Maps of Open Chromatin Guide the Functional Follow-Up of Genome-Wide Association Signals: Application to Hematological Traits
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Berthold Göttgens | Nicole Soranzo | Suthesh Sivapalaratnam | Panos Deloukas | Hanneke Basart | Augusto Rendon | Tsun-Po Yang | Dirk S. Paul | Marloes R. Tijssen | Stuart Meacham | Willem H. Ouwehand | Jacqui White | P. Deloukas | W. Ouwehand | B. Göttgens | A. Rendon | N. Soranzo | S. Sivapalaratnam | M. Trip | James P. Nisbet | Tsun-Po Yang | H. Basart | D. Paul | M. Tijssen | S. Meacham | Jacqui K. White | Katta Hautaviita | Jonna Tallila | Mieke D. Trip | J. Tallila | Katta Hautaviita | Stuart Meacham | M. R. Tijssen | Jacqui White
[1] David J Young,et al. High‐throughput mapping of origins of replication in human cells , 2007, EMBO reports.
[2] D. Price,et al. Formaldehyde‐assisted isolation of regulatory elements , 2009, Wiley interdisciplinary reviews. Systems biology and medicine.
[3] S. Teichmann,et al. A HaemAtlas: characterizing gene expression in differentiated human blood cells , 2008, Blood.
[4] K. Irie,et al. The oncoprotein Evi-1 represses TGF-β signalling by inhibiting Smad3 , 1998, Nature.
[5] Tsun-Po Yang,et al. Genevar: a database and Java application for the analysis and visualization of SNP-gene associations in eQTL studies , 2010, Bioinform..
[6] S. Watson,et al. Thrombopoietin potentiates collagen receptor signaling in platelets through a phosphatidylinositol 3-kinase-dependent pathway. , 2000, Blood.
[7] V. Iyer,et al. FAIRE (Formaldehyde-Assisted Isolation of Regulatory Elements) isolates active regulatory elements from human chromatin. , 2007, Genome research.
[8] C. Lozzio,et al. Human chronic myelogenous leukemia cell-line with positive Philadelphia chromosome. , 1975, Blood.
[9] Lincoln Stein,et al. Reactome: a database of reactions, pathways and biological processes , 2010, Nucleic Acids Res..
[10] Peter Donnelly,et al. A common sequence motif associated with recombination hot spots and genome instability in humans , 2008, Nature Genetics.
[11] Chris Mungall,et al. AmiGO: online access to ontology and annotation data , 2008, Bioinform..
[12] D. Witte,et al. Megakaryoblastic leukemia in an infant: Establishment of a megakaryocytic tumor cell line in athymic nude mice , 1986 .
[13] M. McCarthy,et al. Genome-wide association studies for complex traits: consensus, uncertainty and challenges , 2008, Nature Reviews Genetics.
[14] Simon C. Potter,et al. A novel variant on chromosome 7q22.3 associated with mean platelet volume, counts, and function. , 2009, Blood.
[15] Chris I. Jones,et al. A functional genomics approach reveals novel quantitative trait loci associated with platelet signaling pathways. , 2009, Blood.
[16] Olle Melander,et al. From noncoding variant to phenotype via SORT1 at the 1p13 cholesterol locus , 2010, Nature.
[17] G. Rewcastle,et al. Identification of a Unique Co-operative Phosphoinositide 3-Kinase Signaling Mechanism Regulating Integrin αIIbβ3 Adhesive Function in Platelets* , 2007, Journal of Biological Chemistry.
[18] H. Kuroda,et al. Transforming growth factor-beta1 (TGF-beta1) induces thrombopoietin from bone marrow stromal cells, which stimulates the expression of TGF-beta receptor on megakaryocytes and, in turn, renders them susceptible to suppression by TGF-beta itself with high specificity. , 1999, Blood.
[19] G. Nucifora,et al. Repression of RUNX1 activity by EVI1: a new role of EVI1 in leukemogenesis. , 2007, Cancer research.
[20] Min Zhao,et al. Electrical signals control wound healing through phosphatidylinositol-3-OH kinase-γ and PTEN , 2006, Nature.
[21] D. Reich,et al. Functional Enhancers at the Gene-Poor 8q24 Cancer-Linked Locus , 2009, PLoS genetics.
[22] E. Hirsch,et al. Resistance to thromboembolism in PI3Kγ‐deficient mice , 2001 .
[23] W L Stanford,et al. Function of PI3Kgamma in thymocyte development, T cell activation, and neutrophil migration. , 2000, Science.
