A Human Platelet Receptor Protein Microarray Identifies the High Affinity Immunoglobulin E Receptor Subunit α (FcεR1α) as an Activating Platelet Endothelium Aggregation Receptor 1 (PEAR1) Ligand*
暂无分享,去创建一个
A. Kauskot | P. Verhamme | Gavin J. Wright | M. Hoylaerts | C. Vandenbriele | Yi Sun | C. Vandenbriele
[1] D. Goulding,et al. Juno is the egg Izumo receptor and is essential for mammalian fertilisation , 2014, Nature.
[2] Julian C. Rayner,et al. A Library of Functional Recombinant Cell-surface and Secreted P. falciparum Merozoite Proteins* , 2013, Molecular & Cellular Proteomics.
[3] K. Garcia,et al. An Extracellular Interactome of Immunoglobulin and LRR Proteins Reveals Receptor-Ligand Networks , 2013, Cell.
[4] J. O’Connell,et al. Genetic Variation in PEAR1 Is Associated With Platelet Aggregation and Cardiovascular Outcomes , 2013, Circulation. Cardiovascular genetics.
[5] Gavin J. Wright,et al. Expression of recombinant ITGA2 and CD109 for the detection of human platelet antigen (HPA)‐5 and ‐15 alloantibodies , 2013, British journal of haematology.
[6] M. Chehade,et al. Use of Omalizumab in the Treatment of Food Allergy and Anaphylaxis , 2013, Current Allergy and Asthma Reports.
[7] J. Danesh,et al. Large-scale association analysis identifies new risk loci for coronary artery disease , 2012, Nature Genetics.
[8] A. Hartzema,et al. Assessing the association between omalizumab and arteriothrombotic events through spontaneous adverse event reporting , 2012, Journal of asthma and allergy.
[9] M. Gallagher-Jones,et al. A benchmarked protein microarray-based platform for the identification of novel low-affinity extracellular protein interactions , 2012, Analytical biochemistry.
[10] A. Kauskot,et al. A novel mechanism of sustained platelet αIIbβ3 activation via PEAR1. , 2012, Blood.
[11] Melina Fan,et al. Addgene provides an open forum for plasmid sharing , 2012, Nature Biotechnology.
[12] Gavin J. Wright,et al. Avidity-based Extracellular Interaction Screening (AVEXIS) for the Scalable Detection of Low-affinity Extracellular Receptor-Ligand Interactions , 2012, Journal of visualized experiments : JoVE.
[13] N. Lewin-Koh,et al. A secreted protein microarray platform for extracellular protein interaction discovery. , 2012, Analytical biochemistry.
[14] Gavin J. Wright,et al. Jamb and Jamc Are Essential for Vertebrate Myocyte Fusion , 2011, PLoS biology.
[15] Dominic P. Kwiatkowski,et al. BASIGIN is a receptor essential for erythrocyte invasion by Plasmodium falciparum , 2011, Nature.
[16] Andrew D. Johnson,et al. Identification of a specific intronic PEAR1 gene variant associated with greater platelet aggregability and protein expression. , 2011, Blood.
[17] S. Teichmann,et al. Construction of a Large Extracellular Protein Interaction Network and Its Resolution by Spatiotemporal Expression Profiling* , 2010, Molecular & Cellular Proteomics.
[18] Andrew D. Johnson,et al. Genome-wide meta-analyses identifies 7 loci associated with platelet aggregation in response to agonists , 2010, Nature genetics.
[19] A. Orth,et al. Screening the mammalian extracellular proteome for regulators of embryonic human stem cell pluripotency , 2010, Proceedings of the National Academy of Sciences.
[20] Gavin J. Wright,et al. A cell surface interaction network of neural leucine-rich repeat receptors , 2009, Genome Biology.
[21] Chris I. Jones,et al. A functional genomics approach reveals novel quantitative trait loci associated with platelet signaling pathways. , 2009, Blood.
