INTERACTION OF ANTIGEN + ANTIBODY IN AGGLUTINATION - STUDY BY ELECTRON MICROSCOPY
- 1 January 1964
- journal article
- research article
- Vol. 7 (5) , 570-+
Abstract
Flagellar fragments are thin cylinders that are particularly suitable for the study of agglutination by electron microscopy. Their shape leads to a characteristic pattern of agglutination and thus the early stages can be studied. Measurement of interflagellar distances under conditions of negative staining, suggest that the minimum length of the rabbit antibody molecules is about 180 A. The molecules carry the specific sites at the ends of the long axis, and become attached radially to the surface of the flagella, resembling the bristles of a bottle-brush. To explain this orientation it is postulated that the antibody is inserted into the surface of the flagellum in such a manner that surrounding molecules give it a fixed direction. Geometrically this hypothesis corresponds to an insertion into pits. Pepsin-treated (5S) rabbit antibody behaves in a like manner, but the molecule appears to be shorter. No information could be obtained about the thickness and actual shape of antibody molecules by the techniques employed.Keywords
This publication has 14 references indexed in Scilit:
- A Study of the Negative Staining ProcessJournal of General Microbiology, 1962
- Iron Metabolism in the Bone Marrow as Seen by Electron Microscopy: A Critical ReviewBlood, 1962
- Structural components of flagella from Salmonella typhimuriumJournal of Molecular Biology, 1962
- FINE STRUCTURE OF THE PHOTOSYNTHETIC BACTERIUM RHODOMICROBIUM VANNIELII The Journal of cell biology, 1961
- Attachment of Antibody to Influenza VirusNature, 1961
- SEROLOGICAL BEHAVIOUR OF TOBACCO MOSAIC VIRUS AND OF ITS PROTEIN FRAGMENTS1961
- Preparation of an Electron-dense Antibody ConjugateNature, 1959
- Protein chromatography on ion exchange cellulose.1958
- Electron microscopic studies of the antigen-antibody complex.1958
- An electron microscopic study of ferritinBiochimica et Biophysica Acta, 1954