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G Mazza

Publications and source records attributed to G Mazza.

At least 73 records · Page 4Linked to original sources

Functional role of human IgG subclasses in eosinophil-mediated killing of schistosomula of Schistosoma mansoni.

Although IgG antibodies and eosinophils have been shown to kill schistosomula of Schistosoma mansoni in vitro, very little data exist that describe the role of each IgG antibody isotype in this event. This study was designed to test the role of each IgG subclass in the eosinophil-dependent killing reaction. IgG antibodies purified by protein G or protein A affinity chromatography demonstrated a killing effect only in the presence of eosinophils activated in vivo or normal eosinophils activated in vitro by eosinophil activating factor. Purification of each IgG isotype allowed confirmation of these results and demonstrated that the killing effect was associated with IgG1 and IgG3 antibodies. IgG2 antibodies expressed a dual function: 1) an effector function with activated eosinophils and 2) a blocking function with normal eosinophils. IgG4 antibodies, whatever the source of eosinophils, blocked the killing mediated by IgG effector antibodies. These findings are discussed in relation to immunity and susceptibility to reinfection in human schistosomiasis.

Adjuvants, Immunologic↗

Idiotypic cross-reactivity of anti-GAT and anti-alprenolol antibodies: an approach to the structural correlates of the pGAT idiotypic specificity.

Most anti-GAT antibodies in the BALB/c strain express a public idiotypic specificity (pGAT), which is encoded by specific germline genes (VH10, VK5.1 and VK1A5). One or both of these germline genes, referred to as "GAT-specific genes", are also used by four anti-alprenolol antibodies. Anti-Alp and anti-GAT antibodies show no cross-reactivity for the antigens. The light chain of one anti-Alp antibody, 22C4, is encoded as the anti-GAT antibodies by a VK5.1-J2 combination and expresses part of the pGAT idiotopes, whereas the heavy chain is not "GAT"-related. Two anti-Alp using the VH10-VK5.1-J1 association do not express any of the pGAT idiotopes. Sequence comparison of the various CDR sequences points to the predominant role of the VH-CDR2 and VL-CDR3 for the constitution of the pGAT specificity. Regarding VL-CDR3, a drastic change in idiotypic determinants appears to be linked to V-J junctional diversity.

Alprenolol↗

Activation of clones producing self-reactive antibodies by foreign antigen and antiidiotype antibody carrying the internal image of the antigen.

Because we found in previous work that a high fraction of antibodies exhibiting various specificities bound to glutamic acid 50-tyrosine50 homopolymer (GT) and expressed pGAT cross-reactive idiotype (IdX), we studied the activation of clones producing multireactive antibodies in 1-mo-old MRL/lpr and C3H/HeJ mice bearing VHJ haplotype. The activation of such clones was studied after mice were immunized with GT in CFA, HP20 (an anti-Id MAb carrying the internal image of GT in the D region), and a synthetic peptide corresponding to the D segment of HP20. Our results indicate that immunized mice produced both GT- and self-reactive antibodies. Study of the immunochemical properties of MAb showed that they exhibit multispecific properties and bind with similar-affinity constants to GT or self-antigens such as DNA, Smith antigen (Sm), and IgG2a. An important fraction of antibodies obtained from MRL/lpr mice immunized with HP20 expressed pGAT IdX and some of these antibodies share IdX expressed on anti-DNA, Sm, and rheumatoid factor (RFs) antibodies. The hybridomas producing multispecific autoantibodies use heavy-chain- (VH) and light-chain-variable region (VK) genes from various V gene families, suggesting that they do not derive from the pool of GAT precursors. Sequencing of VH and VK genes of two antibodies show that they can use closely related VHJ558, unmutated VK1, or different VK genes than those used by anti-GT antibodies. Our data demonstrate that clones producing antibodies binding to GT and self-antigens with similar-affinity constants can be activated by foreign or anti-Id antibodies carrying the internal image of the antigen or even by a synthetic peptide corresponding to the D segment of anti-Id antibodies.

Amino Acid Sequence↗

A Bacillus subtilis dnaG mutant harbours a mutation in a gene homologous to the dnaN gene of Escherichia coli.

