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PUBMED FOR HANDHELDS

Journal Abstract Search


301 related items for PubMed ID: 28298180

  • 1.
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  • 2. Mycobacterium tuberculosis and Clostridium difficille interactomes: demonstration of rapid development of computational system for bacterial interactome prediction.
    Ananthasubramanian S, Metri R, Khetan A, Gupta A, Handen A, Chandra N, Ganapathiraju M.
    Microb Inform Exp; 2012 Mar 21; 2():4. PubMed ID: 22587966
    [Abstract] [Full Text] [Related]

  • 3. Predicting the interactome of Xanthomonas oryzae pathovar oryzae for target selection and DB service.
    Kim JG, Park D, Kim BC, Cho SW, Kim YT, Park YJ, Cho HJ, Park H, Kim KB, Yoon KO, Park SJ, Lee BM, Bhak J.
    BMC Bioinformatics; 2008 Jan 24; 9():41. PubMed ID: 18215330
    [Abstract] [Full Text] [Related]

  • 4. Interactome evolution: insights from genome-wide analyses of protein-protein interactions.
    Ghadie MA, Coulombe-Huntington J, Xia Y.
    Curr Opin Struct Biol; 2018 Jun 24; 50():42-48. PubMed ID: 29112911
    [Abstract] [Full Text] [Related]

  • 5. Introducing the hypothome: a way to integrate predicted proteins in interactomes.
    Desler C, Zambach S, Suravajhala P, Rasmussen LJ.
    Int J Bioinform Res Appl; 2014 Jun 24; 10(6):647-52. PubMed ID: 25335568
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  • 7. APID interactomes: providing proteome-based interactomes with controlled quality for multiple species and derived networks.
    Alonso-López D, Gutiérrez MA, Lopes KP, Prieto C, Santamaría R, De Las Rivas J.
    Nucleic Acids Res; 2016 Jul 08; 44(W1):W529-35. PubMed ID: 27131791
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  • 9. Structural domain-domain interactions: assessment and comparison with protein-protein interaction data to improve the interactome.
    Prieto C, De Las Rivas J.
    Proteins; 2010 Jan 08; 78(1):109-17. PubMed ID: 19731379
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  • 10. Quantitative Tagless Copurification: A Method to Validate and Identify Protein-Protein Interactions.
    Shatsky M, Dong M, Liu H, Yang LL, Choi M, Singer ME, Geller JT, Fisher SJ, Hall SC, Hazen TC, Brenner SE, Butland G, Jin J, Witkowska HE, Chandonia JM, Biggin MD.
    Mol Cell Proteomics; 2016 Jun 08; 15(6):2186-202. PubMed ID: 27099342
    [Abstract] [Full Text] [Related]

  • 11. A proteome-wide protein interaction map for Campylobacter jejuni.
    Parrish JR, Yu J, Liu G, Hines JA, Chan JE, Mangiola BA, Zhang H, Pacifico S, Fotouhi F, DiRita VJ, Ideker T, Andrews P, Finley RL.
    Genome Biol; 2007 Jun 08; 8(7):R130. PubMed ID: 17615063
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  • 14. Using structural knowledge in the protein data bank to inform the search for potential host-microbe protein interactions in sequence space: application to Mycobacterium tuberculosis.
    Mahajan G, Mande SC.
    BMC Bioinformatics; 2017 Apr 04; 18(1):201. PubMed ID: 28376709
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  • 16. Structural assembly of the bacterial essential interactome.
    Gómez Borrego J, Torrent Burgas M.
    Elife; 2024 Jan 16; 13():. PubMed ID: 38226900
    [Abstract] [Full Text] [Related]

  • 17. Fundamentals of protein interaction network mapping.
    Snider J, Kotlyar M, Saraon P, Yao Z, Jurisica I, Stagljar I.
    Mol Syst Biol; 2015 Dec 17; 11(12):848. PubMed ID: 26681426
    [Abstract] [Full Text] [Related]

  • 18. Predicting protein-protein interactions from protein sequences using meta predictor.
    Xia JF, Zhao XM, Huang DS.
    Amino Acids; 2010 Nov 17; 39(5):1595-9. PubMed ID: 20386937
    [Abstract] [Full Text] [Related]

  • 19. Conserved Central Intraviral Protein Interactome of the Herpesviridae Family.
    Hernández Durán A, Grünewald K, Topf M.
    mSystems; 2019 Oct 01; 4(5):. PubMed ID: 31575665
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  • 20. A second-generation protein-protein interaction network of Helicobacter pylori.
    Häuser R, Ceol A, Rajagopala SV, Mosca R, Siszler G, Wermke N, Sikorski P, Schwarz F, Schick M, Wuchty S, Aloy P, Uetz P.
    Mol Cell Proteomics; 2014 May 01; 13(5):1318-29. PubMed ID: 24627523
    [Abstract] [Full Text] [Related]


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