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Article title matches

  1. Category:Computational redesign (53 bytes)
    1: List of pages with the keyword Computational redesign
  2. Category:Redesign (39 bytes)
    1: List of pages with the keyword Redesign
  3. Category:Active site redesign (51 bytes)
    1: List of pages with the keyword Active site redesign
  4. Category:Igg domain redesign (50 bytes)
    1: List of pages with the keyword Igg domain redesign
  5. Category:Subunit interface redesign (57 bytes)
    1: List of pages with the keyword Subunit interface redesign
  6. Category:Protein redesign (47 bytes)
    1: List of pages with the keyword Protein redesign
  7. Category:Protein surfaces redesign (56 bytes)
    1: List of pages with the keyword Protein surfaces redesign

Page text matches

  1. 2bmw (4,320 bytes)
    24: ...h" did not succeed well, and coenzyme specificity redesign in the FNR family will be more complex than that ...
  2. 9f38 (3,763 bytes)
    14: ...ional study lays a foundation for rational enzyme redesign and potential applications in biotechnology.
  3. 2iyf (4,681 bytes)
    24: ...otics, and will provide a platform for the future redesign of these catalysts for antibiotic remodelling.
  4. 2iya (4,779 bytes)
    24: ...otics, and will provide a platform for the future redesign of these catalysts for antibiotic remodelling.
  5. 2ck2 (5,784 bytes)
    26: ...ns. Based on these results, we have used rational redesign to increase the mechanical stability of the 10th ...
  6. 2fld (4,571 bytes)
    24: ...donuclease. Determination of the structure of the redesigned nuclease-recognition site complex by X-ray crys...
    26: Computational redesign of endonuclease DNA binding and cleavage specific...
  7. 1ccs (3,808 bytes)
    2: ==STRUCTURE-ASSISTED REDESIGN OF A PROTEIN-ZINC BINDING SITE WITH FEMTOMOLAR AF...
  8. 1cct (3,807 bytes)
    2: ==STRUCTURE-ASSISTED REDESIGN OF A PROTEIN-ZINC BINDING SITE WITH FEMTOMOLAR AF...
  9. 1ccu (3,861 bytes)
    2: ==STRUCTURE-ASSISTED REDESIGN OF A PROTEIN-ZINC BINDING SITE WITH FEMTOMOLAR AF...
  10. 1cnb (5,927 bytes)
    2: ==COMPENSATORY PLASTIC EFFECTS IN THE REDESIGN OF PROTEIN-ZINC BINDING SITES==
    28: Structural consequences of redesigning a protein-zinc binding site.,Ippolito JA, Chri...
  11. 1cnc (3,798 bytes)
    2: ==COMPENSATORY PLASTIC EFFECTS IN THE REDESIGN OF PROTEIN-ZINC BINDING SITES==
  12. 9ezd (3,774 bytes)
    14: ...ional study lays a foundation for rational enzyme redesign and potential applications in biotechnology.
  13. 1s1d (4,457 bytes)
    26: ...tive structural biology approach, we were able to redesign the human apyrase so as to enhance its ADPase act...
  14. 2a3j (3,968 bytes)
    2: ...=Structure of URNdesign, a complete computational redesign of human U1A protein==
    23: ...onal methods. The dynamics of the backbone of the redesigned protein also mirror those of human U1A, suggest...
    25: ...lution structural validation of the computational redesign of human U1A protein.,Dobson N, Dantas G, Baker D...
  15. 8brv (4,361 bytes)
    14: ...D) is an alternative. We used a new CPD method to redesign MetRS and increase its activity towards beta-Met,...
    16: Redesigning methionyl-tRNA synthetase for beta-methionine ...
  16. 8brw (4,188 bytes)
    14: ...D) is an alternative. We used a new CPD method to redesign MetRS and increase its activity towards beta-Met,...
    16: Redesigning methionyl-tRNA synthetase for beta-methionine ...
  17. 8brx (4,361 bytes)
    14: ...D) is an alternative. We used a new CPD method to redesign MetRS and increase its activity towards beta-Met,...
    16: Redesigning methionyl-tRNA synthetase for beta-methionine ...
  18. 2g7b (4,833 bytes)
    24: Rational redesign of the binding pocket of Cellular Retinoic Acid B...
  19. 4baa (2,355 bytes)
    2: ==Redesign of a Phenylalanine Aminomutase into a beta-Phenyl...
  20. 4bab (2,356 bytes)
    2: ==Redesign of a Phenylalanine Aminomutase into a beta-Phenyl...

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