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1IVL

THE DE NOVO DESIGN OF AN ANTIBODY COMBINING SITE: CRYSTALLOGRAPHIC ANALYSIS OF THE VL DOMAIN CONFIRMS THE STRUCTURAL MODEL

Summary for 1IVL
Entry DOI10.2210/pdb1ivl/pdb
DescriptorIGG-KAPPA M29B FV (LIGHT CHAIN), ISOPROPYL ALCOHOL (3 entities in total)
Functional Keywordsimmunoglobulin
Biological sourceMus musculus (house mouse)
Total number of polymer chains2
Total formula weight23389.94
Authors
Essen, L.-O.,Skerra, A. (deposition date: 1994-05-04, release date: 1994-08-31, Last modification date: 2024-11-13)
Primary citationEssen, L.O.,Skerra, A.
The de novo design of an antibody combining site. Crystallographic analysis of the VL domain confirms the structural model.
J.Mol.Biol., 238:226-244, 1994
Cited by
PubMed Abstract: In a protein design approach the molecular model of an artificial antibody Fv fragment was generated with predicted complementarity to part of the known crystal structure of chicken egg-white cystatin. The model of the Fv fragment was based on the three-dimensional structure of the anti-lysozyme antibody HyHEL-10, which was modified by substituting amino acid side-chains in the complementarity-determining regions (CDRs) as well as the framework without altering the backbone. In the course of crystallization experiments with the bacterially produced Fv fragment crystals of the VL domain alone were obtained. These crystals diffracted X-rays to a resolution of 2.17 A and were shown to belong to the space group P2(1)2(1)2(1) with unit cell dimensions a = 46.89 A, b = 58.05 A, c = 83.22 A containing two VL monomers in the asymmetric unit. The crystal structure was solved by molecular replacement and refined to a crystallographic R-factor of 17.5%. The two VL monomers exhibit an asymmetric mode of association, which is different from other crystallized VL domains described before and shows the peculiar feature of an isopropanol precipitant molecule buried at the interface. Both VL structures reveal a high level of similarity to the predicted three-dimensional model. With the exception of two loop segments in the framework region that are involved in crystal packing contacts, the backbone structures of the two VL monomers in the crystal and the molecular model of the VL domain are practically identical. Although six amino acid residues had been replaced in the hypervariable regions, the CDR conformations remained conserved and only minor deviations in the orientation of some side-chains and peptide planes were detected. The crystallographic analysis of the VL domain modelled as part of a complex between an artificial Fv fragment and the small protein cystatin, deliberately chosen as antigen target, confirms the concept of distinct structural classes for CDR backbones and supports our strategy for the de novo design of an antibody combining site.
PubMed: 8158652
DOI: 10.1006/jmbi.1994.1284
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.17 Å)
Structure validation

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