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E Mihaesco

Publications and source records attributed to E Mihaesco.

At least 19 recordsLinked to original sources

H chain V region sequences of three human monoclonal IgM with anti-myelin-associated glycoprotein activity.

The amino acid sequence corresponding to the V region H chain gene used by three monoclonal IgM directed to the myelin-associated glycoprotein (MAG) is presented. They all belonged to the VHIII variability subgroup, but each may well represent a new member of this family inasmuch as their homology with previously sequenced VHIII genes was less than 80%. Strikingly, there was no greater homology between the H chain V regions of the anti-MAG IgM. Partial amino acid sequence data indicated that these V regions were joined to as yet unidentified DH segments; however, two H chains used very similar DH, possibly indicating that this sequence was involved in the fine specificity of the IgM for MAG. All H chains included a JHIV region. These data, together with results obtained from the sequence of the three kappa L chains of the same IgM molecules (Mihaesco, E., H. Ayadi, N. Congy, M. C. Gendron, J. P. Roy, H. Heyermann, B. Frangione, and J. C. Brouet. 1989. J. Biol. Chem. 264:21481), indicate that the repertoire of VL and VH gene segments used by anti-MAG IgM is quite diverse, in contrast to previous structural data obtained for other human monoclonal IgM autoantibodies. Possibly, these differences reflect distinct pathogenesis.

Amino Acid Sequence

A new extra sequence at the amino terminal of a mu heavy chain disease protein (DAG).

The primary structure of a human mu heavy chain (DAG) protein is described. The native protein is a circular decamer with a molecular weight (Mr) of 500 kDa, each decamer being constituted of the constant domains C mu 2, C mu 3 and C mu4 and interlinked by 15 disulfide bridges. At its NH2-terminal each monomeric chain starts with an "extra sequence". The amino acid sequence of this segment is Arg-Gln-Ser-Asp-Asp-Pro-Val-Leu-Arg-Gly-Thr-Thr-Val-Pro-Val-Thr-Glu and its reinitiation point is located at Val223 (Gal numbering), at the beginning of C mu 2. This sequence has no homology with any other protein included in the present databases.

Amino Acid Sequence

Peripheral polyneuropathies associated with monoclonal IgM. Antibody activity of monoclonal IgM and therapeutic implications.

Monoclonal IgM from patients with peripheral neuropathy react in nearly 80% of the cases with some components of myelin. The main target is myelin associated glycoprotein (50% of the cases); several types of glycolipids or gangliosides have been identified as the reactive antigen in the other cases. Anti-MAG IgM share little cross reactive idiotopes. Only primate antisera identified a combining site related public idiotope. In fact, these IgM use various light and heavy chains belonging to different variability subgroups. The preliminary results of an ungoing trial aimed to establish the benefit of plasmapheresis in these patients are discussed.

Adult

Multiple mutations in the variable region of the kappa light chains of three monoclonal human IgM with anti-myelin-associated glycoprotein activity.

Human monoclonal IgM having an antibody activity directed to myelin-associated glycoprotein have distinctive features. Amino-terminal sequence of light and heavy chains from 6 IgM kappa that we have previously studied indicated that heavy chains belong to the VHIII subgroup, whereas light chains belong to 3 different subgroups of variability (V kappa I 2, V kappa II 1, and V kappa IV 3). We report here the complete sequence of the variable domain of 3 L chains: 2 V kappa IV and 1 V kappa II subgroups. Strikingly an unusually high degree of mutations clustered in the complementarity-determining regions (CDR) 1 and CDR 3 was found and the variable regions were joined to three different JK segments. Amino acid substitutions did not yield similar sequence in the CDRs suggesting that the kappa chains had no predominant role in the unique binding activity of these IgM or alternatively they are directed against different epitopes. Data are consistent with the previously reported lack of easily demonstrated public idiotopes common to anti-myelin-associated glycoprotein IgM. The pathogenesis of these IgM autoantibodies is most likely different from that of previously studied monoclonal rheumatoid factors or cold agglutinins where a genetic restriction of L or H chains or both has been observed.

