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T Feizi

Publications and source records attributed to T Feizi.

At least 145 records · Page 8Linked to original sources

Monoclonal antibody (EGR/G49) reactive with the epidermal growth factor receptor of A431 cells recognizes the blood group ALeb and ALey structures.

The carbohydrate specificity of the monoclonal antibody EGR/G49, raised against the epidermal growth factor (EGF) receptor of A431 cells, has been investigated by assessing its interactions with glycoproteins and erythrocytes derived from individuals of known blood group ABH, Lewis and secretor types, and by inhibition of binding assays using structurally defined oligosaccharides. The results indicate that this antibody reacts with the difucosylated blood group structures ALeb and ALey: (formula; see text) This antibody differs from the previously described anti-EGF receptor antibody. TL5, which is directed at the terminal blood group A trisaccharide structure and reacts poorly with the ALeb/Ley structures. Since both antibodies were selected for their reactivities with the receptor for EGF, their specificities provide evidence for the presence of both the mono- and difucosylated blood group A structures on the receptor glycoprotein. These antibodies will be invaluable in the studies of the distribution and the roles of blood group related carbohydrate structures in the organisation and function of the EGF and other receptor systems.

ABO Blood-Group System↗

Evidence for sialylated type 1 blood group chains on human erythrocyte membranes revealed by agglutination of neuraminidase-treated erythrocytes with Waldenström's macroglobulin IgMWOO and hybridoma antibody FC 10.2.

Haemagglutination studies have been performed with untreated and neuraminidase-treated human erythrocytes of the three Lewis antigen types Le(a-b-), Le(a+b-) and Le(a-b+) using two monoclonal antibodies, IgMWOO and FC 10.2, which were previously shown to recognize the type 1 based blood group chains: Gal beta 1----3GlcNAc beta 1----3Gal beta 1----4Glc/GlcNAc (for explanation of abbreviations see table IV legend). Both antibodies behaved as cold agglutinins with neuraminidase-treated but not with untreated erythrocytes of the three Lewis antigen types. Neuraminidase-treated erythrocytes of i antigen type were similarly agglutinated. This haemagglutination was specifically inhibited by the type 1 based milk oligosaccharide lacto-N-tetraose. Thus, there is strong evidence for the occurrence of sialylated type 1 chains on human erythrocyte membranes of I and i antigen types. In addition, evidence for the presence of type 1 chains which are both sialylated and fucosylated was obtained by (1) haemagglutination of Le(a+b-) erythrocytes with the monoclonal antibody 19.9; (2) increased haemagglutination of neuraminidase-treated erythrocytes with anti-H antibodies of Bombay serum; (3) increased haemagglutination of neuraminidase-treated Le(a+b-) cells with anti-Lea antibodies, and (4) the appearance of Lea antigen activity on neuraminidase-treated erythrocytes of Le(a-b+) type.

ABO Blood-Group System↗

Interaction of Mycoplasma pneumoniae with erythrocyte glycolipids of I and i antigen types.

The role of sialoglycolipids (gangliosides) as receptors for the human pathogen Mycoplasma pneumoniae was investigated by using purified gangliosides of known carbohydrate structures as inhibitors of the binding of 51Cr-labeled erythrocytes to sheet cultures of M. pneumoniae. We found that sialoglycolipids with long carbohydrate backbones of the poly-N-acetyllactosamine type were more potent inhibitors of M. pneumoniae binding than those with short carbohydrate chains. This is in accord with earlier inhibition data for glycoproteins and oligosaccharides. Thus, the inhibitory activity of a fraction of bovine erythrocyte gangliosides containing long backbone structures of I antigen type was approximately 200 times greater than that of the short chain gangliosides GM3 and GT1b. The binding of M. pneumoniae to erythrocytes of I and i antigen types was found to be comparable, indicating that M. pneumoniae in its adhesive specificity may not distinguish between the branched carbohydrate backbones of I type and the linear structures of i type. Thus, the production of autoantibodies to the backbone structures of I type rather than i type after infection with this agent may simply reflect a greater abundance of branched carbohydrate receptors of I type on the surface of host cells with which the mycoplasma forms immunogenic complexes.

