Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: EC:2.4.99.6 (sialyltransferase)
1,546 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

In this study we report serum sialyltransferase and nucleoside diphosphatase activities of patients with malignant tumors of various primary sites and extent, prior to and during chemotherapy. Enzyme levels were compared to clinical and laboratory parameters. The sialyltransferase and uridine diphosphatase (UDPase) activities in samples of 43 patients with advanced ovarian cancer was four to ten fold above the normal mean value (sialyltransferase 85.1 +/- 58 pmol/hr/ml and UDPase 26.6 +/- 7.2 nmol/hr/ml). After effective chemotherapy with adriamycin and cisplatin, the enzyme activity decreased markedly. In cases of complete remission, enzyme activity decreased to the normal range. In three cases after initial response for several months a rise of both enzymes was observed before any other biochemical finding of the forthcoming relapse. Similar patterns were observed in testicular cancer (6 cases). Clinical correlation is also obvious in other tumors except malignant lymphomas. Our findings show that the activities of these enzymes correlated with the clinical course, and therefore they can be the basis for clinical application for tumor monitoring, especially during chemotherapy.
Cancer Detect Prev 1985
PMID:Sialyltransferase and nucleoside diphosphatase as markers for tumor monitoring. 299 17

Galactosyltransferase (GalTF), sialyltransferase (SiaTF), fucosyltransferase (FucTF), 5'-nucleotidase (5'Nucl), and ADP-ribosyltransferase (RibTF) were determined in three subcellular fractions of tumor cells and adjacent control tissue from 20 patients with small primary infiltrating ductal adenocarcinomas of the breast. Viable, as pure tumor cell populations as possible were isolated, subfractionated, and their enzyme levels compared to those in the patients' sera. The activities in tumor cells of the three glycosyltransferases were two- to seven-fold higher, whereas 5'-Nucl and RibTF showed reduced activities when compared to adjacent noninvolved tissue. Serum GalTF and SiaTF were slightly elevated in early mammary carcinoma, whereas FucTF, 5'Nucl, and RibTF were decreased in comparison with a control group. The proposed tumor origin of circulating enzymes could not be confirmed. Surprisingly, only for RibTF could a correlation between tumor and serum activity be established; a weak correlation was found for SiaTF. However, no such relationship could be determined for GalTF, FucTF, or 5'Nucl. In conclusion, the enzyme profile of the tumor cell does not, except for RibTF, appear in the serum. Serum enzyme profiles, therefore, do not permit detection of the early stages of breast cancer. A high correlation between RibTF activity and cytosol estrogen and progesterone receptor levels has been determined in tumor cells, possibly indicating slower growing, more differentiated types of breast tumors.
Cancer Detect Prev 1985
PMID:Enzyme activities in human breast tumor cells and sera. 299 19

Retinoic acid was found to increase the activity of cytidine monophosphosialic acid:lactosylceramide sialyltransferase activity in a nontransformed clonal hamster cell line, NIL 8, and a virally transformed clone, NIL 8-HSV. The potent tumor promoter phorbol-12-myristate-13-acetate (PMA) had no significant effect on sialyltransferase activity in NIL 8 cells but stimulated this activity almost 6-fold when added to NIL 8-HSV cells. There was a synergistically additive effect on sialyltransferase activity when PMA was added to NIL 8 cells in concert with retinoic acid. On the other hand neither PMA nor retinoic acid had an appreciable effect on two other glycosyltransferases measured, uridine diphospho-N-acetylgalactosamine:globotriaosylceramide N-acetylgalactosaminyl-transferase and uridine diphosphogalactose:asialoagalactofetuin galactosyltransferase. Examination of sialyltransferase activity in a human epidermoid carcinoma cell line showed a large increase in enzyme activity in response to retinoic acid administration. Two nontransformed hamster cell lines had less basal sialyltransferase activity but also showed marked elevations after retinoic acid treatment. It is proposed that one of the molecular mechanisms underlying the biological effects of retinoic acid and PMA may be an increase in sialyltransferase activity. Possible regulatory mechanisms are discussed.
Cancer Res 1987 Feb 01
PMID:Effect of retinoic acid and phorbol-12-myristate-13-acetate on glycosyltransferase activities in normal and transformed cells. 310 23