Amino Acid Sequence

The productive gene for alpha-H chain disease protein MAL is highly modified by insertion-deletion processes.

alpha-H chain diseases (HCD) is a human lymphoproliferative disorder, characterized by the production of truncated alpha-Ig H chains, without associated L chains. In this study, we have analysed the serum protein, the alpha-HCD mRNA and the rearranged alpha-HCD gene from the leukemic cells of a patient (MAL) with alpha-HCD. The abnormal MAL serum Ig consisted of short alpha 1-chains, lacking VH and CH1 domains (only CH2 and CH3 domains were present). The alpha-HCD mRNA (1.2 kb) was shorter than a normal alpha-mRNA (2 kb); the corresponding cDNA had sequences for the leader, a 84-bp sequence of unknown origin and the CH2 and CH3 exons. The establishment of the sequence of the productive alpha-HCD MAL allele revealed two major deletions; that of the VH region as well as that of the CH1 region. The JH region is altered by multiple mutations, small insertions and a duplication of the psi JH3 region. A large insert (INS1), of 360 bp (containing the 84 bp exon found in the cDNA), replaces the deleted VH region. INS1 is non-Ig related and apparently of nongenomic origin. A large second insert (509 bp), is located between the enhancer and the switch region. Insert2 contains repetitive non-Ig-related sequences and a small Ig-related sequence. All these alterations resulted in an abnormal mRNA, which comprises the leader, a 84-bp alien exon derived from INS1 and the CH2 and CH3 exons of the alpha 1-gene.

Amino Acid Sequence

Expression of a public idiotype by human monoclonal IgM directed to myelin-associated glycoprotein and characterization of the variability subgroup of their heavy and light chains.

Most studies using rabbit or mouse antisera failed to detect CRI between human IgM directed to MAG. We show here that 9 of 10 such IgM express a public CRI as defined by a nonhuman primate antiserum. Shared idiotype is likely involved in (or close to) the combining site of those IgM since antiidiotypic serum inhibited the binding of IgM to MAG and reacted with IgM having different variable regions of light and heavy chains. Partial aminoterminal sequence of heavy and light chains showed that anti-MAG IgM use either lambda chains (one IgM) or kappa light chains (six IgM) of different variability subgroups (V kappa IV in three instances, V kappa I in two, and V kappa II in one), whereas heavy chains belong to the VHIII (six IgM) or to the VHII (1 IgM) subgroup. These features distinguish these IgM from other human monoclonal IgM with a defined antibody activity, such as rheumatoid factors or cold agglutinins.

Amino Acid Sequence

Genomic alterations in a case of alpha heavy chain disease leading to the generation of composite exons from the JH region.

Human alpha heavy chain disease (HCD) is characterized by the presence in patient's serum of a short Ig alpha chain devoid of light chains. We analyzed the serum protein, the alpha HCD mRNA and the productive rearranged H chain gene from the leukemic cells of a new case (YAO) of alpha HCD. The abnormal YAO alpha 1 Ig was devoid of VH and CH1 domains and started at the beginning of the hinge region. The alpha HCD mRNA was shorter than normal alpha mRNA and the cDNA prepared from YAO mRNA encoded a leader sequence, an insert of 70 nucleotides and the CH2 and CH3 exons. The origin of the inserted sequence was assessed by cloning and sequence analysis of the alpha 1 productive gene. It started with a leader exon, a leader-VH intron and the first 11 bp of a VH exon. Then the VH region was deleted and replaced by a 19-nucleotide sequence that turned out to correspond to the 3' part of a modified JH5 exon. It was followed by a 221-bp sequence homologous to the JH5-psi JH3 intron and by an inserted sequence of unknown origin. The 3' part of this insertion and the remnant of a JH6 exon delineated a third exon that was followed by a relatively conserved JH6-C alpha intron. These two composite exons were flanked by splicing sites and accounted for the 70-nucleotide insert of the cDNA. The genomic nucleotide sequence also revealed a large deletion in the switch CH1 region which eliminated normal splicing sites and resulted in splicing of the third exon directly to the CH2 exon.

