Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “GANGLIOSIDES”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 469 records · Page 26Linked to original sources

Electron paramagnetic resonance studies on the fluidity and surface dynamics of egg phosphatidylcholine vesicles containing gangliosides.

The influence of different gangliosides (GM1, GD1a, GT1b) on the fluidity and surface dynamics of phosphatidylcholine small unilamellar vesicles was studied by electron paramagnetic resonance. 5- and 16-nitroxystearic acid, sounding respectively the region close to the surface and that close to the hydrophobic core of the vesicle, were employed as spin-label probes. The signals released by 5-nitroxystearic acid showed that the presence of gangliosides reduced the mobility of the hydrocarbon chains around the probe. The effect increased by increasing ganglioside concentration, and diminished from GM1 to GD1a and GT1b. The decrease of membrane fluidity was also monitored by the 16-nitroxystearic acid probe. On addition of Ca2+ the fluidity of ganglioside-containing vesicles (as signalled by the 5-nitroxystearic acid probe) promptly decreased, therefore returning slowly to the original value. It is suggested that gangliosides cause strong side-side head group interactions on the bilayer surface--between ganglioside oligosaccharide chains and between ganglioside and phosphatidylcholine polar portions--which lead the lipid chains to assembly in a more rigid fashion. The influence of Ca2+ is interpreted as due to lateral phase separation in the vesicle membrane. This phenomenon can be related to the formation or stabilization of ganglioside clusters on the vesicle surface.

Animals↗

Gangliosides and phospholipids of the membranes from bovine adrenal medullary chromaffin granules.

The lipid and ganglioside compositions of membranes of chromaffin granules isolated from bovine adrenal medulla have been investigated. The detailed lipid analysis revealed the presence of high levels of lysophosphatidylcholine, in agreement with previous studies, but also of sphingomyelin and plasmalogens. From these membranes, gangliosides have been extracted and separated by thin-layer chromatography and analysed. 95% of the total recovered gangliosides were hematosides (GM3), which migrated as three major species. Sugar analyses have been performed, as well as the fatty acid compositions. The three hematoside gangliosides appeared to differ on the basis of their fatty acid composition. Compared with the brain, chromaffin granule membranes showed a simple ganglioside composition, thus offering a good model for the study of the metabolism and the role of gangliosides. The simple ganglioside composition of chromaffin granule membranes has allowed us to state that there are 60 mol phospholipid and 30 mol cholesterol per mol ganglioside.

Adrenal Medulla↗

Interaction of low-density lipoproteins with gangliosides.

The ganglioside uptake capacity of human serum low-density lipoproteins (LDL), the mode of ganglioside-LDL binding, and the influence of gangliosides on the floatation properties, size distribution, stability and fluorescence of LDL were investigated. The data obtained suggest that both hydrophobic and electrostatic forces are involved in formation of ganglioside-LDL complexes, but the former appear to be more important. Although association of gangliosides with LDL is predominantly unspecific, nonsaturable, and weak, a small saturable component due to specific ganglioside-apolipoprotein binding, also appears to be involved. In the presence of gangliosides the lipoprotein particles aggregate, the intrinsic fluorescence of LDL and their interaction with antibodies against apo-B change indicating that the state of apo-B [corrected] is modified by gangliosides.

Antigen-Antibody Reactions↗

Ganglioside loading of cultured fibroblasts: a provocative method for the diagnosis of the GM2 gangliosidoses.

