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S Gabius

Publications and source records attributed to S Gabius.

35 records · Page 2Linked to original sources

Carrier-immobilized derivatized lysoganglioside GM1 is a ligand for specific binding sites in various human tumor cell types and peripheral blood lymphocytes and monocytes.

Biotinylation of ganglioside-protein conjugates, derived from selective N-acylation of the sphingoid amino group of deacylated ganglioside GM1 or a ganglioside mixture, yielded probes to detect specific binding sites in fixed specimens. GM1-containing neoligandoprotein significantly bound to tumor cells in sections of 15 out of 16 cases of human lung cancer, while the probe, derived from the mixture, was ineffective under these conditions. The same graduation of staining was under identical conditions observed with these two probes on fixed human tumor cells and on peripheral blood lymphocytes and monocytes. Attempts of biochemical isolation of proteins, responsible for this binding capacity, from tumor cell extracts in the presence of the abundant endogenous ligands led to protein bands with apparent molecular weights of 44,000, 68,000 and 72,000 with yields of 0.1-0.24 micrograms/mg protein, after the detergent extracts had been passed over a resin, exposing gangliosides of the markedly less efficient mixture, to exclude binding by non-specific ionic or hydrophobic interactions.

Binding Sites↗

[Tumor lectinology--status and perspectives of clinical application].

A detailed knowledge of the mechanisms of molecular recognition is a prerequisite to rationally improved diagnostic and therapeutic procedures in diseases. In addition to sequences of amino acids, carbohydrate structures apparently store biological information that is thought to be relevant for physiologically important processes. Such ligands, namely the carbohydrate part of cellular glycoconjugates, can be recognized by specific endogenous binding proteins like lectins. If their presence can be reliably ascertained and correlated to the clinical course of the disease, e.g. in oncology, lectinology may help to define a yet undisclosed role for this class of proteins in tumor progression and spread.

Animals↗

Sugar receptors of the stromal cell layer in human long-term bone marrow cultures: their presence, modulatory responses to changes in the microenvironment and potential role in cellular adhesion.

Intimate cellular contacts and coordinated supply of regulatory factors are required to maintain the still inexplicable dynamic equilibrium of hemopoiesis. To infer the potential participation of protein-carbohydrate interaction in this complex process, human long-term bone marrow cultures were initiated from eleven donors, and the adherent cell layer was characterized enzyme- and immunohistochemically. Utilizing an array of carrier-immobilized carbohydrate ligands and sulfated polysaccharides as probes, specific binding of various constituents of the carbohydrate chains of cellular glycoconjugates to the stromal cells was unmistakably disclosed. Biochemical analysis, employing glycocytologically effective ligands in affinity chromatography, corroborated this result. The extent of binding was markedly lower in the two samples, derived from leukemia patients. Pronounced adaptive responses for this characteristic followed changes in the culture microenvironment that are known to influence qualitative and quantitative aspects of hemopoiesis in vitro, namely omission of hydrocortisone and horse serum or addition of cytokines. Similarly, such adaptive modulation occurred on the level of accessible cell surface receptors, monitored by neoglycoenzymes. These binding sites can be involved in mediation of cellular interactions, as revealed in a model system by the interference of N-acetyl-D-galactosamine in cell adhesion. Overall, the results support the idea that glycobiological recognition may contribute to the functional integrity of the stromal cell layer as well as provide the basis for further analysis.

Bone Marrow↗

Binding of T-antigen-bearing neoglycoprotein and peanut agglutinin to cultured tumor cells and breast carcinomas.

Chemical conjugation of appropriate carbohydrate ligands to an inert labeled carrier renders probes available to screen for the presence of respective binding sites. A set with a certain plant lectin and a suitable neoglycoprotein can thus determine complementary parts of a potentially relevant glycobiological interaction system. Owing to the interest in the peanut agglutinin-reactive T-antigen, we performed chemical synthesis of the respective disaccharide structure to serve as glycohistochemical ligand and established refinements of the synthetic patway. Coupling of the derivatized monomers had to be performed in the presence of sodium sulfate for optimal results. Complete removal of the protective groups from the p-nitrophenyl derivative of the N-acetylgalactosamine moiety was achieved under mild conditions with 2,3-dichloro-5,6-dicyanobenzoquinone without affecting any other functional groups. Specific binding sites for the synthetic neoglycoprotein as well as for the plant lectin were demonstrated in cell lines of human breast carcinoma colon adenocarcinoma, and erythroleukemia. ABC reagents in conjunction with DAB as peroxidase substrate were used to visualize specific binding sites. Binding complied with the accepted criteria for specificity. Moreover, carbohydrate-specific binding sites were detected in sections of nine out of 14 cases with malignant breast lesions. The percentage of positive tumor cells with both neoglycoprotein and lectin was similar in each of the individual sections, regardless of quantitative variations between cases, lectin staining intensity often being more pronounced. The reactivity pattern in sections of primary and metastatic lesions was not significantly correlated with the lymph node status. This study emphasized that custom synthesis of saccharides and histochemical application of the resulting neoglycoprotein has a remarkable potential for complementary assessment of endogenous binding sites for carbohydrate structures, localized by external tools such as plant lectins, as a step to elucidate the importance of a putative proteincarbohydrate interaction.