Blood Group Antigens↗

Blood group antigens A, B, H, Lea, Leb, and I(Ma) in resting and tetragastrin stimulated gastric juice of patients with non-neoplastic diseases of the stomach.

In view of the anomalous expression of blood group and related antigens in the gastric mucosae of patients with malignant and premalignant diseases of the stomach, and the potential clinical value of their measurement, a preliminary study has been performed on the blood group antigens A, B, H, Lea, Leb, and I(Ma) in glycoprotein rich extracts of the resting and tetragastrin stimulated gastric juice of patients without evidence of gastric cancer. The aim has been to assess whether the antigenic profiles known to distinguish the gastric mucosae of secretors from those of non-secretors are reflected in the glycoproteins of gastric juice. Antigenic profiles which distinguish secretors from non-secretors were observed in the stimulated rather than the resting gastric juice as follows: the A, B or H antigens but not I(Ma) were strongly expressed in the glycoproteins of secretors, while I(Ma) was the antigen characteristic of non-secretors. On the other hand, there was considerable overlap in the Lea and Leb antigen values in the resting and stimulated gastric juice of secretors and non-secretors. Among these antigens, I(Ma) is known to appear as a neo-antigen in the gastric mucosae of secretors with malignant and premalignant diseases of the stomach. Thus this antigenic determinant is potentially a clinically useful marker in the gastric juice of 75% of the population who are secretors. The clinical value of the levels of this antigen in the gastric juice now deserves investigation.

ABO Blood-Group System↗

Differences in the fine specificities of monoclonal (Class A) antibodies to human myeloid cells.

Among 13 monoclonal antibodies to human myelomonocytic cells, six could be assigned to a group designated Class A with the following properties: (a) they react almost exclusively with granulocytes among cells of the peripheral blood, (b) they resemble the previously described anti-granulocyte antibodies, VEP8 and VEP9, and the anti-mouse embryo, anti-SSEA-1, in their strong reactions with human meconium glycoproteins and ovarian cyst mucins of non-secretor type and (c) they recognize the carbohydrate antigen 3-fucosyl-N-acetyllactosamine (alpha 1----3fucosylated Type 2 blood group chains). The binding of these anti-myeloid antibodies is more strongly inhibited by lacto-N-fucopentaose III than by the trisaccharide-fucosyl-N-acetyllactosamine, in contrast to anti-SSEA-1 which is more strongly inhibited by the trisaccharide. These observations suggest that the myeloid Class A antibodies recognize additional determinants on the neolacto (Gal beta 1----4GlcNAc beta 1----3Gal beta 1----4) backbone of the pentasaccharide which occurs on the glycoproteins and glycolipids of myeloid cells. However, no two of the anti-myeloid antibodies were identical in their inhibition patterns with the glycoproteins and the two oligosaccharides. They also differed in their cellular reactivities, for example, the proportion of cells in the K-562 cell line reacting with each antibody ranged from 15-57%.

Antibodies, Monoclonal↗

Comparison between murine natural antibodies and natural killer cells: recognition of separate target structures as revealed by differential in vitro expression and dependence on glycosylation.

The specificity of complement-fixing, cytotoxic antibodies against the YAC lymphoma in sera of normal young adult (A X C57BL)F1 mice was studied. In vivo-maintained, immunoselected sublines of the YAC lymphoma expressed low amounts of the natural antibody (NAb) target structure. These cell lines were also resistant to natural killer (NK) cell-mediated lysis. After 2-3 weeks of in vitro culture the immunoselected cell lines became NK sensitive, but they remained resistant to NAb. When several independently derived variants selected for low NK sensitivity were tested for their ability to absorb NAb, the degree of absorption varied considerably among the variants. NAb could be inhibited by purified C-type virus particles and also by bacterial sonicates and various glycoprotein preparations. Treatment of target cells with tunicamycin, an inhibitor of asparagine-linked glycosylation, decreased the sensitivity to NAb lysis but had no impact on NK sensitivity. Thus the results indicated that a) NAb and NK cells recognized separate target structures and b) the target structure(s) for NAb but not for NK cells were saccharides of the N-glycosidic type.

Animals↗

Saccharide structures of the mouse embryo during the first eight days of development. Inferences from immunocytochemical studies using monoclonal antibodies in conjunction with glycosidases.

