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Evangelia interaction [101 articles]

Recent papers added to Evangelia library classified by the tag interaction. You can also see everyone's interaction.
  • The Phosphatase Cdc14 Triggers Mitotic Exit by Reversal of Cdk-Dependent Phosphorylation
    Molecular Cell, Vol. 2, No. 6. (December 1998), pp. 709-718.
    by Rosella Visintin, Karen Craig, Ellen S Hwang, Susanne Prinz, Mike Tyers, Angelika Amon
    posted to example interaction peptides by Evangelia on 2008-05-21 14:29:39 as **
  • DBC1 is a negative regulator of SIRT1
    Nature, Vol. 451, No. 7178., pp. 583-586.
    by Ja-Eun Kim, Junjie Chen, Zhenkun Lou
    posted to example interaction protein peptides by Evangelia on 2008-05-09 11:57:10 as read along with 1 person jyuh
  • A Systematic Assessment of MHC Class II Peptide Binding Predictions and Evaluation of a Consensus Approach
    PLoS Computational Biology:, Vol. 4, No. 4. (2008), e1000048.
    by P Wang, J Sidney, C Dow, B Mothé, A Sette, B Peters
    posted to binding interaction mhc peptides prediction by Evangelia on 2008-05-06 13:55:00 as **
  • The structure and interactions of the proline rich domain of ASPP2
    J. Biol. Chem. (30 April 2008), M708717200.
    by Shahar Rotem, Chen Katz, Hadar Benyamini, Mario Lebendiker, Dmitry B Veprintsev, Stefan Rudiger, Tsafi Danieli, Assaf Friedler
    posted to domain interaction peptides proline-rich protein by Evangelia on 2008-05-06 13:17:03 as **
  • From the Cover: Structural basis and prediction of substrate specificity in protein serine/threonine kinases
    PNAS, Vol. 100, No. 1. (7 January 2003), pp. 74-79.
    by Ross I Brinkworth, Robert A Breinl, Bostjan Kobe
  • The Many Faces of Protein–Protein Interactions: A Compendium of Interface Geometry
    PLoS Computational Biology, Vol. 2, No. 9. (1 September 2006), e124.
    by Wan K Kim, Andreas Henschel, Christof Winter, Michael Schroeder
  • Predicting protein--protein interactions from primary structure.
    Bioinformatics, Vol. 17, No. 5. (May 2001), pp. 455-460.
    by JR Bock, DA Gough
  • Conserved network motifs allow protein-protein interaction prediction
    Bioinformatics, Vol. 20, No. 18., 3346.
    by Istvan Albert, Reka Albert
    posted to interaction network use by Evangelia on 2008-03-25 20:01:26 as ** along with 2 people cjeans iris_2001
  • Detecting Protein Function and Protein-Protein Interactions from Genome Sequences
    Science, Vol. 285, No. 5428. (30 July 1999), pp. 751-753.
    by Edward M Marcotte, Matteo Pellegrini, Ho-Leung Ng, Danny W Rice, Todd O Yeates, David Eisenberg
  • SCOPPI: a structural classification of protein-protein interfaces.
    Nucleic Acids Res, Vol. 34, No. Database issue. (1 January 2006)
    by C Winter, A Henschel, WK Kim, M Schroeder
  • 3did: interacting protein domains of known three-dimensional structure
    Nucleic Acids Research, Vol. 33, No. Database. (2005), pp. D413-D417.
    by Amelie Stein, Robert B Russell, Patrick Aloy
    posted to database domain interaction use by Evangelia on 2008-03-25 19:19:55 as ***
  • BIND--a data specification for storing and describing biomolecular interactions, molecular complexes and pathways.
    Bioinformatics, Vol. 16, No. 5. (May 2000), pp. 465-477.
    by GD Bader, CW Hogue
  • Towards a proteome-scale map of the human protein–protein interaction network
    Nature (28 September 2005)
    by Jean-François Rual, Kavitha Venkatesan, Tong Hao, Tomoko Hirozane-Kishikawa, Amélie Dricot, Ning Li, Gabriel F Berriz, Francis D Gibbons, Matija Dreze, Nono Ayivi-Guedehoussou, Niels Klitgord, Christophe Simon, Mike Boxem, Stuart Milstein, Jennifer Rosenberg, Debra S Goldberg, Lan V Zhang, Sharyl L Wong, Giovanni Franklin, Siming Li, Joanna S Albala, Janghoo Lim, Carlene Fraughton, Estelle Llamosas, Sebiha Cevik, Camille Bex, Philippe Lamesch, Robert S Sikorski, Jean Vandenhaute, Huda Y Zoghbi, Alex Smolyar, Stephanie Bosak, Reynaldo Sequerra, Lynn Doucette-Stamm, Michael E Cusick, David E Hill, Frederick P Roth, Marc Vidal
  • Finding biologically relevant protein domain interactions: conserved binding mode analysis.