Adenocarcinoma↗

Endogenous lectins with specificity to beta-galactosides and alpha- or beta-N-acetyl-galactosaminides in human breast cancer. Their glycohistochemical detection in tissue sections by synthetically different types of neoglycoproteins, their quantitation on cultured cells by neoglycoenzymes and their usefulness as targets in lectin-mediated phototherapy in vitro.

Endogenous lectins may augment the panel of tumor markers. Specific protein-carbohydrate interactions especially involve carbohydrate moieties that are located at sequence termini, e.g. D-galactose and N-acetyl-D-galactosamine. Respective endogenous lectins can be detected by suitably constructed neoglycoproteins. In order to evaluate the influence of sugar and label density as well as coupling mode of the carbohydrate moiety to the carrier protein for lectin localization in histopathology, four different types of neoglycoproteins, carrying beta-galactosides or alpha- and beta-anomers of N-acetyl-D-galactosamine were employed to reveal the presence of specific receptors in invasive ductal mammary carcinomas with propensity for metastasis formation. Staining of tumor cells was more intense than staining of normal cell types. Coupling of the diazo derivatives of p-aminophenyl glycosides led in most cases to the relatively highest extent of staining in terms of number of stained cells and staining intensity. Classified next according to these categories attachment of sugars via p-isothiocyanato derivatives or via an aliphatic linker after his reaction with the C6-hydroxyl group of the sugar moiety was rather equally well effective, whereas reductive amination with concomitant ring opening at the reducing end of the disaccharide lactose resulted in neoglycoproteins, yielding the lowest extent of staining. The alpha-anomer is preferred as a ligand to endogenous lectins of tumor cells to the beta-anomer of N-acetyl-D-galactosamine. To reduce the number of steps in glycohistochemical processing, glycosylated enzymes were successfully employed. They also allowed to measure the lectin density on breast carcinoma cells, leading to rational selection for demonstrated lectin-mediated targeting of neoglycoprotein-hematoporphyrin conjugates. Immobilization of ligands as an approach to prepare histochemically valuable reagents to localize respective receptors is not confined to tumor lectinology, as emphasized by additional application of hormone-protein conjugates, termed neohormoproteins.

Acetylgalactosamine↗

Neoglycoenzymes: a versatile tool for lectin detection in solid-phase assays and glycohistochemistry.

Carbodiimide-mediated coupling of p-aminophenyl glycosides to a naturally nonglycosylated enzyme yields a neoglycoenzyme. This compound combines inherent enzymatic activity with synthetically conferred ligand properties to lectins. Appropriate choice of the ligand allows custom-made synthesis to reliably detect various types of lectins. To exemplify practical applications of this class of compounds, glycosylated bacterial beta-galactosidase has been employed to quantitate plant lectins, immobilized on plastic surfaces as well as on nitrocellulose. Competitive inhibition by specific sugar ascertained the dependence of binding on protein--carbohydrate interactions. In view of lectins as tools, a sandwich lectin-binding assay for high mannose-type glycoprotein detection has been modified to principally facilitate wide application to other lectin-reactive sugar chains by introducing the neoglycoenzyme. In addition to lectin determination in solid-phase assays, neoglycoenzymes allow one to glycohistochemically localize endogenous lectins in tissue prints and tissue sections with a minimum number of steps. This nonradioactive, rapid, sensitive, and convenient assay concept, based on conjugation of a ligand to an enzyme with maintenance of its receptor-binding activity, may find extended application beyond lectinology in receptor analysis.

Biotin↗

Identification of a cell cycle-dependent gene product as a sialic acid-binding protein.

A Ca2+-dependent sialic acid-binding protein was purified on fetuin-Sepharose from various types of human tissue. The molecular mass was determined to be 10,315 Da by laser desorption mass spectrometry. Partial sequence analysis after cyanogen bromide cleavage that yielded one N-terminus accessible for Edman degradation revealed an identity to an internal stretch following the only methionine residue within a putative amino acid sequence (Mr 10,048), deduced from the cDNA of a cell cycle-specific gene. The reported biochemical identification is a prerequisite to infer the biological role of the so far undetected gene product. Initial glycohistochemical studies with sialic acid-(BSA-biotin) raised evidence for nuclear localization of sialic acid-binding sites that might reflect, at least in part, detection of this protein.