Confirmation of deficient beta-hexosaminidase activity in suspected cases of GM2 gangliosidosis may be difficult with available assay systems if the residual activity is high (as in many juvenile cases and genetic compounds). Hexosaminidase activity is normal in the AB-variant (activator protein deficiency), although GM2-ganglioside (GM2) catabolism is severely impaired. We therefore examined ganglioside degradation in intact fibroblasts in culture. Intracellular ganglioside levels were determined in cultured human skin fibroblasts grown in standard tissue culture medium or medium supplemented with mixed bovine brain gangliosides. Cellular uptake and catabolism of the added gangliosides were manifested by modest increases in the intracellular concentrations of gangliosides GT + GD and GM1 in all cells tested, and marked accumulation of GM2 in fibroblasts from patients with GM2 gangliosidoses. Intracellular GM2 increased five- to fifteen-fold in all of the GM2 gangliosidosis cell lines tested, including those from patients with infantile Tay-Sachs disease (TSD), Sandhoff disease, late infantile and juvenile variants of TSD with high residual enzyme activity, adult onset GM2 gangliosidosis, and the AB-variant. Significant GM2 accumulation did not occur in fibroblasts from patients with GM2 gangliosidosis grown in standard medium, or in normal fibroblasts grown in ganglioside enriched medium. Our method of ganglioside feeding employs commercially available materials and no special equipment. It should be useful for the confirmation of impaired GM2 catabolism in a variety of settings.

Cells, Cultured↗

Expression of gangliosides as receptors at the cell surface controls infection of NCTC 2071 cells by Sendai virus.

The involvement of gangliosides as receptors for Sendai virus was established previously using experimentally produced receptor-deficient cells. In the search for a naturally occurring counterpart, NCTC 2071 cells emerged as a likely candidate. These cells in their native state were not agglutinated nor infected by Sendai virus, but were infected by the virus when the gangliosides GD1a, GT1b, or GQ1b were supplied in the culturing medium. Preliminary analysis indicated that NCTC 2071 cells contained an unusually high ratio of sialoglycoproteins to gangliosides. A brief treatment of the cell surface with the protease trypsin made greater than 99% of the native monolayer susceptible to infection by the wild-type virus which contains the viral attachment protein HN. (Incubation of the trypsin-treated cells with a temperature-sensitive mutant missing HN produced no detectable infection.) The increased binding of cholera toxin, a ganglioside-specific probe, after incubation of the cells with trypsin and sialidase, was consistent with the hypothesis that gangliosides more complex than GM1 are on the surface of NCTC 2071 cells and that trypsin treatment increases their accessibility. The presence of receptor gangliosides in lipid extracts of NCTC 2071 cells was confirmed by thin-layer chromatography of the ganglioside fraction and by the binding of cholera toxin. These results demonstrate that cells containing receptor gangliosides may still be resistant to infection because these are not expressed properly at the cell surface as receptors for interaction with the HN protein of Sendai virus.

Animals↗

Variation of the ganglioside compositions of human milk, cow's milk and infant formulas.

The ganglioside compositions of human milk, cow's milk and infant formulas were compared. The results showed that there was a drastic change in the ganglioside composition from the colostrum to later human milk, and that both the patterns and contents of gangliosides in human milk, cow's milk and infant formulas differed markedly. In human milk, the total lipid-bound sialic acid level was two times higher than those in cow's milk and infant formulas. The major ganglioside in the later human milk, GM3 (27.7%), was only a minor component in the colostrum, cow's milk and infant formulas (3.3, 2.8 and 0.4-2.6%, respectively). GD3 represented 49.0, 61.0 and 72.4-86.6%, respectively, of the colostrum, cow's milk and infant formulas, compared to 31.8% of the later human milk gangliosides. Another four gangliosides, which were assumed to be c-series gangliosides, were detected in the colostrum and the later human milk. They represented 33-38% of total lipid-bound sialic acid, and were tentatively designated as GX1, GX2, GX3 and GX4, respectively. However, only GX1 and GX2 were observed in cow's milk and infant formulas. The variation of the gangliosides in human and cow's milk, and infant formulas might have some biological significance regarding neonatal brain development, allergies, infant growth and non-immunoglobulin prophylactic activities against some bacterial toxins.

Animals↗

Effects of brefeldin A on synthesis and intracellular transport of ganglioside GT3 by chick embryo retina cells.