    Protein Sci, Vol. 15, No. 2. (February 2006), pp. 352-361.
    by BA Shoemaker, AR Panchenko, SH Bryant
    posted to domain interaction use by Evangelia on 2008-03-25 19:12:45 as *** along with 2 people bicko jlh64
  • Ten thousand interactions for the molecular biologist
    Nat Biotech, Vol. 22, No. 10. (October 2004), pp. 1317-1321.
    by Patrick Aloy, Robert B Russell
  • Dehydron: a structurally encoded signal for protein interaction.
    Biophys J, Vol. 85, No. 3. (September 2003), pp. 1914-1928.
  • Intrinsically disordered protein
    Journal of Molecular Graphics and Modelling, Vol. 19, No. 1. (February 2001), pp. 26-59.
    by Keith A Dunker, David J Lawson, Celeste J Brown, Ryan M Williams, Pedro Romero, Jeong S Oh, Christopher J Oldfield, Andrew M Campen, Catherine M Ratliff, Kerry W Hipps, Juan Ausio, Mark S Nissen, Raymond Reeves, Chulhee Kang, Charles R Kissinger, Robert W Bailey, Michael D Griswold, Wah Chiu, Ethan C Garner, Zoran Obradovic
    posted to disorder interaction protein use by Evangelia on 2008-03-18 15:05:49 as *** along with 1 person hsekiguc
  • STRING: known and predicted protein-protein associations, integrated and transferred across organisms.
    Nucleic Acids Res, Vol. 33, No. Database issue. (1 January 2005)
    by C von Mering, LJ Jensen, B Snel, SD Hooper, M Krupp, M Foglierini, N Jouffre, MA Huynen, P Bork
  • Comparative assessment of large-scale data sets of protein-protein interactions.
    Nature, Vol. 417, No. 6887. (23 May 2002), pp. 399-403.
    by C von Mering, R Krause, B Snel, M Cornell, SG Oliver, S Fields, P Bork
  • Comparative interactomics
    FEBS Letters, Vol. 579, No. 8. (21 March 2005), pp. 1828-1833.
    by Gianni Cesareni, Arnaud Ceol, Caius Gavrila, Luisa M Palazzi, Maria Persico, Maria V Schneider
    posted to interaction networks use by Evangelia on 2008-03-18 14:42:21 as **
  • Error and attack tolerance of complex networks
    Nature, Vol. 406, No. 6794. (27 July 2000), pp. 378-382.
    by Reka Albert, Hawoong Jeong, Albert-Laszlo Barabasi
  • Mining α-Helix-Forming Molecular Recognition Features with Cross Species Sequence Alignments
    Biochemistry, Vol. 46, No. 47. (27 November 2007), pp. 13468-13477.
    by Y Cheng, CJ Oldfield, J Meng, P Romero, VN Uversky, AK Dunker
    posted to interaction regognition use networks by Evangelia on 2008-03-18 14:19:55 as ***
  • Cytoscape: a software environment for integrated models of biomolecular interaction networks.
    Genome Res, Vol. 13, No. 11. (November 2003), pp. 2498-2504.
    by P Shannon, A Markiel, O Ozier, NS Baliga, JT Wang, D Ramage, N Amin, B Schwikowski, T Ideker
  • Organization of cell-regulatory systems through modular-protein-interaction domains
    Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, Vol. 361, No. 1807. (15 June 2003), pp. 1251-1262.
    by , Tony Pawson
    posted to interaction modularity networks regulation use by Evangelia on 2008-03-18 12:48:08 as ***
  • Lethality and centrality in protein networks
    Nature, Vol. 411, No. 6833. (3 May 2001), pp. 41-42.
    by H Jeong, SP Mason, AL Barabasi, ZN Oltvai
  • The large-scale organization of metabolic networks.
    Nature, Vol. 407, No. 6804. (5 October 2000), pp. 651-654.
    by H Jeong, B Tombor, R Albert, ZN Oltvai, AL Barabási
  • Protein complexes and functional modules in molecular networks.
    Proc Natl Acad Sci U S A, Vol. 100, No. 21. (14 October 2003), pp. 12123-12128.
    by V Spirin, LA Mirny
  • The elusive yeast interactome.
    Genome Biol, Vol. 7, No. 6. (2006)
    by J Goll, P Uetz
  • Community structure in social and biological networks.
    Proc Natl Acad Sci U S A, Vol. 99, No. 12. (11 June 2002), pp. 7821-7826.
    by M Girvan, ME Newman
  • Osprey: a network visualization system.
    Genome Biol, Vol. 4, No. 3. (2003)
    by BJ Breitkreutz, C Stark, M Tyers
  • Stratus Not Altocumulus: A New View of the Yeast Protein Interaction Network.
    PLoS Biol, Vol. 4, No. 10. (19 September 2006)
    by Nizar N N Batada, Teresa Reguly, Ashton Breitkreutz, Lorrie Boucher, Bobby-Joe J Breitkreutz, Laurence D D Hurst, Mike Tyers
  • Flexible nets. The roles of intrinsic disorder in protein interaction networks.