Amino Acid Sequence↗

[Chronic granulocytopenia as a main symptom of T gamma-lymphocytosis].

Routine examination of a 60-year-old woman with long-lasting rheumatic complaints revealed a granulocytopenia in the differential blood count (1% stab cells, 3% segmented) with a normal total leucocyte count (4,200/microliters). It was caused by a lymphoproliferative disease of the granular lymphocytes, which may also be termed T gamma lymphocytosis because of the predominant phenotype. As the lymphocytosis in blood and bone marrow was of minor degree, the diagnosis was confirmed only by immunocytochemical and molecular-genetic demonstration of clonal expansion of the T gamma lymphocytes. The granulocytopenia gradually became more marked and recurrent infections were noted. Treatment with cyclosporin and cortisone brought about remission of the granulocytopenia.

Agranulocytosis↗

Lineage- and differentiation-dependent alterations in the expression of receptors for glycoconjugates (lectins) in different human hematopoietic cell lines and low grade lymphomas.

Important biological functions and cellular recognition phenomena are supposedly governed by specific sugar-protein interactions. Human hematopoietic cell lines offer an excellent model for the study of the expression of endogenous receptors for the carbohydrate part of glycoconjugates with respect to cell lineage and modulation by differentiation. Initially, a panel of fluorescent (neo)glycoproteins was successfully employed to demonstrate cytologically the actual presence of such receptors on different cell lines: the B lymphoblast line, Daudi; the T cell lymphoblastic leukemia line, P12; the multipotent leukemic line, K562 and the promyelocytic line, HL060. Biochemical analyses were performed using affinity chromatography on supports with immobilized lactose and asialofetuin (simple or complex beta-galactosides), melibiose (alpha-galactoside), fucose, N-acetyl-D-galactosamine, maltose (alpha-glucoside), the mannose-rich yeast glycoprotein, mannan, glycopeptides containing sialic acid residues and heparin. Subsequently, sodium dodecyl sulfate-polyacrylamide slab gel electrophoresis was used to detect cell lineage-dependent changes in theses parameters. Differentiation-dependent changes in the expression of receptors with specificity to galactose, N-acetylgalactosamine, maltose and heparin were similarly uncovered upon dimethyl sulfoxide-induced differentiation of HL60 cells. Differences in this type of cellular characteristic were also apparent for lymphoma cells from patients with various histological subtypes of lowgrade lymphomas. This initial description of lineage- and differentiation-dependent differences in various human hematopoietic cell lines and in cells from patients with lowgrade lymphomas suggests that advances in the knowledge of the composition of endogenous sugar receptors (lectins) may aid in understanding aspects of the biological behavior of hematopoietic cells and their related malignancies via participation of sugar-protein (lectin) interactions.

Cell Differentiation↗

Conjugation of p-aminophenyl glycosides with squaric acid diester to a carrier protein and the use of neoglycoprotein in the histochemical detection of lectins.

The coupling of p-aminophenyl 2-acetamido-2-deoxy-3-O-beta-D- galactopyranosyl-beta-D-galactopyranoside (gal-beta 1,3-galNAc) to bovine serum albumin (BSA) was achieved by using 1,2-diethoxycyclobutene-3,4-dione (squaric acid diester) as a new coupling reagent. Two selective consequential steps afforded the desired neoglycoprotein: reaction of the p-aminophenyl group of gal-beta 1,3-galNAc with squaric acid diester gave the corresponding squaric acid amide ester, which was transformed into the BSA conjugate by coupling with the lysyl epsilon-amino group of BSA through formation of a squaric acid 1,2-bisamide. The experimental conditions for the reactions and the optimization of average were performed by using p-anisidine as model substance, the methyl group substituting for the carbohydrate part of a p-aminophenylglycoside. Neoglycoproteins have proven to be valuable tools for lectin detection. To evaluate the properties of this type of probe, the obtained neoglycoprotein with the histochemically crucial T-antigen structure was used for glycocytological and glycohistochemical studies. Three cultured human tumor cell lines and tissue sections from human breast carcinomas were chosen. Its efficiency was similar in comparison to measurements with a probe, derived by diazotization with the p-aminophenyl glycosides of gal-beta 1,3-galNAc and already shown to be a reliable marker for lectin localization in tissue sections and cultured cells.

Antigens, Tumor-Associated, Carbohydrate↗

Aminoacyl-tRNA synthetases in liver, spleen and small intestine of aged leukemic and aged normal mice.

The specific activities of 17 aminoacyl-tRNA synthetases in liver, lung, heart, spleen, kidney and small intestine of old female normal and leukemic (reticulum-cell sarcoma, type A) mice have been monitored. No difference appears for lung, heart and kidney; small increases with varying particular changes for liver and marked increases in spleen and small intestine of the tumor bearing mice have been found, following a similar pattern. This finding suggests a coordinated adaptation to modulation of the requirements of protein synthesis imposed by histiocytic sarcoma.

