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R Kalaga

Publications and source records attributed to R Kalaga.

4 recordsLinked to original sources

Characterization of thyroglobulin-directed and polyreactive catalytic antibodies in autoimmune disease.

Polyreactive and thyroglobulin (Tg)-directed proteolytic activities present in the serum IgG of healthy controls and patients with autoimmune disease were studied by electrophoretic separation of 125I-labeled Tg reaction products and spectrofluorometric measurement of Pro-Phe-Arg-methylcoumarinamide cleavage at the Arg-methylcoumarinamide bond. A decrease of the polyreactive proteolytic activity accompanying an increase of the Tg-cleaving activity in IgG from autoimmune thyroiditis (ATh) and systemic lupus erythematosus (SLE) patients was evident. The Tg, a known target of autoimmune reactions in ATh, was cleaved at lower levels by Abs from patients with this disease than from SLE patients. The Tg-cleaving and Tg-binding activities of the autoantibody preparations were not correlated. Enhanced rates of cleavage at saturating substrate concentrations (Vmax), not increased Tg-binding affinities, were evident in IgG preparations with the greatest Tg-cleaving activity. Similarly, diminution of the polyreactive proteolytic activity in IgG from the autoimmune disease patients was due to decreased Vmax values, not decreased substrate-binding affinities. No cleavage of Tg by IgG from subjects with HIV-1 infection, or from mice hyperimmunized with an albumin-hapten conjugate was evident, suggesting that generation of Tg-cleaving Abs does not accompany V region affinity maturation in response to unrelated Ags. These observations establish Tg as a target of catalytic autoantibodies in SLE and ATh, suggest a transition from polyreactive proteolytic activity to autoantigen-directed activity in autoimmune disease, and open the possibility that combining site chemical reactivity is a factor driving the expression of catalytic activity by autoantibodies.

Autoantibodies

Unexpected presence of polyreactive catalytic antibodies in IgG from unimmunized donors and decreased levels in rheumatoid arthritis.

Polyclonal IgG from healthy humans and unimmunized mice was screened for peptide-methylcoumarinamide (peptide-MCA) hydrolyzing activity. The activity was detected in every IgG sample examined. Contaminant enzymes were precluded as an explanation, as the activity tracked exactly with the 150-kDa IgG peak separated by gel filtration in denaturing solvent (6 M guanidine hydrochloride) and with the 50-kDa Fab fragment peak produced by papain-digestion of the IgG. Patients with rheumatoid arthritis displayed a 3.2-fold reduced peptide-MCA hydrolyzing activity (mean) compared to healthy subjects. Control osteoarthritis patients showed no diminution in activity. A progressive decrease in the activity by 7.4-fold of the pre-immune levels was observed in mice over the course of hyperimmunization with SRBC, indicating that exogenous Ag challenge, like rheumatoid arthritis, is associated with decreased catalytic activity. Apparent Km values of the IgG for Pro-Phe-Arg-MCA were 0.39 to 0.53 mM, values approximately 3-orders of magnitude greater than observed previously for Ag-specific catalysis by Abs. The only common structural feature in peptide-MCA conjugates utilized by the Abs as substrates was the presence of Arg-MCA and Lys-MCA bonds. The IgG hydrolyzed Pro-Phe-Arg-Phe at the Arg-Phe peptide bond, showing that the activity is relevant to cleavage of peptide bonds in natural Ags. The universal occurrence of this polyreactive catalytic activity in unimmunized donors and its diminution in an autoimmune disease and nonspecific Ag challenge suggest that it may possess an important, but as yet unidentified, biologic role.

Adult

Natural catalytic antibodies: peptide-hydrolyzing activities of Bence Jones proteins and VL fragment.

Monoclonal human light chains, i.e. Bence Jones proteins, and their recombinant variable fragments (VL) were screened for proteolytic activity using peptide-methylcoumarinamide (peptide-MCA) conjugates and vasoactive intestinal polypeptide (VIP) as substrates. Sixteen of 21 Bence Jones proteins and one of three VL fragments were capable of detectable cleavage of one or more substrates. The magnitude and kinetic characteristics of the activity varied with different substrates. Among the peptide-MCA substrates, the presence of tripeptide or tetrapeptide moieties with a basic residue at the scissile bond generally favored expression of the activity. The influence of N-terminal flanking residue recognition was evident from differing values of Km and kcat (turnover number) observed using different Arg-containing peptide-MCA substrates. Different light chains displayed different kinetic parameters for the same substrate, suggesting unique catalytic sites. Hydrolysis of VIP was characterized by nanomolar Michaelis-Menten constants (Km), suggesting comparatively high affinity recognition of this peptide. The 25-kDa monomer and the 50-kDa dimer forms of one light chain preparation were resolved by gel filtration in 6 M guanidine hydrochloride. Following renaturation, the monomer displayed 51-fold greater peptide-MCA-hydrolyzing activity than the dimer. A renatured VL domain prepared by gel filtration in 6 M guanidine hydrochloride displayed VIP-hydrolyzing activity in the 12.5-kDa peak fractions. These results provide evidence for the proteolytic activity of certain human light chains and imply that this phenomenon may have a pathophysiological significance.

Amino Acid Sequence