[22] Gavin J. Wright. Signal initiation in biological systems: the properties and detection of transient extracellular protein interactions† †This article is part of a Molecular BioSystems themed issue on Computational and Systems Biology. , 2009, Molecular bioSystems.
[23] A. F. Wilson,et al. A Novel Variant in the Platelet Endothelial Aggregation Receptor-1 Gene Is Associated With Increased Platelet Aggregability , 2008, Arteriosclerosis, thrombosis, and vascular biology.
[24] Alex Bateman,et al. Large-scale screening for novel low-affinity extracellular protein interactions. , 2008, Genome research.
[25] B. Sutton,et al. IgE in allergy and asthma today , 2008, Nature Reviews Immunology.
[26] D. Baker,et al. A Vast Repertoire of Dscam Binding Specificities Arises from Modular Interactions of Variable Ig Domains , 2007, Cell.
[27] Dominique Besson,et al. A high-throughput mammalian protein expression, purification, aliquoting and storage pipeline to assemble a library of the human secretome. , 2006, Combinatorial chemistry & high throughput screening.
[28] T. Quertermous,et al. Platelet Endothelial Aggregation Receptor 1 (PEAR1), a Novel Epidermal Growth Factor Repeat-containing Transmembrane Receptor, Participates in Platelet Contact-induced Activation* , 2005, Journal of Biological Chemistry.
[29] J. Bousquet,et al. The anti-inflammatory effects of omalizumab confirm the central role of IgE in allergic inflammation. , 2005, The Journal of allergy and clinical immunology.
[30] S. Yusuf,et al. Global burden of cardiovascular diseases: part I: general considerations, the epidemiologic transition, risk factors, and impact of urbanization. , 2001, Circulation.
[31] David Cowburn,et al. The structure of the IgE Cɛ2 domain and its role in stabilizing the complex with its high-affinity receptor FcɛRIα , 2001, Nature Structural Biology.
[32] J. Kinet,et al. Structure of the Fc fragment of human IgE bound to its high-affinity receptor FcεRIα , 2000, Nature.
[33] R. Pawankar,et al. Functional expression of the high affinity receptor for IgE (FcepsilonRI) in human platelets and its' intracellular expression in human megakaryocytes. , 1999, Blood.
[34] M. Joseph,et al. Expression and functions of the high‐affinity IgE receptor on human platelets and megakaryocyte precursors , 1997, European journal of immunology.
[35] A. Togias,et al. Down-regulation of Fc(epsilon)RI expression on human basophils during in vivo treatment of atopic patients with anti-IgE antibody. , 1997, Journal of immunology.
[36] R. Briesewitz,et al. Expression of native and truncated forms of the human integrin alpha 1 subunit. , 1993, The Journal of biological chemistry.
[37] P. W. Ind. Platelet and clotting abnormalities in asthma , 1991, Clinical and experimental allergy : journal of the British Society for Allergy and Clinical Immunology.
[38] I. Bernstein,et al. Cyclic platelet dysfunction in IgE-mediated allergy. , 1978, The Journal of allergy and clinical immunology.
[39] I. Bernstein,et al. Platelet thrombopathy in asthmatic patients with elevated immunoglobulin e. , 1977, The Journal of allergy and clinical immunology.
[40] E. Tan,et al. Platelet aggregation in asthmatic and normal subjects. , 1974, Journal of Allergy and Clinical Immunology.
[41] P. Lieberman,et al. Platelet aggregation in atopic and normal patients. , 1973, The Journal of allergy and clinical immunology.
[42] K. Mossman. The Wellcome Trust Case Control Consortium, U.K. , 2008 .
[43] 長谷川俊史. Functional expression of the high affinity receptor for IgE(FcεRI)in human platelets and its intracellular expression in human megakaryocytes(ヒト血小板および巨核球における高親和性IgE受容体(FcεRI)の発現および機能の検討) , 1999 .
[44] J. R. de Sousa,et al. Platelet aggregation in allergic reactions. , 1991, International archives of allergy and applied immunology.