A dnaG mutation of Bacillus subtilis, dnaG5, was found to be linked closely to recF. We have reported previously that two putative dna genes, 'dnaA' and 'dnaN', highly homologous to Escherichia coli's dnaA and dnaN, respectively, were located adjacent to recF [Ogasawara et al., EMBO J., 4 (1985) 3345-3350]. Transformation by various fragments cloned from the 'dnaA'-recF region of the wild-type cell revealed that a 532-bp AluI fragment containing 5'-portion of the 'dnaN' gene could transform the dnaG5 mutation. The nucleotide (nt) sequence of the same fragment cloned from the mutant cell shows a single nt change in the ORF of 'dnaN' which in turn causes a single amino acid alteration from Gly to Arg. The 'dnaN' gene is now proven to be a dna gene, mutations in which result in instant arrest of chromosomal replication.

Amino Acid Sequence↗

Immune response to plasmid- and chromosome-encoded Yersinia antigens.

The immune response of humans and mice to temperature-specific, plasmid- or chromosome-encoded proteins of yersinia pestis and Yersinia enterocolitica was investigated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and Western blotting. Extracts from Y. pestis and Y. enterocolitica strains with and without the virulence plasmids pYV019 and pYV8081, respectively, were resolved by denaturing electrophoresis, and the major antigens were visualized with sera from convalescing plague patients, individuals immunized with plague vaccine, and mice and rabbits immunized with avirulent live yersiniae. The Y. pestis grown in vitro in this study did not express detectable amounts of plasmid-encoded antigens. The sera from plague patients recognized Y. pestis and Y. enterocolitica antigens ranging from 15 to 72 kilodaltons (kDa), whereas sera from immunized subjects recognized four antigenic components in Y. pestis ranging from 17 to 64 kDa and five antigens in Y. enterocolitica ranging from 16 to 68 kDa. Sera from mice reacted with 7 antigens in Y. pestis and 12 antigens in Y. enterocolitica ranging from 14 to 68 kDa, and sera from rabbits reacted with 7 and 10 antigens in Y. pestis and Y. enterocolitica, respectively. All of the plague patient sera, as well as the sera from immunized mice and rabbits, reacted with a 22-kDa Y. enterocolitica plasmid-associated polypeptide, and five of the patient sera also recognized a Y. enterocolitica plasmid-associated 31-kDa protein. The results indicate a common immune response to at least these two plasmid-specified Yersinia outer membrane proteins. Y. pestis apparently expresses these components only in vivo, and in vitro, Y. enterocolitica expresses a greater number of plasmid-associated antigens than does Y. pestis.

Adolescent↗

Preferential expression of VK21E light chains on IdX Ia.7 positive monoclonal anti-I-E antibodies.

We previously characterized major (IdX Ia.7) and minor (IdI) idiotopes in a collection of monoclonal alloantibodies reactive with monomorphic (i.e., Ia.7-like) determinants in the structural domain I of the murine class II I-E molecules. In this report, preliminary structural characterization of this antibody family is presented. First, the contribution of isolated H and L chains of the anti-Ia.7 cluster I mAb 41.A to IdX Ia.7 and IdI 41.A idiotope expression was evaluated by testing the capacity of these chains, either isolated or reassociated in homologous or heterologous hybrid Ig, to inhibit the binding of rat or mouse anti-idiotope mAb to IdX Ia.7+ mAb coated plates. It was found that the IdI 41.A idiotope defined by the mouse anti-idiotopic mAb H90-21.1 required the presence of both 41.A H and L chains for complete expression, while the rat mAb-defined IdX Ia.7 idiotope could be detected on isolated and on reassociated 41.A L chain. To evaluate further the structural correlates of the IdX Ia.7 idiotope, H, L, or both H and L chains of 5 A.BY, 4 A.TH and 1 C3H.SW IdX+ anti-Ia.7 mAb, as well as that of 3 A.TH IdX- anti-I-E or anti-I-A and -I-E mAb were subjected to NH2-terminal amino acid sequencing. These analyses demonstrated a) that different H chains corresponding to different subgroups (at least to the VHII and VHIII) could be expressed without apparent modification of IdX Ia.7 idiotope expression and b) that 9 of 11 IdX+ anti-Ia.7 mAb utilized highly homologous L chains of the VK21E subgroup. The relevance of these findings to the genetic control of the idiotypic markers identified in the Ia.7 system is discussed.

Amino Acid Sequence↗

[Serum monoamine oxidase (MAO) in the differential diagnosis of chronic liver disease. I].