Amino Acid Sequence

Jacalin: a new laboratory tool in immunochemistry and cellular immunology.

In recent years, a new lectin--jacalin--has raised the interest of immunologists because of its original properties with respect to human immunoglobulins and lymphocytes. Its structure and carbohydrate binding specificity are now well documented, and it can be purified easily from jackfruit seeds by ion exchange or affinity chromatography. The binding and precipitating specificities of jacalin with heavy chains of human immunoglobulins allow its use as a diagnostic (IgA subclass typing) and preparative tool (purification of IgA and IgD, removal of IgA from biologic samples and preparations). Other possible applications of jacalin's binding properties also can be envisaged. In addition, the lectin displays a mitogenic activity specific for human CD4 T-lymphocytes; consequently, the proliferative response induced by jacalin appears to represent a new and interesting assay for a functional study of CD4 cells, with obvious applications in primary and acquired, especially AIDS, immune deficiency states.

Carbohydrates

Structural studies of the asparagine-linked sugar chains of two immunoglobulin M's purified from a patient with Waldenström's macroglobulinemia.

The structures of the sugar chains present in two human monoclonal IgM molecules purified from the serum of a patient with Waldenström's macroglobulinemia have been determined. The asparagine-linked sugar chains were liberated as oligosaccharides by hydrazinolysis and labeled by reduction with NaB3H4 after N-acetylation. Their structures were studied by serial lectin column chromatography and sequential exoglycosidase digestion in combination with methylation analysis. These two IgM's were shown to contain almost the same sugar chains. The sugar chains were a mixture of a series of high-mannose-type and biantennary complex-type oligosaccharides. The complex-type oligosaccharides contain Man alpha 1----6(+/- GlcNAc beta 1----4)(Man alpha 1----3)Man beta 1----4GlcNAc beta 1----4(Fuc alpha 1----6)GlcNAc as their core and GlcNAc beta 1----, Gal beta 1----4GlcNAc beta 1---- and Neu5Ac alpha 2----6Gal beta 1----4GlcNAc beta 1---- groups in their outer chain moieties.

Asparagine

Jacalin, the human IgA1 and IgD precipitating lectin, also binds IgA2 of both allotypes.

The lectin jacalin from jackfruit seeds shows a human IgA-subclass specificity by gel precipitation and Western blotting. However, its reactivity with IgA2 is a matter of controversy. We further studied the immunoglobulin isotype specificity of jacalin by affinity chromatography with myeloma sera and by inhibition of jacalin binding to solid-phase IgA1 by purified monoclonal immunoglobulins. The lectin proved to bind IgA2 of both allotypes with a lower apparent affinity than for IgA1 and IgD.

Antibodies, Monoclonal

Protein Rou. A human IgA hybrid.

Protein Rou is a human IgA2 myeloma protein that carries the isoallotype marker n A2m(2). Partial amino acid sequence of its H chain (alpha) shows that the hinge region and the CH2 domain are homologous to alpha 2-chain and the CH1 and the CH3 domains homologous to alpha 1. Moreover, the CH1 domain contains the H-L disulfide bond identical to alpha 1. It is concluded that Rou H chain is a hybrid molecule caused by a recombination between alpha 1 and alpha 2 genes. The recombination event occurred between alpha 1-exon 1 and alpha 2-exon hinge and corresponds to position 222-223 of the alpha-chain.

Amino Acid Sequence

Detection of cross-reactive determinants shared by human monoclonal IgM reacting with myelin-associated glycoprotein.

