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schuylrps protein [23 articles]

Artikler nylig sendt til schuylrps bibliotek klassifisert med nøkkelordet protein. You can also see everyone's protein.
  • GenTHREADER: an efficient and reliable protein fold recognition method for genomic sequences.
    J Mol Biol, Vol. 287, No. 4. (9 April 1999), pp. 797-815.
    by DT Jones
  • From fold to function.
    Curr Opin Struct Biol, Vol. 10, No. 3. (June 2000), pp. 384-389.
    by J Moult, E Melamud
    posted to fold prediction protein recognition structure by schuylrp on 2007-08-03 20:54:13 as **
  • Sequence comparison and protein structure prediction.
    Curr Opin Struct Biol, Vol. 16, No. 3. (June 2006), pp. 374-384.
    by RL Dunbrack
  • Servers for protein structure prediction.
    Curr Opin Struct Biol (16 March 2006)
    by Daniel Fischer
  • Comparative modeling for protein structure prediction.
    Curr Opin Struct Biol (27 February 2006)
    by Krzysztof Ginalski
  • Detecting distant homology with Meta-BASIC.
    Nucleic Acids Res, Vol. 32, No. Web Server issue. (1 July 2004)
  • Advances in protein structure prediction and de novo protein design: A review
    Chemical Engineering Science, Vol. 61, No. 3. (February 2006), pp. 966-988.
  • 3D-Jury: a simple approach to improve protein structure predictions.
    Bioinformatics, Vol. 19, No. 8. (22 May 2003), pp. 1015-1018.
  • Template-based modeling and free modeling by I-TASSER in CASP7.
    Proteins, No. in press.
    by Yang Zhang
    posted to fold prediction protein recognition structure by schuylrp on 2007-08-03 20:45:55 as **
  • Computational methods in protein structure prediction.
    Biotechnol Bioeng, Vol. 97, No. 2. (1 June 2007), pp. 207-213.
    by CA Floudas
    posted to fold prediction protein recognition structure by schuylrp on 2007-08-03 20:43:10 as **
  • Defrosting the frozen approximation: PROSPECTOR--a new approach to threading.
    Proteins, Vol. 42, No. 3. (15 February 2001), pp. 319-331.
  • SCOP: a structural classification of proteins database for the investigation of sequences and structures.
    J. Mol. Biol., Vol. 247 (1995), pp. 536-540.
    by AG Murzin, SE Brenner, T Hubbard, C Chothia
    posted to fold prediction protein recognition structure by schuylrp on 2007-08-03 20:36:24 as **
  • Hybrid fold recognition: Combining sequence derived properties with evolutionary information
    (2000)
    by D Fischer
    posted to fold prediction protein recognition structure by schuylrp on 2007-08-03 20:35:26 as **
  • Assessment of fold recognition predictions in CASP6.
    Proteins (26 September 2005)
    by Guoli Wang, Yumi Jin, Roland L L Dunbrack
  • Critical assessment of methods of protein structure prediction (CASP)--round 6.
    Proteins, Vol. 61 Suppl 7 (2005), pp. 3-7.
  • Comparative modeling in CASP6 using consensus approach to template selection, sequence-structure alignment, and structure assessment.
    Proteins, Vol. 61 Suppl 7 (2005), pp. 99-105.
  • Progress over the first decade of CASP experiments.
    Proteins (26 September 2005)
    by Andriy Kryshtafovych, Ceslovas Venclovas, Krzysztof Fidelis, John Moult
  • Free modeling with Rosetta in CASP6.
    Proteins (26 September 2005)
    by Philip Bradley, Lars Malmström, Bin Qian, Jack Schonbrun, Dylan Chivian, David E E Kim, Jens Meiler, Kira M S M Misura, David Baker
  • Prediction of CASP6 structures using automated Robetta protocols.
    Proteins, Vol. 61 Suppl 7 (2005), pp. 157-166.
    by D Chivian, DE Kim, L Malmström, J Schonbrun, CA Rohl, D Baker
    posted to fold prediction protein recognition structure by schuylrp on 2007-08-03 20:27:35 as ** along with 1 person jwm
  • Fold recognition by concurrent use of solvent accessibility and residue depth.
    Proteins, Vol. 68, No. 3. (15 August 2007), pp. 636-645.
    by S Liu, C Zhang, S Liang, Y Zhou
  • TASSER: An automated method for the prediction of protein tertiary structures in CASP6.
    Proteins (26 September 2005)
    by Yang Zhang, Adrian K K Arakaki, Jeffrey Skolnick
  • Development and large scale benchmark testing of the PROSPECTOR_3 threading algorithm.
    Proteins, Vol. 56, No. 3. (15 August 2004), pp. 502-518.
    by J Skolnick, D Kihara, Y Zhang
  • notes The protein structure prediction problem could be solved using the current PDB library.
    Proc Natl Acad Sci U S A, Vol. 102, No. 4. (25 January 2005), pp. 1029-1034.
    by Y Zhang, J Skolnick
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