Aging↗

The immunomodulatory beta-galactoside-specific lectin from mistletoe: partial sequence analysis, cell and tissue binding, and impact on intracellular biosignalling of monocytic leukemia cells.

Nanogram quantities of the beta-galactoside-specific lectin from mistletoe (ML-I) that is composed of two different types of subunits exhibit immunomodulatory potency and enhance cytokine secretion in vitro and in vivo. Partial sequence analysis of the carbohydrate-binding B chain revealed a ragged N-terminus and overall homologies to the B subunit of Ricin D and Ricin E. Two evolutionarily neutral substitutions were apparent in the otherwise identical N-terminal sequences of the two toxic chains within the lectin preparation. On the basis of the influence of chemical modification by group-specific reagents on ligand binding, the lectin was biotinylated with biotinyl-N-hydroxysuccinimide ester to allow monitoring of cell binding. Monocytic leukemia cells (THP-1) specifically bound the lectin with positive cooperativity at low lectin concentrations. Radiolabelled lectin could be found in several organs and in an experimental solid tumor in biodistribution in mice. Its presence in a notable amount in spleens is especially noteworthy with respect to the already reported immunomodulation. To determine intracellular responses that precede the lectin-dependent augmentation of cytokine secretion, phosphorylation of proteins and phospholipids as well as Ca(2+)-mobilization were assessed in THP-1 cells. Quantitative increases of [32P]-phosphate incorporation were determined for a 28 kDa protein and for phosphatidylinositol-4,5-biphosphate. Similarly, the fluorescence activity of the intracellular Ca(2+)-indicator fluo-3 is elevated by approximately 25% after lectin treatment. Apparently, cell binding of the lectin is followed by modulation of biosignalling processes.

Amino Acid Sequence↗

Establishment, characterization and determination of cell surface sugar receptor (lectin) expression by neoglycoenzymes of a human myeloid marker-expressing B lymphoblastoid cell line.

Mediation of cellular interactions by protein (lectin)-carbohydrate recognition presupposes the expression of respective surface determinants. Due to the importance of cellular contacts between bone marrow stromal cells, recently shown to express cell surface lectins, and tumor or normal progenitor cells for biosignaling and marrow egress, quantitation of cell surface sugar receptor expression by a panel of chemically glycosylated enzymes (tetrameric E. coli beta-galactosidase) for human leukemia/lymphoma cells was initiated. Cells of the new B lymphoblastoid line Croco II that are partially positive for the CD15-specific epitope expressed receptors for various sugar specificities on their surface, fulfilling an indispensable prerequisite for establishment of glycobiological interactions. Binding studies with increasing neoglycoenzyme concentrations up to saturation in four cases disclosed values for apparent affinity constants in the range of 25-200 nM with 0.25-3 x 10(5) bound probes per cell. The presence of receptors for constituents of carbohydrate chains of cellular glycoconjugates was also ascertained biochemically, namely for beta-galactosides, alpha-mannosides, alpha-fucosides and N-acetylgalactosaminides. Expression of this property was modulated by changes in the culture conditions, as revealed by binding studies with cells, derived from growth in medium containing different serum concentrations. These findings indicate that cell surface sugar receptors of tumor cells warrant further attention with respect to recognitive interactions.

Antigens, CD↗

Regulation of distribution, amount and ligand affinity of sugar receptors in human colon carcinoma cells by treatment with sodium butyrate, retinoic acid and phorbol ester.

Human colon carcinoma cells were treated with non-toxic levels of sodium butyrate, retinoic acid or phorbol ester, eliciting characteristic growth inhibition and morphological changes. Since protein-carbohydrate interactions are supposedly involved in regulatory processes and can serve within targeted drug delivery, the capacity to bind components of the carbohydrate chains of cellular glycoconjugates was monitored for such cells in relation to the type of the medium additive. The pattern of binding of a panel of neoglycoproteins was significantly altered for fixed cells, depending on the type of putative maturation factor. Quantitation of cell surface sugar receptors at a non-saturating concentration of neoglycoenzyme, employed as carbohydrate ligand-exposing probe, led to a similar conclusion. Up to six-fold increases were determined for individual probes. Binding studies with varying concentrations of neoglycoenzymes in the case of four ligands revealed that the receptor density, but not the affinity was significantly affected. Biochemical analyses corroborated this result by demonstrating mainly quantitative differences after affinity chromatography of detergent extracts from the four types of cell pellet. By showing the inhibitory potency of neoglycoprotein-conjugated liposomes in the cell binding assay with neoglycoenzymes, a perspective is indicated, of how the different effects of the differentiation-inducing agents might be beneficially exploited in targeted drug delivery.

Adenocarcinoma↗