Monoclonal IgM from patients with peripheral neuropathy frequently have anti-myelin-associated glycoprotein (MAG) activity. We investigated the idiotypes of 10 monoclonal anti-MAG by using rabbit polyclonal antisera. Three groups of anti-idiotypic antisera could be distinguished. Four sera reacted only with the immunizing protein. Two sera reacted with a single other anti-MAG IgM in addition to the immunizing one. Immunoenzymatic studies showed that these two couples of anti-MAG IgM reacted identically with 100% cross-inhibition, indicating that the whole set of idiotypes identified by the rabbit antiserum was present on both IgM antibodies. The four other anti-idiotypic sera reacted with the homologous IgM, as well as with most of the other anti-MAG IgM. In contrast to the previous antisera the binding of these four sera to the homologous IgM could not be inhibited by other cross-reacting anti-MAG IgM. However, when a heterologous IgM was used for coating, these antisera with one exception showed complete cross-inhibition. The absence of inhibition by purified MAG of the patient of the anti-idiotypic antisera sera suggests that these antibodies are most likely to be directed against framework determinants rather than against combining site epitopes.

Antibodies, Monoclonal

Characterization of jacalin, the human IgA and IgD binding lectin from jackfruit.

The lectin jacalin from the jackfruit Artocarpus heterophyllus reacts by precipitation and western blotting with human IgA1 and IgD but not with IgA2 (nor IgG and IgM). However, it weakly binds IgA2 as shown by affinity chromatography and competitive ELISA. Predominantly reactive carbohydrates are D-galactose and N-acetyl D-galactosamine. Jacalin has an apparent Mr of about 54,000 and is probably made up of three non-glycosylated and one glycosylated non-covalently linked subunits. Its electrophoretic properties and amino acid and carbohydrate composition are indicated.

Amino Acids

Analysis of the domain specificity of various murine anti-human IgM monoclonal antibodies differing in human B lymphocyte signaling activity.

The domain binding specificity of 19 murine anti-human IgM monoclonal antibodies (MoAbs) that have shown considerable heterogeneity in the transduction of stimulatory and inhibitory signals to B lymphocytes was evaluated by competition radioimmunoassays. Through the use of: (i) enzymatic fragments of IgM which each encompass more than a single CH domain, i.e. Fc5 mu and F(ab')2 mu, (ii) isolated single domains, C mu 2, C mu 3, and C mu 4, and (iii) mu heavy chain disease proteins, nine anti-IgM MoAbs were found to have C mu 1 domain specificity, five to have C mu 2 specificity, and five others to have C mu 4 specificity. Ineffective binding to isolated mu chain demonstrated that C mu 1-specific MoAbs were directed to epitopes which require light chain for expression. The lack of binding of the C mu 4-specific MoAbs to CNBr cleavage fragments of Fc5 mu suggest that the determinants recognized by these MoAbs may also be conformational in nature. Cross-inhibition analyses were used to determine the number of unique epitopes recognized by the anti-IgM MoAbs. Results from these experiments showed that: (i) eight of the nine MoAbs specific for C mu 1 likely bind to a single epitope, or very proximate epitopes, (ii) the five C mu 2-specific MoAbs recognize at least three distinct epitopes, and (iii) the five C mu 4-specific MoAbs each recognize a separate determinant. A comparison of the known B cell activating properties of these MoAbs with their specificity for the various segments of the IgM molecule indicate that mitogenicity cannot be attributed to selective binding to any one domain.

Animals

The molecular organization of the protein HC-IgA complex (HC-IgA).