Sialyltransferases responsible for the formation of sugar chains in glycoproteins were studied in rat hepatoma in comparison with rat liver. Hepatoma induced by feeding Wistar rats with 3'-methyl-4-dimethylaminoazobenzene (MeDAB) was more active than Wistar liver in sialylating asialo-orosomucoid, and this was due to an increased activity of Gal(beta 1----4)GlcNAc (alpha 2----6) sialyltransferase, the major sialyltransferase in these tissues. Gal(beta 1----3,4)GlcNAc (alpha 2----3) sialyltransferase and the sialyltransferase acting on asialo-bovine submaxillary mucin were, however, decreased in the hepatoma. A similar pattern of sialyltransferase alterations was observed in regenerating liver and other tumors such as AH-109A hepatoma and Sato lung cancer, both of which had been inoculated into Donryu rats. In contrast to these sialyltransferases, the activities of the sialyltransferases responsible for the formation of gangliosides were markedly different even between Wistar and Donryu livers. When compared with Wistar liver, MeDAB-induced hepatoma was higher in lactosylceramide- and lower in GM3-sialyltransferase activity, but these two activities were both lower in AH-109A compared with Donryu liver.
Jpn J Cancer Res 1988 Jun
PMID:Comparative study of the levels of sialyltransferases responsible for the formation of sugar chains in glycoproteins and gangliosides in rat liver and hepatomas. 313 1

As described previously (I. Kijima-Suda et al., Cancer Res., 46: 858-862, 1986), a sialyltransferase inhibitor, 5-fluoro-2',3'-isopropylidene-5'-O-(4-N-acetyl-2,4-dideoxy-3,6,7,8-tetra -O- acetyl-1-methoxycarbonyl-D-glycero-alpha-D-galactooctapyranosyl)ur idine (KI-8110), inhibits pulmonary metastasis of murine colon adenocarcinoma 26 sublines of high (NL-17) and low (NL-44) metastatic potential. To investigate the mechanism of this inhibition, the effect of KI-8110 on the metastatic cascade, especially on the interaction between tumor cells and platelets which may play a crucial role in tumor cell metastasis, was examined. NL-17 cells induced irreversible platelet aggregation in heparinized human platelet-rich plasma in vitro. This activity was reduced by pretreatment of the tumor cells with KI-8110. Inhibition of aggregation was also induced by the treatment of tumor cells with neuraminidase or Limax flavus agglutinin, a lectin specific for sialic acid. Sialic acid, fucose, sialyllactose, and bovine submaxillary mucin inhibited this tumor cell-induced platelet aggregation, while galactose, mannose, lactose, alpha 1-acid glycoprotein, fetuin, and asialo-bovine submaxillary mucin did not. KI-8110 also inhibited platelet-derived growth factor-dependent growth of NL-17 cells, but showed no effect on insulin or epidermal growth factor-dependent growth of the tumor cells. Platelet-derived growth factor-induced phosphorylation of membrane protein was reduced by treatment of NL-17 cells with KI-8110. The same result was obtained in the neuraminidase-treated membrane fraction of NL-17 cells. These results suggest that KI-8110 inhibits experimental tumor cell metastasis by inhibiting the interaction between tumor cells and host platelets in at least two pathways, and this may be due to a reduction of sialic acid contents of the membrane surface of tumor cells.
Cancer Res 1988 Jul 01
PMID:Possible mechanism of inhibition of experimental pulmonary metastasis of mouse colon adenocarcinoma 26 sublines by a sialic acid: nucleoside conjugate. 328 33

The CA 19-9 antigen is a monosialosyl Lea blood group antigen which has been shown to be a useful tumor-associated antigen for the diagnosis of gastrointestinal cancers. Recently, a sialylated derivative of this antigen, disialosyl Lea, was isolated from a colon cancer liver metastasis and a monoclonal antibody (FH7) recognizing this novel determinant was developed. The present study simultaneously compared the expression of Lea, monosialosyl Lea, and disialosyl Lea antigens in a variety of nonmalignant, premalignant, and malignant tissues of the colorectum and pancreas with an aim toward elucidating whether disialosyl Lea is expressed as a tumor-associated antigen. In normal colonic mucosa, disialosyl Lea expression closely resembled Lea expression in overall frequency, segmental distribution, and cellular localization whereas monosialosyl Lea (CA 19-9) was essentially absent. Along the crypt axis, Lea was more often expressed in goblet cells of the upper crypt whereas disialosyl Lea was found in goblet cells along the entire crypt. Fetal colonic mucosa expressed all three antigens, as did most colorectal cancers regardless of location within the colon or degree of differentiation. The majority of hyperplastic polyps and practically all adenomatous polyps also expressed these three antigens, and in adenomas, antigen expression was independent of polyp size, villous morphology, or degree of dysplasia. In the normal pancreas, the three antigens were expressed on ductal, ductular and centroacinar cells of all specimens. The majority of pancreatic cancers expressed all three antigens. Thus, in the normal colon, the absence of monosialosyl Lea (CA 19-9) in the presence of disialosyl Lea suggests that an alpha 2,6 sialyltransferase is active, which results in the masking of CA 19-9 antigen expression. These results further support the concept that specific sialyltransferases play a role in regulating the expression of tumor-associated antigens.
Cancer Res 1988 Jul 01
PMID:Immunohistochemical comparison of Lea, monosialosyl Lea (CA 19-9), and disialosyl Lea antigens in human colorectal and pancreatic tissues. 328 36