Monoclonal anti-carbohydrate antibodies have been used in conjunction with glycosidases in immunofluorescence studies to derive information about the structures and in situ distribution of saccharides of the mouse embryo during the first 8 days of development. The salient findings are as follows: Branched poly-N-acetyllactosamine sequences of I-antigen type are detectable from the first day onwards and are widely distributed in cells of the endoderm, ectoderm and mesoderm. Linear poly-N-acetyllactosamine sequences of i-antigen type are detectable from the fifth day onwards in cells of all three lineages, but have a more restricted distribution than the sequences of I-type. Poly-N-acetyllactosamine sequences that are susceptible to digestion with endo-beta-galactosidase are the main carriers of the SSEA-1, C14 and the blood group B-like antigens, which have the following structures (Formula; see text) and are found in endoderm and ectoderm but not in mesoderm cells. In the trophoblast however, these antigens are borne on saccharides that are resistant to endo-beta-galactosidase. A proportion of the poly-N-acetyllactosamine structures in the endoderm and the ectoderm of the 5- and 6-day embryos may contain the following novel structures: (Formula; see text) in which antigenicities of SSEA-1 and C14 determinants are masked. There are several types of sialyl-oligosaccharides: those reactive with anti-Gd, which has a specificity for NeuAc alpha 2-3Gal beta 1-4GlcNAc sequence in the extraembryonic mesoderm and the heart; those reactive with anti-Pr2 but not with anti-Gd, which may correspond to other N-acetylneuraminic acid containing sequences such as NeuAc alpha 2-3Gal beta 1-3GalNAc or NeuAc alpha 2-6Gal in preimplantation embryos and in the yolk sac, neural ectoderm and mesenchyme of the 8-day embryo; those with other sialic acid forms or linkages that do not react with anti-Gd and Pr2; among these are sialosyl-i sequences in the extraembryonic ectoderm, and sialosyl-I sequences in most cell types during the first 8 days. The latter are the main poly-N-acetyllactosamine structures in the neural ectoderm of the 8-day embryo. The sequence Gal beta 1-3GlcNAc beta 1-3Gal beta 1-4Glc/GlcNAc, or cross-reactive structures, which bind FC10.2 antibody occur in the extraembryonic endoderm and yolk sac. The roles of specific carbohydrate structures as receptors during embryonic development and cell growth are important topics of current research.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Carbohydrate antigens in human cancer.

Studies with naturally occurring and hybridoma-derived monoclonal antibodies have shown that surface and secreted antigens which distinguish human tumour cells from their normal counterparts are predominantly carbohydrate structures. Many of these belong to a family which includes the major blood-group antigens. In fact, the blood-group genes and the related secretor gene account for the individual and tissue-specific patterns of expression of several carbohydrate antigens as normal or as tumour-associated antigens. The biochemical basis of the tumour-associated changes requires investigation. In particular, it will be important to determine whether they are the result of aberrant expression of the glycosyltransferase genes. Their contribution to the disordered growth regulation in tumour cells will also be important to assess, particularly as the blood group family of oligosaccharides are among major antigenic components of the receptor for epidermal growth factor. Monoclonal antibodies to carbohydrate structures have opened new avenues of research into the biochemistry of tumour cells.

Antibodies, Monoclonal↗

Cell interactions in preimplantation embryos: evidence for involvement of saccharides of the poly-N-acetyllactosamine series.

Roles of cell surface carbohydrates containing the 3-fucosyl-N-acetyllactosamine and poly-N-acetyllactosamine sequences (SSEA-1 and I antigens, respectively) in the compaction of mouse embryos have been investigated using the endo-beta-galactosidase of Bacteroides fragilis to modify the surface of cleavage-stage embryos. Treatment with this enzyme abolished SSEA-1 activity and diminished I antigen activity on the embryonic cell surface. Embryos cultured in the presence of endo-beta-galactosidase from the 2- to 4-cell stage onwards, or treated with the enzyme at the compacting 8-cell stage, continued to compact and proceeded to form blastocysts at the normal rate. However, when compacted 8- to 16-cell embryos were experimentally decompacted in calcium-free medium, treated for 1 h with endo-beta-galactosidase and returned to normal culture medium, the time taken for 50% of the embryos to recompact was prolonged five-fold. There was an even greater delay if these embryos were maintained in culture medium containing the enzyme. Blastocysts were eventually formed under both conditions. Thus, endo-beta-galactosidase did not affect compaction unless the embryos were first decompacted. On the assumption that recompaction and de novo compaction occur by similar mechanisms, we propose that carbohydrate-binding molecules are involved which have high affinities for poly-N-acetyllactosamine structures and protect them from digestion by endo-beta-galactosidase.

