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Tag correlated_mutations [37 articles]

Recent papers classified by the tag correlated_mutations.
  • Co-Evolving Motions at Protein−Protein Interfaces of Two-Component Signaling Systems Identified by Covariance Analysis
    Biochemistry (28 June 2008)
    by Hendrik Szurmant, Benjamin G Bobay, Robert A White, Daniel M Sullivan, Richele J Thompson, Terence Hwa, James A Hoch, John Cavanagh
  • The prediction of protein contacts from multiple sequence alignments.
    Protein Eng, Vol. 9, No. 11. (November 1996), pp. 941-948.
    by DJ Thomas, G Casari, C Sander
    posted to correlated_mutations by jteyra on 2008-08-19 09:23:36 as ** along with 1 person gbart
  • Can correlated mutations in protein domain families be used for protein design?
    Brief Bioinform, Vol. 2, No. 3. (1 January 2001), pp. 279-288.
    by Sylvia B Nagl
    posted to correlated_mutations by jteyra on 2008-08-19 09:28:52 as ** along with 1 person Lombardo_7
  • Correlated mutations and residue contacts in proteins.
    Proteins, Vol. 18, No. 4. (April 1994), pp. 309-317.
  • Allosteric determinants in guanine nucleotide-binding proteins.
    Proc Natl Acad Sci U S A, Vol. 100, No. 24. (25 November 2003), pp. 14445-14450.
    by ME Hatley, SW Lockless, SK Gibson, AG Gilman, R Ranganathan
  • On evolutionary conservation of thermodynamic coupling in proteins.
    J Biol Chem, Vol. 279, No. 18. (30 April 2004), pp. 19046-19050.
    by AA Fodor, RW Aldrich
  • Influence of conservation on calculations of amino acid covariance in multiple sequence alignments.
    Proteins, Vol. 56, No. 2. (1 August 2004), pp. 211-221.
    by AA Fodor, RW Aldrich
  • Structural biologyForm and function instructions
    Nature, Vol. 437, No. 7058. (21 September 2005), pp. 486-487.
    by Jeffery W Kelly
  • Evolutionary information for specifying a protein fold
    Nature, Vol. 437, No. 7058., pp. 512-518.
    by Michael Socolich, Steve W Lockless, William P Russ, Heather Lee, Kevin H Gardner, Rama Ranganathan
  • Natural-like function in artificial WW domains
    Nature, Vol. 437, No. 7058., pp. 579-583.
    by William P Russ, Drew M Lowery, Prashant Mishra, Michael B Yaffe, Rama Ranganathan
  • Correlated substitution analysis and the prediction of amino acid structural contacts
    Brief Bioinform (13 November 2007), bbm052.
    by David S Horner, Walter Pirovano, Graziano Pesole
  • Detection and reduction of evolutionary noise in correlated mutation analysis
    Protein Engineering, Design and Selection, Vol. 18, No. 5. (1 May 2005), pp. 247-253.
    by Orly Noivirt, Miriam Eisenstein, Amnon Horovitz
  • Intramolecular Signaling Pathways Revealed by Modeling Anisotropic Thermal Diffusion
    Journal of Molecular Biology, Vol. 351, No. 2. (12 August 2005), pp. 345-354.
    by Nobuyuki Ota, David A Agard
  • A method to predict functional residues in proteins.
    Nat Struct Biol, Vol. 2, No. 2. (February 1995), pp. 171-178.
  • In silico Discovery of Enzyme-Substrate Specificity-determining Residue Clusters
    Journal of Molecular Biology, Vol. 352, No. 5. (7 October 2005), pp. 1105-1117.
    by Gong-Xin Yu, Byung-Hoon Park, Praveen Chandramohan, Rajesh Munavalli, Al Geist, Nagiza F Samatova
  • An integrated system for studying residue coevolution in proteins
    Bioinformatics, Vol. 24, No. 2. (15 January 2008), pp. 290-292.
    by Kevin Y Yip, Prianka Patel, Philip M Kim, Donald M Engelman, Drew Mcdermott, Mark Gerstein
  • How Directional Translocation is Regulated in a DNA Helicase Motor
    Biophys. J. (17 August 2007), biophysj.107.109546.
    by Jin Yu, Taekjip Ha, Klaus Schulten
  • The CHAIN program: forging evolutionary links to underlying mechanisms
    Trends in Biochemical Sciences, Vol. 32, No. 11. (November 2007), pp. 487-493.
    by Andrew F Neuwald
    posted to bioinformatics correlated_mutations software by sobolevnrm to the group baker-group on 2007-11-01 17:28:53 as read
  • Analysis of correlated mutations in HIV-1 protease using spectral clustering
    Bioinformatics, Vol. 24, No. 10. (15 May 2008), pp. 1243-1250.
    by Ying Liu, Eran Eyal, Ivet Bahar
  • Detecting Coevolution in and among Protein Domains
    PLoS Computational Biology, Vol. 3, No. 11. (1 November 2007), e211.
