/H19 and Wsb1/Nf1 , 2006, Science.
[8] Rolf Ohlsson,et al. CTCF binding at the H19 imprinting control region mediates maternally inherited higher-order chromatin conformation to restrict enhancer access to Igf2. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[9] Wouter de Laat,et al. CTCF mediates long-range chromatin looping and local histone modification in the beta-globin locus. , 2006, Genes & development.
[10] R. Flavell,et al. Interchromosomal associations between alternatively expressed loci , 2005, Nature.
[11] T. Aune,et al. Dynamic alterations in the conformation of the Ifng gene region during T helper cell differentiation , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[12] Douglas R Higgs,et al. Long-range chromosomal interactions regulate the timing of the transition between poised and active gene expression. , 2007, The EMBO journal.
[13] K. Sandhu,et al. Circular chromosome conformation capture (4C) uncovers extensive networks of epigenetically regulated intra- and interchromosomal interactions , 2006, Nature Genetics.
[14] R. Ohlsson,et al. Transcription in the loop , 2006, Nature Genetics.
[15] W. Garrard,et al. Long-Range Interactions between Three Transcriptional Enhancers, Active Vκ Gene Promoters, and a 3′ Boundary Sequence Spanning 46 Kilobases , 2005, Molecular and Cellular Biology.
[16] Jan-Fang Cheng,et al. Loss of silent-chromatin looping and impaired imprinting of DLX5 in Rett syndrome , 2005, Nature Genetics.
[17] F. Grosveld,et al. 3C technology: analyzing the spatial organization of genomic loci in vivo. , 2004, Methods in enzymology.
[18] N. Galjart,et al. CTCF mediates long-range chromatin looping and local histone modification in the beta-globin locus. , 2007, Genes & development.
[19] T. Kohwi-Shigematsu,et al. SATB1 packages densely looped, transcriptionally active chromatin for coordinated expression of cytokine genes , 2006, Nature Genetics.
[20] Erik Splinter,et al. Looping and interaction between hypersensitive sites in the active beta-globin locus. , 2002, Molecular cell.
[21] Richard A Flavell,et al. Long-range intrachromosomal interactions in the T helper type 2 cytokine locus , 2004, Nature Immunology.
[22] Pierre Chartrand,et al. Genome-wide scanning of HoxB1-associated loci in mouse ES cells using an open-ended Chromosome Conformation Capture methodology , 2006, Chromosome Research.
[23] L. Di,et al. Active Chromatin Hub of the Mouse α-Globin Locus Forms in a Transcription Factory of Clustered Housekeeping Genes , 2006, Molecular and Cellular Biology.
[24] A. Gavrilov,et al. Spatial configuration of the chicken α-globin gene domain: immature and active chromatin hubs , 2008, Nucleic acids research.
[25] F. Grosveld,et al. The beta-globin nuclear compartment in development and erythroid differentiation. , 2003, Nature genetics.