Serveur d'exploration MERS - Exploration (Accueil)

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List of bibliographic references indexed by bound

Number of relevant bibliographic references: 24.
[0-20] [0 - 20][0 - 24][20-23][20-40]
Ident.Authors (with country if any)Title
000181 (2020) Liye Chen [Oman] ; Hui Shi [Royaume-Uni] ; Danai Koftori [Royaume-Uni] ; Takuya Sekine [Royaume-Uni] ; Annalisa Nicastri [Royaume-Uni] ; Nicola Ternette [Royaume-Uni] ; Paul Bowness [Royaume-Uni]Identification of an unconventional sub-peptidome bound to the Behçet's disease - associated HLA-B*51:01 that is regulated by endoplasmic reticulum aminopeptidase 1 (ERAP1).
000366 (2019) Robert N. Kirchdoerfer ; Andrew B. WardStructure of the SARS-CoV nsp12 polymerase bound to nsp7 and nsp8 co-factors
000610 (2019) Lenong Li [États-Unis] ; Mansoor Batliwala [États-Unis] ; Marlene Bouvier [États-Unis]ERAP1 enzyme-mediated trimming and structural analyses of MHC I–bound precursor peptides yield novel insights into antigen processing and presentation
000902 (2018) Istvan Marczell [Hongrie] ; Petra Balogh [Hongrie] ; Gabor Nyiro [Hongrie] ; Anna L. Kiss [Hongrie] ; Balazs Kovacs [Hongrie] ; Gabor Bekesi [Hongrie] ; Karoly Racz [Hongrie] ; Attila Patocs [Hongrie]Membrane-bound estrogen receptor alpha initiated signaling is dynamin dependent in breast cancer cells
000B99 (2017) Charles E. Hall [États-Unis] ; Vishal N. Koparde [États-Unis] ; Maximilian Jameson-Lee [États-Unis] ; Abdelrhman G. Elnasseh [États-Unis] ; Allison F. Scalora [États-Unis] ; David J. Kobulnicky [États-Unis] ; Myrna G. Serrano [États-Unis] ; Catherine H. Roberts [États-Unis] ; Gregory A. Buck [États-Unis] ; Michael C. Neale [États-Unis] ; Daniel E. Nixon [États-Unis] ; Amir A. Toor [États-Unis]Sequence homology between HLA-bound cytomegalovirus and human peptides: A potential trigger for alloreactivity
001796 (2015) Antonia L. Pritchard [Australie] ; Marcus L. Hastie ; Michelle Neller ; Jeffrey J. Gorman ; Chris W. Schmidt ; Nicholas K. HaywardExploration of peptides bound to MHC class I molecules in melanoma.
001A62 (2014) Anna Lundin [Suède] ; Ronald Dijkman [Suisse] ; Tomas Bergström [Suède] ; Nina Kann [Suède] ; Beata Adamiak [Suède] ; Charles Hannoun [Suède] ; Eveline Kindler [Suisse] ; Hulda R. J Nsd Ttir [Suisse] ; Doreen Muth [Allemagne] ; Joeri Kint [Pays-Bas] ; Maria Forlenza [Pays-Bas] ; Marcel A. Müller [Allemagne] ; Christian Drosten [Allemagne] ; Volker Thiel [Suisse] ; Edward Trybala [Suède]Targeting Membrane-Bound Viral RNA Synthesis Reveals Potent Inhibition of Diverse Coronaviruses Including the Middle East Respiratory Syndrome Virus
001C97 (2014) Ben A. Bailey-Elkin ; Robert C. M. Knaap ; Garrett G. Johnson ; Tim J. Dalebout ; Dennis K. Ninaber ; Puck B. Van Kasteren ; Peter J. Bredenbeek ; Eric J. Snijder ; Marjolein Kikkert ; Brian L. MarkCrystal Structure of the Middle East Respiratory Syndrome Coronavirus (MERS-CoV) Papain-like Protease Bound to Ubiquitin Facilitates Targeted Disruption of Deubiquitinating Activity to Demonstrate Its Role in Innate Immune Suppression*