Neoplastic transformations are accompanied by an alteration in the composition of cell membrane glycoproteins, major structural components of the cell surface. Plasma sialyltransferase enzyme is involved in the transfer of sialic acid residues from cytosine monophosphate (CMP) sialic acid to a suitable acceptor. In the present study plasma sialyltransferase was assayed using a radiometric method, which measured the transfer of radioactivity from (14C) CMP sialic acid to desialated fetuin. Plasma sialyltransferase was measured in 127 normal and 91 cancer patients. The mean plasma sialyltransferase in the normal volunteers was 837 units (CPM/25 microliters plasma/hr). The mean plasma sialytransferase in 26 breast cancer patients, 22 lung cancer patients, 20 colon cancer patients, 5 ovarian cancer patients, 4 cervix cancer patients, 5 pancreas cancer patients, 6 prostate cancer patients, and 3 gastrointestinal tract cancer patients was 1710, 1406, 1344, 1227, 1233, 1406, 1250, and 1426 units, respectively. No significant difference was observed with respect to age. In 32 treated breast cancer patients the mean value was 757 units. Serial determinations in 17 patients correlated well with tumor burden. However, in 2 patients the plasma enzyme level did not correspond to tumor mass. These results indicate that plasma sialyltransferase is significantly elevated in patients with a variety of cancers. Plasma sialyltransferase determination may be useful in the followup of patients with a variety of cancers.
Cancer Detect Prev 1988
PMID:Plasma sialyltransferase as a tumor marker. 339 Aug 43

We have examined granulocytes from patients with chronic myelogenous leukemia (CML) and from normal subjects to determine whether activity of a specific sialyltransferase might account for the aberrant sialylation of O-linked membrane oligosaccharides in CML cells. Total membrane preparations of morphologically mature CML and normal granulocytes were tested for sialyltransferase activity using the substrates galactosyl-beta 1-3-N-acetyl-D-galactosamine-alpha-O-nitrophenyl and N-acetyl-D-galactosamine-alpha-phenyl. N-Acetyl-D-galactosamine-alpha-phenyl was not an acceptor with either CML or normal cells. With galactosyl-beta 1-3-N-acetyl-D-galactosamine-alpha-O-nitrophenyl, sialyltransferase activity was 2.8 times higher in CML cells compared to normal cells. Product identification by high performance liquid chromatography showed that enzyme from both normal and CML granulocytes linked sialic acid to galactosyl-beta 1-3-N-acetyl-D-galactosamine-R by the alpha(2-3) and not the alpha(2-6) linkage. The enzyme CMP-N-acetylneuraminic acid: galactosyl-beta 1-3-N-acetyl-D-galactosamine-R alpha(2-3)-sialyltransferase has not previously been described in human granulocytes. The marked increase in activity of this enzyme in CML and the resulting increase in sialylation may contribute to the pathophysiological behavior of CML granulocytes.
Cancer Res 1987 Jun 01
PMID:Presence of cytidine 5'-monophospho-N-acetylneuraminic acid:Gal beta 1-3GalNAc-R alpha(2-3)-sialyltransferase in normal human leukocytes and increased activity of this enzyme in granulocytes from chronic myelogenous leukemia patients. 347 17