Animals↗

Endo-beta-D-galactosidases of Bacteroides fragilis and Escherichia freundii hydrolyze linear but not branched oligosaccharide domains of glycolipids of the neolacto series.

The specificities of the endo-beta-galactosidases of Bacteroides fragilis and Escherichia freundii towards linear and branched oligosaccharides of the lacto-N-glycosyl series were investigated using as substrates glycolipids containing (a) linear neolactotetra - or hexaosyl sequences, (b) branched biantennary neolactooctaosyl sequences, and (c) triantennary neolactononaor dodecaglycosyl sequences. Glycolipid and oligosaccharide hydrolysis products were identified by tlc and/or paper chromatography. The rate of hydrolysis was assessed in time course experiments in which the oligosaccharides released were quantified as 3H-labeled alditols. The salient observations were as follows. (i) With the substrates thus far tested in the present and a previous study ( Scudder , P., Uemura , K., Dolby , J., Fukuda, M.N., and Feizi , T. (1983) Biochem. J. 213, 485-494), the endo-beta-galactosidases from B. fragilis and E. freudii have indistinguishable specificities. (ii) The beta-galactosidic linkage of the branch point sequence (Formula: see text) is completely resistant to hydrolysis by these enzymes, although the unbranched sequence GlcNAc beta 1-3Gal beta 1-4GlcNAc/Glc is readily cleaved. (iii) At an optimal concentration of detergent, the endo-beta-galactosidase susceptibility of the GlcNAc beta 1-3Gal beta 1-4Glc sequence near the ceramide moiety of branched glycolipids is similar to that of the corresponding sequence in linear glycolipids.

Bacteroides fragilis↗

Production and characterization of monoclonal antibodies to beta-galactoside-binding lectin of bovine heart muscle. Direct evidence that haemagglutinating activity is associated with a 13kDa protein.

With the aim of obtaining monospecific antibodies against the beta-galactoside-binding lectin of bovine heart muscle, spleen cells from Lou rats immunized with lectin were fused with the rat myeloma line Y3.Ag1.2.3. Two immunoglobulin M (IgM)-producing clones, designated NIBy 142-36/8 and NIBy 143-9/5, derived from separate fusions, were used to generate ascites containing high-titre binding activity against the 13kDa component in preparations of lectin. Direct evidence that haemagglutinating activity is associated with the 13kDa protein was obtained by the specific elution of 13kDa polypeptides with haemagglutinating activity from an immobilized antibody adsorbent. Solid-phase radiobinding assays and immunoblotting of isolated lectins and/or muscle homogenates confirmed the earlier indications with conventional antisera that the beta-galactoside-binding lectins of bovine, human and monkey muscle tissue are antigenically related.

Animals↗

The reactivities of human erythrocyte autoantibodies anti-Pr2, anti-Gd, Fl and Sa with gangliosides in a chromatogram binding assay.

The thin layer chromatogram binding assay was used to study the reaction of several natural-monoclonal autoantibodies which recognize sialic acid-dependent antigens of human erythrocytes. Immunostaining of gangliosides derived from human and bovine erythrocytes was achieved with four autoantibodies designated anti-Pr2, anti-Gd, Sa and Fl, each of which has a different haemagglutination pattern with untreated and proteinase-treated erythrocytes and with cells of I and i antigen types. From the chromatogram binding patterns of anti-Pr2 with gangliosides of the neolacto and the ganglio series, it is deduced that this antibody reacts best with N-acetylneuraminic acid when it is alpha 2-3- or alpha 2-6-linked to a terminal Gal(beta 1-4)Glc/GlcNAc GlcNAc sequence and to a lesser extent when it is alpha 2-3-linked to a terminal Gal(beta 1-3)GalNAc sequence or to an internal galactose and when it is alpha 2-8-linked to another, internal N-acetylneuraminic acid residue. The other three antibodies differ from anti-Pr2 in their lack of reaction with glycolipids of the ganglio series. They react with the NeuAc(alpha 2-3)Gal(beta 1-4)Glc/GlcNAc sequence as found in GM3 and in glycolipids of the neolacto series, but show a preference for the latter, longer sequences. Thus all four antibodies react with sialylated oligosaccharides containing i type (linear) and I type (branched) neolacto backbones. Fl antibody differs from the other three in its stronger reaction with branched neolacto sequences in accordance with its stronger agglutination of erythrocytes of I rather than i type. The four antibodies show a specificity for N-acetyl- rather than N-glycolyl-neuraminic acid.