Aim of this study was to evaluate the diagnostic value of serum MAO activity (sMAO) in chronic liver disease. sMAO has been assayed by benzylamine colorimetric method. No statistically significant differences of sMAO values have been found between controls and acute viral hepatitis or various diseases patients. Differences instead between controls and patients sMAO values (chronic persistent hepatitis, chronic active hepatitis and liver cirrhosis) were statistically significant (p less than 0.005).

Acute Disease↗

DNA-dependent ATPases in Bacillus subtilis mutants and in competent cells.

Three DNA-dependent ATPases (gamma phosphohydrolases) can be isolated from Bacillus subtilis cells. We studied these enzymes in a number of mutants deficient in recombination or repair functions (rec, uvr) and in competent cells. The recA mutant studied had lower ATPase II activity, while competent cells had higher ATPase I activity, in comparison with the parental strain not brought to competence.

Adenosine Triphosphatases↗

Rapid assay for detection of microorganisms producing DNA-damaging metabolites.

Microorganisms producing DNA-damaging metabolites (i.e., fungi and streptomycetes) were detected by the Bacillus subtilis rec assay with agar plugs from plates on which the microorganisms had been grown. This assay allowed rapid identification of aflatoxinogenic fungi and streptomycetes producing strong DNA-damaging metabolites. For screening programs, several media have to be used to grow the microorganisms to be tested.

Anti-Bacterial Agents↗

Bacillus subtilis "rec assay" test with isogenic strains.

The Bacillus subtilis "rec assay" test, widely used for the detection of DNA-damaging agents, was studied in detail, using an isogenic set of strains carrying different mutations in repair or recombination functions or both. recE4 and rec-45 mutations turned out to confer on the cells the highest sensitivity to known mutagens. The recE4 strain and its isogenic rec+ strain have been tested and validated by several rec assay procedures for preferential killing by known DNA-damaging agents. The use of purified spores of the tester strains offers advantages for standardization of the assay.

Anti-Bacterial Agents↗

Three deoxyribonucleic acid-dependent adenosine triphosphatases from Bacillus subtilis.

We have isolated from Bacillus subtilis three deoxyribonucleic acid (DNA)-dependent adenosine triphosphatases (ATPases) (gamma-phosphohydrolases). The enzymes were extensively purified, and their physicochemical and functional properties were determined. The three enzymes (ATPases I, II, and III) were shown to be different by several criteria. ATPases II and III showed an absolute requirement for single-stranded DNA as a cofactor, whereas ATPase I had some residual activity also with double-stranded DNA. They required Mg2+ and had a pH optimum of 6.5 to 7. Only adenosine 5'-triphosphate and deoxyadenosine 5'-triphosphate were hydrolyzed. The molecular weights of ATPases I, II, and III were 108,000, 115,000, and 148,000, respectively. Km values for adenosine 5'-triphosphate and DNA were also evaluated and shown to be different for each enzyme. All three enzymes formed physical complexes with single-stranded DNA. We present evidence that ATPases I and II might migrate along DNA during adenosine 5'-triphosphate hydrolysis. On the other hand, this effect was not observed with ATPase III, which exhibited the highest affinity for single-stranded DNA.

Adenosine Triphosphatases↗

Characterization of Bacillus subtilis mutants temperature-sensitive in the synthesis of ribonucleic acid.

Two mutants of Bacillus subtilis temperature-sensitive in RNA synthesis were isolated. One mutation (rna-20) was demonstrated to be an allele of a previously identified gene (Riva et al., 1976). The other mutation (rna-16) identified a different gene and was mapped near aroI. The rna-16 mutation at the permissive temperature affected the spore outgrowth process. Purified RNA polymerase from rna-16 did not show any temperature sensitivity or structural defect.

Bacillus subtilis↗

Covalent structure of turnip peroxidase 7. Tryptic peptides.

Turnip isoperoxidase TP 7 had its hemin group removed and was cleaved by trypsin. The digest was fractionated by gel filtration and high-voltage paper electrophoresis and yielded 24 peptides, which counted for all 296 amino acid residues of the enzyme. Sequence analyses on the tryptic peptides and, when necessary, on their thermolytic derivatives were carried out by manual Edman degradation followed by dansylation or by quantitative amino acid analysis of thiazolinones converted by HI. The four disulfide bridges and the only site of carbohydrate attachment of turnip peroxidase 7 are located. The present analysis of tryptic peptides has been complemented by cyanogen bromide fragments cleaved by chymotrypsin as described in the accompanying paper.

Amino Acid Sequence↗