Complexes of protein HC and monoclonal IgA1 or IgA2 or polyclonal IgA were isolated from human blood plasma. Dodecyl sulfate-polyacrylamide gel electrophoresis and immunoblotting showed that all complexes contain three types of chains: two light immunoglobulin chains, one regular IgA alpha-chain, and one chain with Mr = 90,000 carrying both alpha-chain and protein HC epitopes. The complexes were split into Fab alpha and Fc alpha fragments by bacterial IgA proteases. The protein HC epitopes were linked to the Fc fragments. Complexes of protein HC and an alpha-chain devoid of the variable region and the first heavy chain constant domain could also be demonstrated to be present in the blood plasma of a patient with alpha-heavy chain disease. Pepsin digestion of HC-IgA released a fragment containing all the protein HC epitopes and the C-terminal nonapeptide of the IgA alpha-chain. The light immunoglobulin chains, the regular alpha-chain, and the 90,000-Da chain from monoclonal HC-IgA1 were isolated by preparative dodecyl sulfate-polyacrylamide gel electrophoresis and by repeated gel filtration in dodecyl sulfate-containing buffer. The N-terminal amino acid sequence of the alpha-chain was identical with that of a regular human heavy immunoglobulin chain of subgroup III. Subtractive degradations of the 90,000-Da chain displayed 2 amino acid residues in each position in a pattern suggesting simultaneous degradations of a chain identical with the regular alpha-chain of HC-IgA and of uncomplexed, low molecular weight, protein HC. All the results are compatible with a model for HC-IgA in which a single low molecular weight protein HC polypeptide chain is covalently linked, side by side, to the C-terminal nonapeptide of one of the two alpha-chains of a regular monomeric IgA unit.

Alpha-Globulins

The amino acid sequence of a lambda light chain presenting abnormal physicochemical and antigenic features.

The amino acid sequence of the light chain of a human monoclonal IgA1 (Mem) was established, in part by analogy with already known sequences. By homology its variable part was shown to belong to the V lambda I subgroup while the isotype-associated amino acid residues characterized it as Mcg+, Kern+ and Oz-. The normal primary structure of this chain was in contrast to its abnormal physical and antigenic properties: (a) its apparent molecular mass estimated by SDS/polyacrylamide gel electrophoresis, by gel filtration chromatography and by gradient ultracentrifugation was found to be lower by approximately equal to 10% than the values (23.5 kDa) of 'normal' light chain used as controls; (b) the lambda I chain Mem, when tested in native state was not antigenically reactive. These abnormalities were reverted when the chain was treated with 8 M urea. These data suggest that the abnormal behaviour of lambda I chain Mem is at a conformational level.

Amino Acid Sequence

An anti-human mu chain monoclonal antibody: use for detection of IgM antibodies to Toxoplasma gondii by reverse immunosorbent assay.

A precipitating anti-human mu chain monoclonal antibody (designated Tibi 82 McAb) was produced by the cell fusion technique. This McAb (isotype: IgG1 kappa) reacted by radioimmunoassay with all 10 human IgM proteins tested. In contrast, no reactivity was observed with IgG, IgA, IgE, lambda and kappa chains. 19 S IgM proteins were precipitated by Tibi 82 McAb using the Ouchterlony method under standard conditions. Hence specificity of this McAb for the C mu 2 domain was characterized by inhibition of precipitin reactions using human IgM fragments. Despite its narrow specificity for the C mu 2 domain, such a McAb could be used for IgM capture in the detection of specific IgM to Toxoplasma gondii employing the IgM immunosorbent agglutination assay (IgM-ISAGA). Tibi 82 McAb was compared with 3 anti-human IgM polyclonal reagents in the routine analysis of 117 sera. With 2 of them, a correlation coefficient of 0.976 was obtained and Tibi 82 McAb was more sensitive than the third polyclonal reagent tested. The IgM-ISAGA technique was shown to be reproducible using Tibi 82 McAb and similar anti-human mu chain McAbs could permit the wider development of reverse immunosorbent methods for the detection of specific IgM in various infectious diseases.

Antibodies, Anti-Idiotypic

The primary structure of mu-chain-disease protein BOT. Peculiar amino-acid sequence of the N-terminal 42 positions.

The complete primary structure of the mu heavy-chain disease (mu-HCD) protein BOT has been determined. The monomeric HCD-mu-chain consists of 391 amino-acid residues, lacking the VH and mu CH1 domains but including the entire CH2, CH3 and CH4 domains (349 residues). The sequence of the preceding 42 N-terminal residues which we designate as the "pre-C-part" presents no homology to any known variable or constant immunoglobulin sequence, but contains an internal homology of positions 10-19 to positions 20-29. The origin of the "pre-C-part" structure and the deletion of the mu CH1 domain of protein BOT are discussed.

Amino Acid Sequence