Modification of the carbohydrate in ricin with metaperiodate — cyanoborohydride mixtures
- 1 February 1985
- journal article
- research article
- Published by Wiley in European Journal of Biochemistry
- Vol. 147 (1) , 197-206
- https://doi.org/10.1111/j.1432-1033.1985.tb08737.x
Abstract
Attempts to target antibody-ricin conjugates (immunotoxins) to designated cell types in vivo may be thwarted by their rapid clearance by hepatic reticuloendothelial cells which have receptors that recognize oligosaccharide side chains on the toxin. The B-chain of ricin contains high mannose type oligosaccharides and the A-chain contains a complex unit (GlcNAc)2-Fuc-Xyl-(Man)4-6, all of which potentially could be recognized by the reticuloendothelial system. Treatment of ricin with a mixture of sodium metaperiodate and sodium cyanoborohydride at pH 3.5 resulted in oxidative cleavage of the carbohydrates and reduction of the aldehyde groups thus formed to primary alchols. By conducting the modification procedure at acidic pH, both the possibility of Schiff''s base formation between the aldehyde groups and amino groups in the protein and the possibility of nonspecific oxidation of amino acids were minimized. The extent of the carbohydrate modification depended on the duration of treatment, resulting maximally in the destruction of 13 of the 18 mannose residues and of all xylose and fucose. The toxicity of the modified toxin to cells in culture declined by up to 90% as the carbohydrate was destroyed. This was not due to a reduced ability of the B-chain to bind to cells or of the A-chain to inactivate ribosomes. The toxicity of the modified toxin to mice and rats was elevated by up to 4-fold. The modification greatly reduced the clearance of the toxin by non-parenchymal cells in the liver and prevented the damage to hepatic Kupffer and sinusoidal cells and to the red pulp of the spleen that is inflicted by the native toxin. The elevated toxicity to animals appears to be because the modified toxin evades the reticuloendothelial system and persists in the bloodstream for longer periods, thus resulting in lethal damage to vital tissues in the animal at lower dosage. Apparently, immunotoxins prepared from modified ricin would not be readily cleared by the reticuloendothelial system and so be more effective at killing their target cells.This publication has 29 references indexed in Scilit:
- Immunotoxins: A New Approach to Cancer TherapyScience, 1983
- Chimeric toxinsPharmacology & Therapeutics, 1981
- A comparison of the accumulation of ricin by hepatic parenchymal and non-parenchymal cells and its inhibition of protein synthesisBiochimica et Biophysica Acta (BBA) - General Subjects, 1981
- Cytotoxicity Acquired by Conjugation of an Anti‐Thy1.1 Monoclonal Antibody and the Ribosome‐Inactivating Protein, GeloninEuropean Journal of Biochemistry, 1981
- An electron microscope autoradiographic study of the carbohydrate recognition systems in rat liver. I. Distribution of 125I-ligands among the liver cell types.The Journal of cell biology, 1979
- The uptake and subsequent loss of beryllium by rat liver parenchymal and non-parenchymal cells after the intravenous administration of particulate and soluble formsChemico-Biological Interactions, 1978
- Chemical Modifications of the Toxic Lectins Abrin and RicinEuropean Journal of Biochemistry, 1978
- Biochemical studies on ricin. IX. The mode of binding of carbohydrate in ricin D.Agricultural and Biological Chemistry, 1975
- Mass isolation and culture of rat kupffer cells.The Journal of Experimental Medicine, 1975
- Preparation of rat liver cellsExperimental Cell Research, 1973