Animals↗

Blood group-active carbohydrate chains on the receptor for epidermal growth factor of A431 cells.

The antigens expressed on the carbohydrate chains of the receptor for epidermal growth factor of A431 cells were studied by immunoblotting with monoclonal antibodies. Blood group A and the Type 1 based blood group ALeb and Lea antigens were detected as well as antigens associated with unsubstituted, monofucosylated and difucosylated Type 2 blood group chains. The Lea and the difucosylated Type 2 antigen activities were abolished by treating the blotted receptor with endo-beta-galactosidase, indicating that they are expressed on backbone structures of poly-lacto/neolacto type. (The term 'poly-lacto/neolacto' is used here to describe oligosaccharide backbone structures consisting of repeating Type 1, Gal beta 1-3GlcNAc (lacto) or Type 2, Gal beta 1-4GlcNAc (neolacto) sequences.) The glycosidic linkage of oligosaccharides to protein was investigated using Pronase digests of the receptor biosynthetically labelled with [3H]glucosamine or [3H]fucose. The oligosaccharides were alkali-resistant, consistent with N- rather than O-glycosidically linked chains. A proportion of [3H]fucose-labelled glycopeptides was susceptible to endo-beta-galactosidase, confirming the immunoblotting experiment using antibodies against the Lea and the difucosylated Type 2 antigenic determinants. Oligosaccharides were released from the [3H]fucose- and [3H]-glucosamine-labelled glycopeptides by hydrazinolysis. Chromatography of the oligosaccharides on Bio-Gel P6 and Concanavalin A columns indicated a spectrum of oligosaccharides which include those of high mannose type labelled with [3H]glucosamine, and a mixture of oligosaccharides labelled with [3H]fucose and [3H]glucosamine of bi- and multiantennary complex types of which a subpopulation is susceptible to digestion with endo-beta-galactosidase.

ABO Blood-Group System↗

Species differences in the expression of carbohydrate differentiation antigens on mammalian blood cells revealed by immunofluorescence with monoclonal antibodies.

Following recent observations using monoclonal antibodies that carbohydrate structures behave as differentiation antigens of man and mouse, we have made a preliminary survey of the expression of 8 monoclonal antibody-defined carbohydrate antigens on blood cell smears of man, baboon, mouse, rat, rabbit, pig, and dog. There are considerable species differences in the patterns of antigen expression. However, certain generalizations can be made as follows: the i and I antigens, associated with linear and branched carbohydrate chains consisting of repeating N-acetyl-lactosamine sequences (Gal beta 1-4GlcNAc, termed Type-2 backbone sequences) are widely distributed among granulocytes and lymphocytes of all the species studied, and on erythrocytes, monocytes, and platelets of some of them. Substantial amounts of Type-1 backbone sequences (Gal beta 1-3GlcNAc) may occur on rabbit lymphocytes. The N-acetylneuraminic acid-containing antigens, Pr2 and Gd, are also expressed to varying degrees on blood cells. On the other hand, antigens based on mono- and difucosylated N-acetyllactosamine, termed SSEA-1 (or X-hapten) and C14 (or Y-hapten) are predominantly granulocyte/monocyte-associated antigens. The former antigen is expressed in overt form only on untreated human granulocytes but occurs in cryptic state, masked by sialic acid, on human monocytes, and on the granulocytes and monocytes of baboon, rabbit, and dog but not on those of mouse, rat, and pig. The latter antigen is expressed on human granulocytes and on neuraminidase-treated monocytes and granulocytes of dog. Lymphocytes of dog are unusual in their expression of C14 antigen, in cryptic state, masked by sialic acid residues. Although the physiological roles of these various carbohydrate structures, in vivo, are not yet known, they seem excellent candidates as determinants of species and cell-type differences in susceptibilities to infective agents.

