Composition and dosage of a multipartite enhancer cluster control developmental expression of Indian hedgehog
暂无分享,去创建一个
A. Visel | S. Mundlos | M. Vingron | D. G. Lupiáñez | V. Heinrich | E. Klopocki | L. Wittler | N. Brieske | W. Chan | J. de Villartay | Anja J Will | M. Osterwalder | Giulia Cova | Anja J. Will
[1] Martin Vingron,et al. Characterization of hundreds of regulatory landscapes in developing limbs reveals two regimes of chromatin folding , 2017, Genome research.
[2] S. Mundlos,et al. Formation of new chromatin domains determines pathogenicity of genomic duplications , 2016, Nature.
[3] L. Pennacchio,et al. Genetic dissection of the α-globin super-enhancer in vivo , 2016, Nature Genetics.
[4] L. Hennighausen,et al. Hierarchy within the mammary STAT5-driven Wap super-enhancer , 2016, Nature Genetics.
[5] Thomas Zichner,et al. Shadow Enhancers Are Pervasive Features of Developmental Regulatory Networks , 2016, Current Biology.
[6] Neva C. Durand,et al. Chromatin extrusion explains key features of loop and domain formation in wild-type and engineered genomes , 2015, Proceedings of the National Academy of Sciences.
[7] Michael Q. Zhang,et al. CRISPR Inversion of CTCF Sites Alters Genome Topology and Enhancer/Promoter Function , 2015, Cell.
[8] A. Visel,et al. Disruptions of Topological Chromatin Domains Cause Pathogenic Rewiring of Gene-Enhancer Interactions , 2015, Cell.
[9] E. Guillén-Navarro,et al. Identification of the fourth duplication of upstream IHH regulatory elements, in a family with craniosynostosis Philadelphia type, helps to define the phenotypic characterization of these regulatory elements , 2015, American journal of medical genetics. Part A.
[10] D. Odom,et al. Comparative Hi-C Reveals that CTCF Underlies Evolution of Chromosomal Domain Architecture , 2015, Cell reports.
[11] Stefan Mundlos,et al. Deletions, Inversions, Duplications: Engineering of Structural Variants using CRISPR/Cas in Mice. , 2015, Cell reports.
[12] Neva C. Durand,et al. A 3D Map of the Human Genome at Kilobase Resolution Reveals Principles of Chromatin Looping , 2014, Cell.
[13] T. Meehan,et al. An atlas of active enhancers across human cell types and tissues , 2014, Nature.
[14] Sandra Ruf,et al. An integrated holo-enhancer unit defines tissue and gene specificity of the Fgf8 regulatory landscape. , 2013, Developmental cell.
[15] Michael W. Perry,et al. Precision of Hunchback Expression in the Drosophila Embryo , 2012, Current Biology.
[16] P. Revy,et al. Cernunnos Deficiency Reduces Thymocyte Life Span and Alters the T Cell Repertoire in Mice and Humans , 2012, Molecular and Cellular Biology.
[17] L. Lettice,et al. Human limb abnormalities caused by disruption of hedgehog signaling. , 2012, Trends in genetics : TIG.
[18] Wouter de Laat,et al. A Regulatory Archipelago Controls Hox Genes Transcription in Digits , 2011, Cell.
[19] A. Stathopoulos,et al. Complex interactions between cis-regulatory modules in native conformation are critical for Drosophila snail expression , 2011, Development.
[20] Laurence Ettwiller,et al. Large-scale analysis of the regulatory architecture of the mouse genome with a transposon-associated sensor , 2011, Nature Genetics.
[21] William Stafford Noble,et al. FIMO: scanning for occurrences of a given motif , 2011, Bioinform..
[22] S. Mundlos,et al. Copy-number variations involving the IHH locus are associated with syndactyly and craniosynostosis. , 2011, American journal of human genetics.
[23] R. Young,et al. Histone H3K27ac separates active from poised enhancers and predicts developmental state , 2010, Proceedings of the National Academy of Sciences.
[24] T. Mikkelsen,et al. The NIH Roadmap Epigenomics Mapping Consortium , 2010, Nature Biotechnology.
[25] Jacques P. Bothma,et al. Shadow Enhancers Foster Robustness of Drosophila Gastrulation , 2010, Current Biology.
[26] S. Mundlos,et al. Receptor tyrosine kinase-like orphan receptor 2 (ROR2) and Indian hedgehog regulate digit outgrowth mediated by the phalanx-forming region , 2010, Proceedings of the National Academy of Sciences.
[27] S. Castro-Obregón,et al. Progressive interdigital cell death: regulation by the antagonistic interaction between fibroblast growth factor 8 and retinoic acid , 2009, Development.
[28] M. Levine,et al. Shadow Enhancers as a Source of Evolutionary Novelty , 2008, Science.
[29] Michael M. Murphy,et al. Lymphocyte-specific compensation for XLF/cernunnos end-joining functions in V(D)J recombination. , 2008, Molecular cell.
[30] R. Hill. How to make a zone of polarizing activity: Insights into limb development via the abnormality preaxial polydactyly , 2007, Development, growth & differentiation.
[31] Dustin E. Schones,et al. High-Resolution Profiling of Histone Methylations in the Human Genome , 2007, Cell.
[32] Inna Dubchak,et al. VISTA Enhancer Browser—a database of tissue-specific human enhancers , 2006, Nucleic Acids Res..
[33] A. Fischer,et al. Cernunnos, a Novel Nonhomologous End-Joining Factor, Is Mutated in Human Immunodeficiency with Microcephaly , 2006, Cell.
[34] Paul T. Groth,et al. The ENCODE (ENCyclopedia Of DNA Elements) Project , 2004, Science.
[35] A. McMahon,et al. Indian hedgehog signaling regulates proliferation and differentiation of chondrocytes and is essential for bone formation. , 1999, Genes & development.
[36] M. Monk,et al. HPRT-deficient (Lesch–Nyhan) mouse embryos derived from germline colonization by cultured cells , 1987, Nature.
[37] Elzo de Wit,et al. 4C technology: protocols and data analysis. , 2012, Methods in enzymology.
[38] A. Hadjantonakis,et al. Generation of chimeras by aggregation of embryonic stem cells with diploid or tetraploid mouse embryos. , 2011, Methods in molecular biology.
[39] K. Pollard,et al. Detection of nonneutral substitution rates on mammalian phylogenies. , 2010, Genome research.
[40] Claude-Alain H. Roten,et al. Fast and accurate short read alignment with Burrows–Wheeler transform , 2009, Bioinform..