Ganglioside GT3 is the precursor of c-series gangliosides. It is synthesized by sialylation of GD3 and is expressed in nervous tissue of birds and mammals at early stages of development. In this study we examined the sub-Golgi location of GT3 synthesis and the mechanism of its transport from the site of synthesis to the plasma membrane in chicken embryo retina cells in culture. Neural retina cells from 10-day-old chick embryo were cultured with [3H]galactose in the absence (control cells) or in the presence of 1 micrograms/ml brefeldin A (BFA). At the end of the labeling period, the fraction of labeled gangliosides transported to the plasma membrane was determined. For this, cells were treated with C. perfringens neuraminidase in conditions to desialylate only those gangliosides that were transported to the plasma membrane and consequently accessible to the enzyme. After neuraminidase treatment of cells, gangliosides were isolated, purified, and the pattern of radioactivity analyzed by HPTLC-fluorography. It was found that BFA blocked the synthesis of complex gangliosides without affecting the synthesis of GM3, GD3, and GT3. Furthermore, in BFA-treated cells, GM3, GD3, and GT3 were protected from the action of added neuraminidase, indicating an intracellular localization and, hence, an inhibition of their transport to the plasma membrane. The results indicate that synthesis of the first intermediates of a-, b-, and c- series gangliosides occurs in a proximal Golgi compartment and that the proximal Golgi-synthesized gangliosides (GM3, GD3, and GT3) use a transport mechanism that is dependent on ADP ribosylation factor and coatomer proteins.

Animals↗

Characterization of the acid stability of glycosidically linked neuraminic acid: use in detecting de-N-acetyl-gangliosides in human melanoma.

The glycosidic linkage of sialic acids is much more sensitive to acid hydrolysis than those of other monosaccharides in vertebrates. The commonest sialic acids in nature are neuraminic acid (Neu)-based and are typically N-acylated at the C5 position. Unsubstituted Neu is thought to occur on native gangliosides of certain tumors and cell lines, and synthetic de-N-acetyl-gangliosides have potent biological properties in vitro. However, claims for their natural existence are based upon monoclonal antibodies and pulse-chase experiments, and there have been no reports of their chemical detection. Here we report that one of these antibodies shows nonspecific cross-reactivity with a polypeptide epitope, further emphasizing the need for definitive chemical proof of unsubstituted Neu on naturally occurring gangliosides. While pursuing this, we found that alpha2-3-linked Neu on chemically de-N-acetylated G(M3) ganglioside resists acid hydrolysis under conditions where the N-acetylated form is completely labile. To ascertain the generality of this finding, we investigated the stability of glycosidically linked alpha- and beta-methyl glycosides of Neu. Using NMR spectroscopy to monitor glycosidic linkage hydrolysis, we find that only 47% of Neualpha2Me is hydrolyzed after 3 h in 10 mm HCl at 80 degrees C, whereas Neu5Acalpha2Me is 95% hydrolyzed after 20 min under the same conditions. Notably, Neubeta2Me is hydrolyzed even slower than Neualpha2Me, indicating that acid resistance is a general property of glycosidically linked Neu. Taking advantage of this, we modified classical purification techniques for de-N-acetyl-ganglioside isolation using acid to first eliminate conventional gangliosides. We also introduce a phospholipase-based approach to remove contaminating phospholipids that previously hindered efforts to study de-N-acetyl-gangliosides. The partially purified sample can then be N-propionylated, allowing acid release and mass spectrometric detection of any originally existing Neu as Neu5Pr. These advances allowed us to detect covalently bound Neu in lipid extracts of a human melanoma tumor, providing the first chemical proof for naturally occurring de-N-acetyl-gangliosides.

Acetylation↗

Uncoupling of intracellular cyclic AMP and dome formation in cultured canine kidney epithelial cells: effects of gangliosides and vasopressin.

