Sulfation of tyrosine residues increases activity of the fourth component of complement.
- 1 February 1989
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 86 (4) , 1338-1342
- https://doi.org/10.1073/pnas.86.4.1338
Abstract
Sulfation of tyrosine residues recently has been recognized as a biosynthetic modification of many plasma proteins and other secretory proteins. Effects of this site-specific modification on protein function are not known, but the activity of several peptides such as cholecystokinin is greatly augmented by sulfation. Here, we examine the role of sulfation in the processing and activity of C4 (the fourth component of complement), one of the few proteins in which sites and stoichiometry of tyrosine sulfation have been characterized. Our results, with C4 as a paradigm, suggest that sulfation of tyrosine residues can have major effects on the activity of proteins participating in protein-protein interactions. Sulfation of C4 synthesized by Hep G2 cells was blocked by incubating the cells with NaClO3 and guaiacol. These sulfation inhibitors did not alter secretion or other steps in the processing of C4. However, hemolytic activity of C4 was decreased more than 50%. The inhibitors' effect on C4 activity was prevented by adding Na2SO4 to restore sulfation of C4. Activity of C3, a complement component homologous to C4 but lacking tyrosine sulfate residues, was minimally reduced (19%) by the inhibitors. Decreased hemolytic activity of nonsulfated C4 apparently resulted from impaired interaction with complement subcomponent C1s (EC 3.4.21.42), the protease that physiologically activates C4. Purified C1s was able to cleave nonsulfated C4, but approximately 10-fold higher concentrations of C1s were required for that cleavage than to yield equivalent cleavage of sulfated C4. Our results suggest that activation of C4, a central component in the classical pathway of complement activation, is influenced by the level of sulfation of the protein. Thus, sulfation of C4 provides a potential locus for physiological or pharmacological modulation of complement-mediated opsonization and inflammation.This publication has 57 references indexed in Scilit:
- Sulfation of tyrosine residues does not influence secretion of α2-antiplasmin or C4Biochemical and Biophysical Research Communications, 1988
- DEFICIENCY OF C4A IS A GENETIC DETERMINANT OF SYSTEMIC LUPUS ERYTHEMATOSUS IN THREE ETHNIC GROUPSInternational Journal of Immunogenetics, 1987
- The complement component Cs catalysed hydrolysis of peptide 4-nitroanilide substratesBiochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology, 1987
- Characterization of sites of tyrosine sulfation in proteins and criteria for predicting their occurrenceBiochemical and Biophysical Research Communications, 1986
- Leucosulfakinin-II, a blocked sulfated insect neuropeptide with homology to cholecystokinin and gastrinBiochemical and Biophysical Research Communications, 1986
- Incorporation of sulphate into type III procollagen by cultured human fibroblasts. Identification of tyrosine O-sulphateEuropean Journal of Biochemistry, 1986
- Structure and function of the anaphylatoxinsSpringer Seminars in Immunopathology, 1984
- Immune Response of a Patient with Deficiency of the Fourth Component of Complement and Systemic Lupus ErythematosusNew England Journal of Medicine, 1979
- Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4Nature, 1970
- The antral Hormone Gastrin: Structure of GastrinNature, 1964