    by Chen-Hsiang Yeang, David Haussler
  • Analysis of the residue-residue coevolution network and the functionally important residues in proteins
    Proteins: Structure, Function, and Bioinformatics, Vol. 9999, No. 9999. (2008), NA.
    by Byung-Chul Lee, Keunwan Park, Dongsup Kim
  • The contrasting properties of conservation and correlated phylogeny in protein functional residue prediction
    BMC Bioinformatics, Vol. 9, No. 1. (2008)
    by Jonathan Manning, Emily Jefferson, Geoffrey Barton
    posted to bioinformatics correlated_mutations by sobolevnrm to the group baker-group on 2008-02-26 11:59:01 as read along with 2 people dgront laughcry
  • Mutual information without the influence of phylogeny or entropy dramatically improves residue contact prediction
    Bioinformatics, Vol. 24, No. 3. (1 February 2008), pp. 333-340.
    by SD Dunn, LM Wahl, GB Gloor
    posted to bioinformatics correlated_mutations by sobolevnrm to the group baker-group on 2008-01-31 12:19:53 as read along with 3 people marck zwang bicko
  • Contact rearrangements form coupled networks from local motions in allosteric proteins
    Proteins: Structure, Function, and Bioinformatics, Vol. 9999, No. 9999. (2007), NA.
    by Michael D Daily, Tarak J Upadhyaya, Jeffrey J Gray
  • Evolution of protein sequences and structures.
    J Mol Biol, Vol. 291, No. 4. (27 August 1999), pp. 977-995.
    by TC Wood, WR Pearson
  • Predicting Allosteric Communication in Myosin via a Pathway ofConserved Residues
    Journal of Molecular Biology, Vol. In Press, Accepted Manuscript
    by Susan Tang, Jung-Chi Liao, Alexander R Dunn, Russ B Altman, James A Spudich, Jeanette P Schmidt
  • Effective use of sequence correlation and conservation in fold recognition.
    J Mol Biol, Vol. 293, No. 5. (12 November 1999), pp. 1221-1239.
    by O Olmea, B Rost, A Valencia
  • Mapping pathways of allosteric communication in GroEL by analysis of correlated mutations.
    Proteins, Vol. 48, No. 4. (1 September 2002), pp. 611-617.
    by I Kass, A Horovitz
    posted to correlated_mutations by gbart on 2006-10-06 12:06:50 as **
  • Analysis of covariation in an SH3 domain sequence alignment: applications in tertiary contact prediction and the design of compensating hydrophobic core substitutions.
    J Mol Biol, Vol. 303, No. 3. (27 October 2000), pp. 433-446.
    by SM Larson, AA Di Nardo, AR Davidson
  • Positional dependence, cliques, and predictive motifs in the bHLH protein domain.
    J Mol Evol, Vol. 48, No. 5. (May 1999), pp. 501-516.
    by WR Atchley, W Terhalle, A Dress
    posted to correlated_mutations by gbart on 2006-10-06 12:05:38 as **
  • How frequent are correlated changes in families of protein sequences?
    Proc Natl Acad Sci U S A, Vol. 91, No. 1. (4 January 1994), pp. 98-102.
    by E Neher
    posted to correlated_mutations by gbart on 2006-10-06 12:04:55 as ** along with 2 people Haggan friendpine
  • Natural Selection for Kinetic Stability Is a Likely Origin of Correlations between Mutational Effects on Protein Energetics and Frequencies of Amino Acid Occurrences in Sequence Alignments.
    J Mol Biol, Vol. 362, No. 5. (6 October 2006), pp. 966-978.
    posted to correlated_mutations by gbart on 2006-10-04 16:25:41 as **
  • A simple tool to explore the distance distribution of correlated mutations in proteins.
    Biophys Chem, Vol. 119, No. 3. (1 February 2006), pp. 240-246.
    posted to correlated_mutations by gbart on 2006-10-04 16:24:52 as ** along with 1 person Lombardo_7
  • Correlated mutations: Advances and limitations. A study on fusion proteins and on the Cohesin-Dockerin families.
    Proteins (28 February 2006)
    by Inbal Halperin, Haim Wolfson, Ruth Nussinov
  • Can three-dimensional contacts in protein structures be predicted by analysis of correlated mutations?
    Protein Eng, Vol. 7, No. 3. (March 1994), pp. 349-358.
  • Local complexity of amino acid interactions in a protein core.
    Proc Natl Acad Sci U S A, Vol. 101, No. 1. (6 January 2004), pp. 111-116.
    by RK Jain, R Ranganathan
  • Statistical coevolution analysis and molecular dynamics: identification of amino acid pairs essential for catalysis.
    Proc Natl Acad Sci U S A, Vol. 102, No. 4. (25 January 2005), pp. 994-999.
    by RA Estabrook, J Luo, MM Purdy, V Sharma, P Weakliem, TC Bruice, NO Reich
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