Cultured MDCK cells were treated with various gangliosides and sialylated compounds and their effects on the intracellular level of cAMP were compared to those of arginine vasopressin (AVP) and other substances which elevate cAMP. Since all those agents could stimulate dome formation, its correlation with cAMP production is discussed. Most gangliosides increased intracellular cAMP 3-4-fold, the increase being dose-dependent up to 25 microM ganglioside. AVP and cAMP analogs increased intracellular cAMP 3-40-fold. A unique feature of the ganglioside-induced cAMP increase was its extremely long time course (70 h), as compared to that induced by other agents which show much faster and less prolonged effects in other biological systems. This might indicate that gangliosides differ from AVP and other agents in the mechanisms by which they stimulate intracellular cAMP increase. The time course and the level of cAMP increase induced by GM3 or AVP did not correlate with those of dome formation. Furthermore, the ability of some gangliosides and other agents to induce dome formation did not correspond to their ability to elevate cAMP. It is suggested that although the remarkable dome-stimulating activity of gangliosides may be induced in part by a cAMP-dependent mechanism, gangliosides also act directly on the cellular components influencing dome formation, without involving changes in intracellular cAMP.

Animals↗

Molecular parameters of gangliosides in monolayers: comparative evaluation of suitable purification procedures.

The molecular area, collapse pressure, and surface potential of gangliosides obtained by different methods were systematically compared in monolayers at the air-water interface. Different values of these parameters are obtained depending on the purification procedure employed for the isolation of pure gangliosides. This is due to impurities (such as peptidaceous material) that remain in different amounts in the various preparations and that modify the ganglioside surface behavior. Routine purity checking by HPTLC analysis of gangliosides usually fails to reveal these impurities. On the other hand, even if the monolayer technique cannot identify the nature or amount of contaminants, it is extremely sensitive to reveal alterations of the surface molecular parameters caused by relatively small amounts of other components coextracted with the ganglioside or adventitiously introduced with the solvents or subphases employed. This is a serious problem for the obtention of correct and reproducible values of such important parameters as the molecular area of gangliosides, their electrostatic potential in oriented interfaces, and their interactions with other lipids and proteins. A procedure leading to consistent molecular parameters that remain reproducible after several repurification cycles is to perform an alkaline treatment on previously purified gangliosides species with NaOH, this is followed by dialysis against bidistilled water, rechromatography on DEAE-Sephadex A25, silicic acid or Iatrobeads, and Sephadex LH-20 columns; repurified gangliosides are stored in chloroform-methanol-0.01 M NaOH (60:30:4.5).

Animals↗

Incorporation and metabolism of ganglioside GM2 in skin fibroblasts from normal and GM2 gangliosidosis subjects.

Ganglioside GM2, 3H-labeled in the sphingoid base, was added to the culture medium of normal and GM2 gangliosidosis fibroblasts. Ganglioside was found to adsorb rapidly to the cell surface, most of it could however be removed by trypsination. The trypsin-resistant incorporation was about 10 nmol/mg cell protein, after 48 h. The rates of adsorption and incorporation depended strongly on the concentration of fetal calf serum in the medium, higher serum concentrations being inhibitory. After various incubation times, the lipids were extracted, separated by thin-layer chromatography and visualized by fluorography. In normal cells a variety of degradation products as well as sphingomyelin was found whereas in GM2 gangliosidosis cells, only trace amounts of such products (mainly GA2) were found. In contrast, the higher gangliosides GM1 and GD1a were formed in comparable amounts (2.2-3.6% of total radioactivity after 92 h) in normal and pathologic cell lines. Supplementation of cells from GM2 gangliosidosis, variant AB, with purified GM2-activator protein restored ganglioside GM2 degradation to almost normal rates but had no effect on its glycosylation to gangliosides GM1 and GD1a. From these results we conclude that the synthesis of higher gangliosides from incorporated GM2 can occur by direct glycosylation and not only via lysosomal degradation and resynthesis from [3H]sphinganine-containing degradation products. Preliminary studies with subcellular fractionation after various times of [3H]ganglioside incorporation indicated biphasic kinetics for the net transport of membrane-inserted ganglioside to lysosomes, compatible with the notion that a portion of the glycolipids can also escape from secondary lysosomes and migrate to Golgi compartment or cell surface.