Animals↗

Cryptic I antigen activity and Mycoplasma pneumoniae-receptor activity associated with sialoglycoprotein GP-2 of bovine erythrocyte membranes.

The 250-kDa sialoglycoprotein of bovine erythrocyte membranes, GP-2, has been found to be an exceptionally rich source of branched sialo-oligosaccharides of poly-N-acetyllactosamine (I antigen) type with receptor activity for the human pathogen Mycoplasma pneumoniae. Desialylated GP-2 is the most potent I-active substance thus far tested. Since this glycoprotein is hydrophobic and can be readily re-incorporated into cell membranes, it should be useful in future studies of the mechanism of production of autoantibodies to the I antigen which commonly arise following human infection with M. pneumoniae.

Animals↗

Further studies of the specificities of monoclonal anti-i and anti-I antibodies using chemically synthesized, linear oligosaccharides of the poly-N-acetyllactosamine series.

The I- and i-antigen activities of chemically synthesized, linear oligosaccharides of the neolacto series containing one, two or three N-acetyllactosamine (Gal beta 1----4GlcNAc) units have been tested by inhibition of binding of five anti-i and eight anti-I monoclonal antibodies to radioiodinated I- and i-active glycoproteins. The inhibitory activities of the milk oligosaccharides lacto-N-neotetraose (Gal beta 1----4GlcNAc beta 1----3Gal beta 1----4Glc) and lacto-N-tetraose (Gal beta 1----3GlcNAc beta 1----3Gal beta 1----4Glc) have also been determined. The results clearly show that: (a) the determinants that best fit the combining sites of anti-i antibodies are at least hexasaccharides of the neolacto series, (b) linear tetra- and hexasaccharides of the neolacto series can strongly inhibit the binding of anti-I antibodies of group 2 which are known to be primarily directed at the repeating Gal beta 1----4GlcNAc beta 1----3 domains of branched neolacto sequences, (c) the beta- but not the alpha-methyl anomer of the glycoside Gal beta 1----4GlcNAc beta 1-O-Me inhibits the binding of anti-I antibodies of group 1 which recognise the branch point sequence Gal beta 1----4GlcNAc beta 1----6-, (d) the reactivity of the beta-methylglycoside is impaired if the sequence is further elongated as in Gal beta 1----4GlcNAc beta 1----3Gal beta 1----4GlcNAc beta-O-Me, and (e) lacto-N-tetraose has no inhibitory activity with any of the anti-i or anti-I antibodies tested.

Amino Sugars↗

Tumour-associated and differentiation antigens on the carbohydrate moieties of mucin-type glycoproteins.

In this report the carbohydrate antigens expressed on the three oligosaccharide domains, core, backbone and peripheral, of mucin-type glycoproteins are briefly reviewed in the light of recent observations with monoclonal antibodies. These have revealed that a number of cell-surface antigens which behave as tumour-associated and differentiation antigens of man or mouse are abundantly expressed on the carbohydrate chains of a variety of secreted mucins of human and animal origins and they belong to an antigen system which also includes the major blood group antigens. Examples are given of the use of well-characterized anti-carbohydrate antibodies to derive structural information on (a) mucin-type glycoproteins of human B lymphocyte membranes, (b) the high molecular weight glycoproteins of the normal human gastric and distal-colon mucosae and (c) tumour-derived glycoproteins from these two organs. Major differences between the antigenicities of the normal stomach and distal-colon, and between their tumour-derived glycoproteins, and the important effect of the secretor status in the expression of these antigens are described. These observations have enabled a better understanding of the individual and tissue differences in the expression of tumour-associated antigens. The possibility is raised that these carbohydrate structures (many of which also occur on certain N-linked oligosaccharides and glycolipids) are components of receptor systems for endogenous ligands. More tangible evidence is cited for the role of certain structures in this family of saccharides as receptors for infective agents.

ABO Blood-Group System↗