002045 (2013) Ishminder K. Mann [Canada] ; Raghunath Chatterjee ; Jianfei Zhao ; Ximiao He ; Matthew T. Weirauch ; Timothy R. Hughes ; Charles VinsonCG methylated microarrays identify a novel methylated sequence bound by the CEBPB|ATF4 heterodimer that is active in vivo.
002102 (2013) N. A. Bulienkov [Russie] ; E. A. Zheligovskaya [Russie]System-forming functions of bound water in the mechanism of topochemical reactions of formation of ultrathin layers on water surface
002249 (2012) Joseph G. Holland [États-Unis] ; Franz M. GeigerImportance of length and sequence order on magnesium binding to surface-bound oligonucleotides studied by second harmonic generation and atomic force microscopy.
002517 (2011) N. A. Bulienkov [Russie]Systemic structural modular generalization of the crystallography of bound water applied to study the mechanisms of processes in biosystems at the atomic and molecular level
002A08 (2008) Julian M. Rozenberg [États-Unis] ; Andrey Shlyakhtenko [États-Unis] ; Kimberly Glass [États-Unis] ; Vikas Rishi [États-Unis] ; Maxim V. Myakishev [États-Unis] ; Peter C. Fitzgerald [États-Unis] ; Charles Vinson [États-Unis]All and only CpG containing sequences are enriched in promoters abundantly bound by RNA polymerase II in multiple tissues
002B07 (2008) Jianhui Zhang [République populaire de Chine] ; Huaiyong Liu ; Zhenlin Wang ; Naiben MingAu‐Induced Polyvinylpyrrolidone Aggregates with Bound Water for the Highly Shape‐Selective Synthesis of Silica Nanostructures
002D19 (2006) Anish Suri [États-Unis] ; James J. Walters ; Matteo G. Levisetti ; Michael L. Gross ; Emil R. UnanueIdentification of naturally processed peptides bound to the class I MHC molecule H-2Kd of normal and TAP-deficient cells.
002F55 (2005) Dariusz Stepniak [Pays-Bas] ; L. Willemijn Vader [Pays-Bas] ; Yvonne Kooy [Pays-Bas] ; Peter A. Van Veelen [Pays-Bas] ; Antonis Moustakas [Grèce] ; Nikolaos A. Papandreou [Grèce] ; Elias Eliopoulos [Grèce] ; Jan Wouter Drijfhout [Pays-Bas] ; George K. Papadopoulos [Grèce] ; Frits Koning [Pays-Bas]T-cell recognition of HLA-DQ2-bound gluten peptides can be influenced by an N-terminal proline at p-1
003440 (2001) A. Berkessel [Allemagne] ; N. Gasch ; K. Glaubitz ; C. KochHighly enantioselective enone epoxidation catalyzed by short solid phase-bound peptides: dominant role of peptide helicity.
003769 (2000) M. Thompson [Canada] ; B. A. Cavic [Canada] ; L. M. Furtado [Canada] ; Z. Morel [Canada] ; N. Tassew [Canada]Acoustic Wave Study of Interfacially-Bound Proteins, Nucleic Acids and Blood Platelets
003D61 (1997) Anne B. Vogt [Allemagne] ; Harald Kropshofer [Allemagne] ; Günter J. H Mmerling [Allemagne]How HLA-DM Affects the Peptide Repertoire Bound to HLA-DR Molecules
003F47 (1996) Ulrich Reineke [Allemagne] ; Robert Sabat [Allemagne] ; Achim Kramer [Allemagne] ; Rolf D. Stigler [Allemagne] ; Martina Seifert [Allemagne] ; Thomas Michel [Allemagne] ; Hans D. Volk [Allemagne] ; Jens Schneider-Mergener [Allemagne]Mapping protein-protein contact sites using cellulose-bound peptide scans
004038 (1995) J. Ybarra [États-Unis] ; P M HorowitzInactive GroEL monomers can be isolated and reassembled to functional tetradecamers that contain few bound peptides.

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