Animals↗

Changes of ganglioside pattern during cerebellar development of normal and staggerer mice.

The total amount of gangliosides per cerebellum of a wild-type mouse increased 126-fold during postnatal development. Although all major gangliosides were synthesized, the relative amount of individual ganglioside species changed during this period. In the developing wild-type cerebellum a transient accumulation of GD3 occurred between birth and postnatal day 20 (P20) with the largest portion (23%) of the total ganglioside content at postnatal day 7 (P7). In the adult cerebellum GD3 was only a minor component (3.2%) of the ganglioside pattern. As demonstrated by immunofluorescence the accumulation of GD3 was predominantly associated with premigratory and early postmigratory granule cells. The ganglioside GD3 was found in two alkali-stable forms in the young cerebellum, whereas the ganglioside species with the higher Rf value (migrating in the same position as the upper GD3 band) in the adult cerebellum was alkali labile. The cerebellum of the neurological mutant staggerer (sg/sg) was characterized by a low amount of GD1a in adult animals, due to the massive death of neurons in the postnatal cerebellar cortex. The neonatal loss of sialic acid residues from cerebellar cell surfaces in wild-type mice and the maintenance of embryonic sialoglycoconjugates in the staggerer cerebellum cannot be explained by the alterations of ganglioside patterns observed during postnatal development.

Animals↗

Gangliosides of long sleep and short sleep mouse cerebellum and hippocampus and cerebellar and whole brain synaptosomal plasma membranes.

Gangliosides appear to be factors in CNS membrane responses to ethanol. Responses of membranes to ethanol might be influenced by the membrane concentration of gangliosides, the distribution of ganglioside molecular species, or the surface orientation of gangliosides at the plasma membrane surface. To determine the importance of these influences to the acute effect of ethanol, we have chosen to study them in long sleep (LS) and short sleep (SS) mice. This report presents our findings on the composition of gangliosides from LS and SS mouse cerebellum and hippocampus, the composition of gangliosides from synaptosomal plasma membranes (SPM) of LS and SS mice, and the molecular species of cerebellar gangliosides from the two lines. It has been found that GM1 is elevated in the cerebellum and in cerebellar SPM of LS mice compared to SS mice, but that there is no difference between the GM1 concentration in the whole hippocampus of the two lines. Further, there are no differences in the molecular species of the cerebellar gangliosides of LS and SS mice.

Animals↗

Surface exposure of synaptosomal gangliosides from long-sleep and short-sleep mice.

A galactose oxidase/NaB[3H]4 technique was used to examine the relative surface exposure of gangliosides from whole brain synaptosomes of long-sleep (LS) and short-sleep (SS) mice. The surface exposure of the monosialoganglioside, GM1, did not differ between the two lines. Surface exposure of the polysialogangliosides GD1a, GD1b, and GT1b, however, was significantly greater in LS synaptosomes than in SS. Hydrolysis of the polysialogangliosides by neuraminidase to the end-product, GM1, at early time periods occurred more rapidly in LS than in SS synaptosomes. Upon exposure to either 250 mM or 50 mM ethanol, LS synaptosomal ganglioside surface exposure was decreased, but that of SS was increased. Pairwise comparisons of the individual ganglioside classes indicated that the decrease in LS synaptosomal ganglioside surface exposure was attributable to decreases in the polysialogangliosides, compared with controls. The ethanol-induced increase in SS synaptosomal ganglioside surface exposure, however, was mainly due to an increased surface exposure of only GD1a. These results suggest that intrinsic differences in the surface exposure of gangliosides and/or the magnitude and direction of ethanol-induced changes in ganglioside surface distribution may reflect biophysical or modulatory mechanisms by which this class of compounds modifies membrane sensitivity to ethanol. These results suggest that further studies should be performed to determine whether gangliosides are factors in genetically determined sensitivity to ethanol.