    FEBS J, Vol. 272, No. 20. (October 2005), pp. 5129-5148.
    by AK Dunker, MS Cortese, P Romero, LM Iakoucheva, VN Uversky
  • Deciphering Protein–Protein Interactions. Part II. Computational Methods to Predict Protein and Domain Interaction Partners
    PLoS Computational Biology, Vol. 3, No. 4. (1 April 2007), e43.
    by Benjamin A Shoemaker, Anna R Panchenko
  • Deciphering Protein–Protein Interactions. Part I. Experimental Techniques and Databases
    PLoS Computational Biology, Vol. 3, No. 3. (1 March 2007), e42.
    by Benjamin A Shoemaker, Anna R Panchenko
  • Getting connected: analysis and principles of biological networks.
    Genes Dev, Vol. 21, No. 9. (1 May 2007), pp. 1010-1024.
    by X Zhu, M Gerstein, M Snyder
  • The Modular Organization of Domain Structures: Insights into Protein–Protein Binding
    PLoS Computational Biology, Vol. 3, No. 12. (1 December 2007), e239.
    by Del, Pablo Carbonell
    posted to domains interaction structure by Evangelia on 2008-01-15 14:03:52 as *** along with 3 people mingzhi Ema january
  • Statistical analysis of physical-chemical properties and prediction of protein-protein interfaces
    J Mol Model, Vol. 13 (2007), pp. 1157-1167.
    by Surendra S Negi, Werner Braun
  • Protein interactions: is seeing believing?
    Trends Biochem Sci (31 October 2007)
    by Joel P P Mackay, Margaret Sunde, Jason A A Lowry, Merlin Crossley, Jacqueline M M Matthews
  • SlitRobo interactions during cortical development
    Journal of Anatomy, Vol. 211, No. 2. (August 2007), pp. 188-198.
    posted to complex development experiment interaction robo by Evangelia on 2007-10-24 08:57:40 as read
  • The crystal structure of the ligand binding module of axonin-1/TAG-1 suggests a zipper mechanism for neural cell adhesion.
    Cell, Vol. 101, No. 4. (12 May 2000), pp. 425-433.
    posted to binding experiment interaction robo structure by Evangelia on 2007-10-23 16:56:05 as read
  • SuperTarget and Matador: resources for exploring drug-target relationships.
    Nucleic Acids Res (16 October 2007)
    by Stefan Günther, Michael Kuhn, Mathias Dunkel, Monica Campillos, Christian Senger, Evangelia Petsalaki, Jessica Ahmed, Eduardo Garcia G Urdiales, Andreas Gewiess, Lars Juhl J Jensen, Reinhard Schneider, Roman Skoblo, Robert B B Russell, Philip E E Bourne, Peer Bork, Robert Preissner
  • Structural insights into the Slit-Robo complex.
    Proc Natl Acad Sci U S A, Vol. 104, No. 38. (18 September 2007), pp. 14923-14928.
    by C Morlot, NM Thielens, RB Ravelli, W Hemrika, RA Romijn, P Gros, S Cusack, AA McCarthy
  • Evidence for the existence of two Robo3 isoforms with divergent biochemical properties
    Molecular and Cellular Neuroscience, Vol. 30, No. 4. (December 2005), pp. 485-493.
    by Laura Camurri, Elvira Mambetisaeva, Derek Davies, John Parnavelas, Vasi Sundaresan, William Andrews
    posted to binding experimental interaction peptides prediction protein robo by Evangelia on 2007-10-17 13:22:57 as read
  • Structural Characterisation and Functional Significance of Transient Protein-Protein Interactions
    Journal of Molecular Biology, Vol. 325, No. 5. (31 January 2003), pp. 991-1018.
    by Irene M Nooren, Janet M Thornton
  • Structure of an Ultraweak Protein-Protein Complex and Its Crucial Role in Regulation of Cell Morphology and Motility
    Molecular Cell, Vol. 17, No. 4. (18 February 2005), pp. 513-523.
    by Julia Vaynberg, Tomohiko Fukuda, Ka Chen, Olga Vinogradova, Algirdas Velyvis, Yizeng Tu, Lily Ng, Chuanyue Wu, Jun Qin
  • Structural systems biology: modelling protein interactions
    Nature Reviews Molecular Cell Biology, Vol. 7, No. 3., pp. 188-197.
    by Patrick Aloy, Robert B Russell
  • Specific versus non-specific contacts in protein crystals
    Nat Struct Mol Biol, Vol. 4, No. 12. (December 1997), pp. 973-974.
    by Joel Janin
    posted to specificity crystal_packing interaction interface by Evangelia on 2007-10-02 10:37:50 as read
  • Discriminating between homodimeric and monomeric proteins in the crystalline state
    Proteins: Structure, Function, and Genetics, Vol. 41, No. 1. (2000), pp. 47-57.
    by Hannes Ponstingl, Kim Henrick, Janet M Thornton
    posted to crystal_packing interaction interface protein protein-protein by Evangelia on 2007-10-02 10:27:59 as read
  • Conservation helps to identify biologically relevant crystal contacts.
    J Mol Biol, Vol. 313, No. 2. (19 October 2001), pp. 399-416.
    by WS Valdar, JM Thornton
  • Exploring the charge space of protein-protein association: A proteomic study
    Proteins: Structure, Function, and Bioinformatics, Vol. 60, No. 3. (2005), pp. 341-352.
    by Yossi Shaul, Gideon Schreiber
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