[24] Pablo Tamayo,et al. Gene set enrichment analysis: A knowledge-based approach for interpreting genome-wide expression profiles , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[25] W. Ouwehand,et al. Genome-wide Analysis of Simultaneous GATA1/2, RUNX1, FLI1, and SCL Binding in Megakaryocytes Identifies Hematopoietic Regulators , 2011, Developmental cell.
[26] Karen L. Mohlke,et al. A map of open chromatin in human pancreatic islets , 2010, Nature Genetics.
[27] C. Rommel,et al. PI3Kγ inhibition: towards an 'aspirin of the 21st century'? , 2006, Nature Reviews Drug Discovery.
[28] D. Altshuler,et al. A map of human genome variation from population-scale sequencing , 2010, Nature.
[29] M. Daly,et al. Genetic Mapping in Human Disease , 2008, Science.
[30] Y. Yazaki,et al. The t(3;21) fusion product, AML1/Evi-1, interacts with Smad3 and blocks transforming growth factor-beta-mediated growth inhibition of myeloid cells. , 1998, Blood.
[31] K. Dewar,et al. Allele-specific chromatin remodeling in the ZPBP2/GSDMB/ORMDL3 locus associated with the risk of asthma and autoimmune disease. , 2009, American journal of human genetics.
[32] Lon R. Cardon,et al. GLIDERS - A web-based search engine for genome-wide linkage disequilibrium between HapMap SNPs , 2009, BMC Bioinformatics.
[33] Andrew D. Johnson,et al. Genome-wide meta-analyses identifies 7 loci associated with platelet aggregation in response to agonists , 2010, Nature genetics.
[34] P. Deloukas,et al. Common Regulatory Variation Impacts Gene Expression in a Cell Type–Dependent Manner , 2009, Science.
[35] P. Giresi,et al. Isolation of active regulatory elements from eukaryotic chromatin using FAIRE (Formaldehyde Assisted Isolation of Regulatory Elements). , 2009, Methods.
[36] Christian Gieger,et al. A genome-wide meta-analysis identifies 22 loci associated with eight hematological parameters in the HaemGen consortium , 2009, Nature Genetics.
[37] Richard Wade-Martins,et al. A Common Variant Associated with Dyslexia Reduces Expression of the KIAA0319 Gene , 2009, PLoS genetics.
[38] Thomas Werner,et al. MatInspector and beyond: promoter analysis based on transcription factor binding sites , 2005, Bioinform..
[39] Marketa Zvelebil,et al. Phosphoinositide 3-kinase signalling--which way to target? , 2003, Trends in pharmacological sciences.
[40] F. Collins,et al. Potential etiologic and functional implications of genome-wide association loci for human diseases and traits , 2009, Proceedings of the National Academy of Sciences.
[41] Lincoln Stein,et al. Reactome knowledgebase of human biological pathways and processes , 2008, Nucleic Acids Res..
[42] Life Technologies,et al. A map of human genome variation from population-scale sequencing , 2011 .
[43] Peng Gao,et al. Comparative genome analysis of lignin biosynthesis gene families across the plant kingdom , 2009, BMC Bioinformatics.
[44] Peter Donnelly,et al. Progress and challenges in genome-wide association studies in humans , 2008, Nature.
[45] William Stafford Noble,et al. Identification and analysis of functional elements in 1% of the human genome by the ENCODE pilot project , 2007, Nature.
[46] E. Bresnick,et al. Direct interaction of NF-E2 with hypersensitive site 2 of the beta-globin locus control region in living cells. , 2000, Blood.
[47] G. Roth,et al. Developing relationships: arterial platelet adhesion, glycoprotein Ib, and leucine-rich glycoproteins. , 1991, Blood.
[48] Esko Ukkonen,et al. The common colorectal cancer predisposition SNP rs6983267 at chromosome 8q24 confers potential to enhanced Wnt signaling , 2009, Nature Genetics.
[49] A. Kilbey,et al. The Evi-1 proto-oncogene encodes a transcriptional repressor activity associated with transformation , 1997, Oncogene.
[50] M. Lieberman,et al. In vitro establishment and characterization of a human megakaryoblastic cell line , 1990 .
[51] P. Hawkins,et al. PI3Kγ Is a Key Regulator of Inflammatory Responses and Cardiovascular Homeostasis , 2007, Science.
[52] E. Dermitzakis,et al. Candidate Causal Regulatory Effects by Integration of Expression QTLs with Complex Trait Genetic Associations , 2010, PLoS genetics.
[53] C. Gahmberg,et al. K562—A human erythroleukemic cell line , 1979, International journal of cancer.