Identification of a Fab interaction footprint site on an icosahedral virus by cryoelectron microscopy and X-ray crystallography
- 1 January 1992
- journal article
- research article
- Published by Springer Nature in Nature
- Vol. 355 (6357) , 275-278
- https://doi.org/10.1038/355275a0
Abstract
IOLOGICAL processes frequently require the formation of multi-protein or nucleoprotein complexes. Some of these complexes have been produced in homogeneous form, crystallized, and analysed at high resolution by X-ray crystallography (for example, see refs 1–3). Most, however, are too large or too unstable to crystallize. Individual components of such complexes can often be purified and analysed by crystallography. Here we report how the coordi-nated application of cryoelectron microscopy, three-dimensional image reconstruction, and X-ray crystallography provides a power-ful approach to study large, unstable macromolecular complexes. Three-dimensional reconstructions of native cowpea mosaic virus (CMPV) and a complex of CPMV saturated with a Fab fragment of a monoclonal antibody against the virus have been determined at 23 Å resolution from low-irradiation images of unstained, frozen-hydrated samples. Despite the nominal resolution of the complex, the physical footprint of the Fab on the capsid surface and the orientation and position of the Fab have been determined to within a few ångstroms by fitting atomic models of CPMV4 and Fab (Kol)5 to reconstructed density maps.Keywords
This publication has 20 references indexed in Scilit:
- ANTIBODY-ANTIGEN COMPLEXESAnnual Review of Biochemistry, 1990
- Three-dimensional structure of rhesus rotavirus by cryoelectron microscopy and image reconstruction.The Journal of cell biology, 1990
- Localization of VP4 neutralization sites in rotavirus by three-dimensional cryo-electron microscopyNature, 1990
- Protein-RNA Interactions in an Icosahedral Virus at 3.0 Å ResolutionScience, 1989
- ICOSAHEDRAL RNA VIRUS STRUCTUREAnnual Review of Biochemistry, 1989
- Cryo-electron microscopy of vitrified specimensQuarterly Reviews of Biophysics, 1988
- Molecular structure determination of crystalline specimens in frozen aqueous solutionsUltramicroscopy, 1984
- Cryo-electron microscopy of virusesNature, 1984
- Crystallographic refinement and atomic models of the intact immunoglobulin molecule Kol and its antigen-binding fragment at 3.0 Å and 1.9 Å resolutionJournal of Molecular Biology, 1980
- Production of monoclonal antibodies: Strategy and tacticsJournal of Immunological Methods, 1980