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Journal Abstract Search


152 related items for PubMed ID: 9036965

  • 1. Structural consequences of humanizing an antibody.
    Holmes MA, Foote J.
    J Immunol; 1997 Mar 01; 158(5):2192-201. PubMed ID: 9036965
    [Abstract] [Full Text] [Related]

  • 2. The de novo design of an antibody combining site. Crystallographic analysis of the VL domain confirms the structural model.
    Essen LO, Skerra A.
    J Mol Biol; 1994 Apr 29; 238(2):226-44. PubMed ID: 8158652
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  • 3. X-ray structures of the antigen-binding domains from three variants of humanized anti-p185HER2 antibody 4D5 and comparison with molecular modeling.
    Eigenbrot C, Randal M, Presta L, Carter P, Kossiakoff AA.
    J Mol Biol; 1993 Feb 20; 229(4):969-95. PubMed ID: 8095303
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  • 6. Crystal structure of the complex of the variable domain of antibody D1.3 and turkey egg white lysozyme: a novel conformational change in antibody CDR-L3 selects for antigen.
    Braden BC, Fields BA, Ysern X, Goldbaum FA, Dall'Acqua W, Schwarz FP, Poljak RJ, Mariuzza RA.
    J Mol Biol; 1996 Apr 19; 257(5):889-94. PubMed ID: 8632472
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  • 7. The influence of the framework core residues on the biophysical properties of immunoglobulin heavy chain variable domains.
    Honegger A, Malebranche AD, Röthlisberger D, Plückthun A.
    Protein Eng Des Sel; 2009 Mar 19; 22(3):121-34. PubMed ID: 19136675
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  • 8. Selection, characterization and x-ray structure of anti-ampicillin single-chain Fv fragments from phage-displayed murine antibody libraries.
    Burmester J, Spinelli S, Pugliese L, Krebber A, Honegger A, Jung S, Schimmele B, Cambillau C, Plückthun A.
    J Mol Biol; 2001 Jun 08; 309(3):671-85. PubMed ID: 11397088
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  • 9. Crystal structure of an Fv-Fv idiotope-anti-idiotope complex at 1.9 A resolution.
    Braden BC, Fields BA, Ysern X, Dall'Acqua W, Goldbaum FA, Poljak RJ, Mariuzza RA.
    J Mol Biol; 1996 Nov 22; 264(1):137-51. PubMed ID: 8950273
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  • 12. Affinity maturation increases the stability and plasticity of the Fv domain of anti-protein antibodies.
    Acierno JP, Braden BC, Klinke S, Goldbaum FA, Cauerhff A.
    J Mol Biol; 2007 Nov 16; 374(1):130-46. PubMed ID: 17916365
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  • 13. Crystal structure of the disulfide-stabilized Fv fragment of anticancer antibody B1: conformational influence of an engineered disulfide bond.
    Almog O, Benhar I, Vasmatzis G, Tordova M, Lee B, Pastan I, Gilliland GL.
    Proteins; 1998 May 01; 31(2):128-38. PubMed ID: 9593187
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  • 14. The rational construction of an antibody against cystatin: lessons from the crystal structure of an artificial Fab fragment.
    Schiweck W, Skerra A.
    J Mol Biol; 1997 May 23; 268(5):934-51. PubMed ID: 9180382
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  • 15. The pH-dependent structural variation of complementarity-determining region H3 in the crystal structures of the Fv fragment from an anti-dansyl monoclonal antibody.
    Nakasako M, Takahashi H, Shimba N, Shimada I, Arata Y.
    J Mol Biol; 1999 Aug 06; 291(1):117-34. PubMed ID: 10438610
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  • 16. The importance of framework residues H6, H7 and H10 in antibody heavy chains: experimental evidence for a new structural subclassification of antibody V(H) domains.
    Jung S, Spinelli S, Schimmele B, Honegger A, Pugliese L, Cambillau C, Plückthun A.
    J Mol Biol; 2001 Jun 08; 309(3):701-16. PubMed ID: 11397090
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  • 19. Use of human germline genes in a CDR homology-based approach to antibody humanization.
    Hwang WY, Almagro JC, Buss TN, Tan P, Foote J.
    Methods; 2005 May 08; 36(1):35-42. PubMed ID: 15848073
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  • 20. Small rearrangements in structures of Fv and Fab fragments of antibody D1.3 on antigen binding.
    Bhat TN, Bentley GA, Fischmann TO, Boulot G, Poljak RJ.
    Nature; 1990 Oct 04; 347(6292):483-5. PubMed ID: 2215663
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