Alcoholic Intoxication↗

Binding specificities of heat-labile enterotoxins isolated from porcine and human enterotoxigenic Escherichia coli for different gangliosides.

The binding specificities of heat-labile enterotoxins (LTp and LTh) isolated from porcine and human enterotoxigenic Escherichia coli on human erythrocytes were studied by competitive binding assays using different gangliosides as inhibitors. The binding of 125I-labeled LTp to neuraminidase-treated human type A erythrocytes was most effectively inhibited by ganglioside GM1. Ganglioside GM1 was 11 and 105 times more potent than gangliosides GD1b and GM2, respectively. Gangliosides GD1a, GT1b, and GM3 were much less potent. Similar results were also obtained in competitive binding assays with the 125I-labeled B subunit of LTh and neuraminidase-treated human type B erythrocytes, and in those with 3H-labeled ganglioside GM1 and LTp-coupled Sepharose 4B. The binding of 3H-labeled ganglioside GM1 to LTp was not effectively inhibited by galactose-beta(1----3)N-acetyl-D-galactosamine at the highest concentration used. These findings suggest that the combining sites of LTp and LTh may be specific for at least the galactose-N-acetyl-D-galactosamine-galactose (N-acetyl-neuraminic acid) portion of ganglioside GM1.

ABO Blood-Group System↗

Gangliosides as targets for immunotherapy for pancreatic adenocarcinoma.

BACKGROUND: Pancreatic adenocarcinoma cells express gangliosides and sialyl Lewis (sLe) antigens. It is not known whether these carbohydrate antigens can be targeted by immunotherapy. The authors measured the expression of GM(2) and sLe antigens on the surface of pancreatic carcinoma cells and the serum levels of total gangliosides, GM(2), and antiganglioside antibodies in patients with pancreatic carcinoma. METHODS: Cell surface GM(2) and sLe antigens were measured by cell suspension enzyme linked immunoadsorbent assay (ELISA) in four pancreatic carcinoma cell lines. Sera from 20 pancreatic carcinoma patients and 20 age- and gender-matched healthy volunteers were analyzed for antiganglioside and anti-sLe immunoglobulin (Ig) M titers by ELISA. Serum levels of total gangliosides and GM(2) also were measured. RESULTS: All cell lines expressed GM(2) and sLe antigens. When compared with age- and gender-matched volunteers, patients had significantly higher serum levels of total gangliosides (25.6 +/- 9.0 mg/dL vs. 15.6 +/- 2.7 mg/dL; P < 0.001), GM(2) (0.278 +/- 0.415 mg/dL vs. 0.013 +/- 0.018 mg/dL; P = 0.02), ELISA units of anti-GM(2) IgM antibody (368 +/- 95 vs. 155 +/- 25; P = 0.04) and anti-GD(1b) IgM antibody (351 +/- 91 vs. 138 +/- 26; P = 0.03), but not anti-sLe(x) IgM (1389 +/- 345 vs. 1081 +/- 224; P = 0.46) or anti-sLe(a) IgM antibody (1097 +/- 253 vs. 1200 +/- 315; P = 0.80). Patients with unresectable tumors had higher serum levels of total gangliosides compared with patients with resectable tumors, and a serum level > 25 mg/dL was found to correlate significantly with poor overall survival (P < 0.02). CONCLUSIONS: Increased serum levels of total gangliosides and GM(2) may reflect shedding or release of gangliosides from the surface of tumor cells. Production of IgM antibody against GM(2) and GD(1b) indicates that these gangliosides are immunogenic antigens that may be potential targets for effective active immunotherapy.