Previous studies have shown that treatment of S91-C2 murine melanoma cells with beta-all-trans-retinoic acid (RA) results in growth inhibition, enhanced activity of sialyltransferase, and increased glycosylation of a Mr 160,000 cell surface sialoglycoprotein (gp160). None of these effects could be detected in mutant clones (e.g., S91-C154) selected from the S91-C2 cells for resistance to RA-induced growth inhibition. These findings suggest that modulation by RA of gp160 might be related causally to growth inhibition. In this study we examined the possible role of gp160 in growth regulation using specific antibodies to this glycoprotein. Metabolic labeling of S91-C2 cells with either [3H]glucosamine or [35S]methionine revealed that the cells shed into the growth medium a gp160-like glycoprotein, in addition to several other macromolecules. The gp160-like glycoprotein was isolated from concentrated conditioned medium after preparative polyacrylamide slab gel electrophoresis in the presence of sodium dodecylsulfate by excision of the corresponding protein band. Rabbits were immunized with this material and immunoblotting revealed that their sera contained antibodies that bound specifically to gp160 in extracts of untreated or RA-treated S91-C2 cells. Indirect immunofluorescence staining followed by fluorescence-activated cell sorter analysis demonstrated that the anti-gp160 antibodies bound to the surface of both untreated and RA-treated S91-C2 cells and that the treated cells bound more of the antibodies than untreated ones. In contrast, these antibodies bound to the same extent to untreated and RA-treated resistant S91-C154 cells. The growth of S91-C2 cells in the presence of anti-gp160 antibodies in semisolid medium as well as in monolayer cultures was inhibited in a dose-dependent fashion. Fifty % growth inhibition was obtained at an immunoglobulin concentration of 10 micrograms/ml. The growth of cells exposed concurrently to RA and anti-gp160 antibodies was also inhibited strongly in semisolid medium, but the antibodies caused only a small increase in the inhibitory effect of RA in monolayer cultures. No inhibition by the antibodies of either anchorage-independent growth or anchorage-dependent growth of S91-C154 cells, grown in the absence or presence of RA, was observed. These results support the suggestion that cell surface gp160 might be involved in growth regulation in the S91-C2 cells.
Cancer Res 1987 Jun 15
PMID:Growth inhibition of murine melanoma cells by antibodies to a cell surface glycoprotein implicated in retinoic acid action. 355 69

The total and sialidase-releasable sialic acid contents of murine colon adenocarcinoma 26 sublines of high (NL-17) and low (NL-44) metastatic potential were found to be positively correlated with their ability to undergo metastasis. Furthermore, sialyltransferase activity of intact NL-17 cells was higher than that of NL-44 cells. These findings suggest that sialic acid on the cell surface may play a role in the metastasis of these cells. Therefore, the effect of a sialyltransferase inhibitor, 5-fluoro-2',3'-isopropylidene-5'-O-(4-N-acetyl-2,4-dideoxy-3,6,7,8-tetra -O -acetyl-1-methoxycarbonyl-D-glycero-alpha-D-galactooctapyranosyl)u ridine (Kl-8110), on the experimental lung metastasis of NL-17 or NL-44 cells was examined. Kl-8110 inhibited the transfer of sialic acid to its endogenous acceptor in NL-17 and NL-44 cells. NL-17 or NL-44 cells were injected into the tail veins of mice, and the metastasis-inhibiting activity of Kl-8110 was evaluated on the basis of both the lung weight and the number of pulmonary surface nodules about 3 wk after the tumor cell injection and of the survival ratio of mice inoculated with the tumor cells. Pretreatment of tumor cells with Kl-8110 together with i.v. injection of Kl-8110 caused significant inhibition of pulmonary metastasis of both NL-17 and NL-44 cells. Inhibition of metastasis and prolongation of survival were also observed on i.v. injection of Kl-8110 without pretreatment of the tumor cells with Kl-8110, but the degree of inhibition was lower than that in the case of the two treatments together. Kl-8110 itself had neither cytostatic nor cytotoxic effects on NL-17 and NL-44 but reduced the retention of tumor cells in the lungs. This antimetastatic effect of Kl-8110 may be due to modification of the tumor cell surface resulting from inhibition of sialyltransferase by Kl-8110. In addition, a beta-linked sialic acid:nucleoside conjugate (Kl-8111) and an equimolar mixture of Kl-8110 and Kl-8111 (Kl-414) also inhibited the metastatic ability of NL cells to the same extent as Kl-8110 did.
Cancer Res 1986 Feb
PMID:Inhibition of experimental pulmonary metastasis of mouse colon adenocarcinoma 26 sublines by a sialic acid:nucleoside conjugate having sialyltransferase inhibiting activity. 375 83


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