Adenocarcinoma↗

Specific expression of unusual GM2 ganglioside with Hanganutziu-Deicher antigen activity on human colon cancers.

This paper reports the presence of GM2 ganglioside containing N-glycolylneuraminic acid (NeuGc) in human colon cancer tissues. GM2(NeuGc) was detected by two-dimensional thin layer chromatography (2d-TLC)/enzyme-immunostaining using affinity-purified chicken antibody against GM3(NeuGc) and horseradish peroxidase-conjugated rabbit anti-chicken IgG antibody. Like usual GM2 ganglioside containing N-acetylneuraminic acid (NeuAc) isolated from Tay-Sachs brain, GM2(NeuGc) in colon cancer could be converted into GM3(NeuGc) by human kidney beta-N-acetylhexosaminidase A in the presence of a GM2-specific activator protein isolated from guinea pig kidney. Three of 7 specimens of Hanganutziu-Deicher (HD) antigen-positive human colon cancer tissues so far examined expressed this unique ganglioside. In order to detect and determine specifically GM2(NeuGc) on human colon cancers, specific antibody against GM2 (NeuGc) has been prepared by immunizing chickens. By a sensitive TLC/immunostaining method using the antibody, the amounts of the antigen were determined to be 0.3-3% of total lipid-bound sialic acid. NeuGc-containing gangliosides were also detected in meconium and fetal intestinal tissues. Three species of antigenic gangliosides in pooled meconium were tentatively identified as GM3(NeuGc), sialylparagloboside and sialylhexaosylceramide on the basis of their migration positions on 2d-TLC and the results of endo-beta-galactosidase treatment. GM3(NeuGc) was the sole HD-active ganglioside in fetal intestinal tissue from one of 3 individuals tested; the other two showed no HD-active ganglioside at all. GM2(NeuGc), however, could not be detected in either meconium or fetal tissues so far examined, suggesting that this unique ganglioside is a tumor-specific antigen, at least for human intestinal tissues.

Antibodies↗

Expression of GD3 ganglioside in childhood T-cell lymphoblastic malignancies.

Lymphoblasts from seven children with T-cell lymphoblastic malignancies and three children with non-T, non-B acute lymphoblastic leukemia (ALL) were analyzed for ganglioside content. Nonmalignant T-cells from thymus served as controls. Both ganglioside and glycoprotein sialic acid were increased approximately 3-3.5-fold in T-cell disease compared to thymic tissue when expressed on a per cell basis, but not on a per milligram protein basis. Thin-layer chromatography of the isolated ganglioside fraction from T-cell lymphoblasts revealed two major resorcinol-positive bands. One ganglioside comigrated with II3-alpha-N-acetylneuraminosyllactosylceramide (GM3), the major ganglioside in normal lymphoid tissue, and the other ganglioside comigrated with authentic II3-alpha-N-acetylneuraminosyl-alpha 2----8-N-acetylneuraminosyllactosylceramide (GD3) in three different solvent systems. Neuraminidase treatment of the latter ganglioside yielded GM3 and lactosyl ceramide, hydrolysis products of GD3. Scanning densitometry revealed that whereas thymus cells contained 97% GM3 and 3% GD3, T-cell lymphoblasts contained from 22 to 86% GD3 and a corresponding decrease in GM3. The shift to increased GD3 was observed in the blasts from all seven T-cell patients, but not in the blasts from the non-T, non-B patients studied. Only trace quantities of GD3 were detected from two continuous T-ALL cell lines, HSB2 and RPMI 8402. The results demonstrate a consistently significant increase in ganglioside GD3 in uncultured, patient-derived T-cell ALL lymphoblasts when compared to non-T-cell ALL and normal lymphoid tissue. Therefore, GD3 may represent a tumor-associated antigen for the T-cell subclass of childhood lymphoblastic malignancy.

Adolescent↗