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C Ceccarini

Publications and source records attributed to C Ceccarini.

At least 37 records · Page 2Linked to original sources

[Validity and limitations of the CEA test in the treatment of colorectal carcinoma].

CEA appears to be a good marker in the follow up of patients operated for colorectal cancer. The Authors analyse, on the base of literature data, the results of CEA test in their experience of colorectal cancers operated from 1978 to 1987. They confirm the importance of CEA as recurrence marker, however the test, by itself, is not sufficient to always identify a new onset of the disease.

Carcinoembryonic Antigen↗

Biosynthesis and glycosylation of the carcinoembryonic antigen.

Human gastric adenocarcinoma MKN-45 cells were found to synthesize actively carcinoembryonic antigen (CEA). The biosynthesis and carbohydrate processing of CEA were studied in these cells by means of metabolic labelling followed by immunoadsorption with a specific polyclonal-antibody preparation and gel electrophoresis. Pulse-chase studies with [14C]leucine and [3H]mannose (shortest pulse 3 min) showed that N-linked oligosaccharide side chains are added to the protein co-translationally, producing a high-mannose immature CEA; the average molecular mass of this form is 145 kDa. The protein is later translocated to the Golgi apparatus and here undergoes additional processing; these modifications are visible in our system as a broadening of the CEA band and require about 4 h. The upper limit of mature CEA band reaches 200 kDa, but radioactivity is maximally incorporated at 168 kDa. The extent of co-translational glycosylation was measured by treating the cells with tunicamycin; in the presence of this inhibitor, a 74 kDa aglyco-CEA was produced and was still recognized by the antibody. Monensin, an ionophore which interferes with glycoprotein maturation and terminal sugar addition, blocked broadening of the CEA band, producing a sharp 141 kDa peak. In conclusion, CEA appears to be synthesized as a 145 kDa high-mannose immature form, the protein core accounting for about half of its molecular mass. Full maturation results in a broad band at 168 kDa.

Antibodies↗

Expression of myelin components in mouse Schwann cells in culture.

Mouse Schwann cells cultured in vitro are capable of expressing basal levels of the major myelin components P1, P2, P0, and galactocerebroside. Numerical counts of immunostained cultures indicated that between 22 and 40% of the cells are positive up to 21 days for all of the components indicated. Electrophoretic analysis of Schwann cells labeled with a 14C-amino acid mixture revealed the presence of proteins with relative mobilities identical to those of P0 and P1. Positive identification of the two proteins was indicated by immunoprecipitation of P1 and immunoblotting of P0. These data show that in the absence of neurites, Schwann cells in culture can express low levels of myelin characteristic components even in the absence of myelin assembly.

Amino Acids↗

Concomitant purification of prostatic carcinoma tumor markers from human seminal fluid under nondenaturing conditions.

We report a protocol for concomitant purification to homogeneity of both prostatic acid phosphatase [orthophosphoric-monoester phosphohydrolase (acid optimum), EC 3.1.3.2] and prostate-specific antigen, from human seminal fluid. The method requires only two chromatographic steps: passage through an Affigel-Blue column and gel filtration HPLC. This is a fast, efficient procedure for purification of these two important tumor markers, which are specific for prostatic cancer.

Acid Phosphatase↗

Site-specific monoclonal antibodies against peanut agglutinin (PNA) from Arachis hypogaea. Immunohistochemical study of tissue-cultured cells and of 27 cases of Hodgkin's disease.

The purpose of this study was to increase the sensitivity of the staining reaction for the T antigen on the surface of neoplastic cells grown in vitro with the use of site-specific monoclonal antibodies (MAbs). The authors describe anti-peanut agglutinin (PNA) MAbs selected by screening the hybridomas with PNA and PNA bound to bovine serum albumin conjugated with the T antigen. The selected hybridomas (F2C8, F3D12, F3A5) were then grown in pristane-sensitized mice or in the Amicon Hollow Fiber System (F2C8). The affinity constant values for PNA were measured, and all the purified MAbs were tested on both native and denatured PNA, wheat germ agglutinin, concanavalin A, and ricin by using the immunoassay dot test and immunoblotting methods. Eleven different cell lines were stained with the three MAbs; similar results were obtained with F2C8 and F3D12. In each case the fluorescence, if present, was associated with the cell membrane, and the intensity of the staining was always stronger when the cells were incubated with the MAbs than when stained with fluorescein-labeled PNA. On the other hand, F3A5 failed to stain unfixed cells preincubated with PNA but stained the same cells after fixation, independently of the presence of PNA. One of the antibodies, F2C8, was used to stain histologic preparations from 27 cases of Hodgkin's disease and was compared with the anti-granulocyte antibody, Leu-M1, which has been used by numerous authors to identify the characteristic Reed-Sternberg cells. The results obtained were qualitatively similar; ie, F2C8 was at least as efficient as anti-Leu-M1 in its ability to stain the typical diagnostic cells in Hodgkin's disease.

Animals↗

One-step, high-yield purification of human prostatic acid phosphatase from seminal fluid by gel-filtration HPLC under nondenaturing conditions.

This is a fast, efficient method for purification to homogeneity of human prostatic acid phosphatase [orthophosphoric-monoester phosphohydrolase (acid optimum), EC 3.1.3.2], from seminal fluid. Use of a "high-pressure" liquid-chromatographic gel-filtration column permits high-yield recovery of the purified enzyme with most of its enzymatic and immunological activity retained.

Acid Phosphatase↗

Protein-ligand interaction. A calorimetric study of the interaction of oligosaccharides and hen ovalbumin glycopeptides with concanavalin A.

A calorimetric study is reported concerning the interaction between concanavalin A (Con A) and some oligosaccharides and glycopeptides hydrolyzed from hen ovalbumin. The measurements were carried out in acetate buffer, pH 4.5, where, by far, the prevailing form of the protein is the dimeric one [Kalb, A.J., & Lustig, A. (1968) Biochim. Biophys. Acta 168, 366; Dani, M., Manca, F., & Rialdi, G. (1981) Biochim. Biophys. Acta 667, 108]. The calorimetric technique allows the direct determination of the binding enthalpy delta H, degrees B, the evaluation of the apparent association constant K'B, and then the evaluation of the apparent free energy and entropy, delta G degrees' B and delta S degrees' B. Three groups of data have been collected in the present study. The first one concerns the interaction between concanavalin A and some mono- and disaccharides [methyl alpha-glucopyranoside (alpha MGlup), methyl alpha-mannopyranoside (alpha MManp), D-maltose, D-trehalose, and D-cellobiose]. The analysis of the data indicates that in these cases there are small favorable entropic and enthalpic contributions to the affinity. The stoichiometry of the reaction is 2 mol of ligand/mol of Con A dimer, the sites resulting being equivalent and noninteracting. Melezitose, the only trisaccharide studied, shows a different behavior: its affinity for Con A is higher as compared to the other oligosaccharides containing alpha-glucosyl residues and closer to that of methyl alpha-mannopyranoside. However, the stoichiometry is different, namely, 1 mol of ligand/dimer of Con A.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Concanavalin A interactions with asparagine-linked glycopeptides. Bivalency of high mannose and bisected hybrid type glycopeptides.

We have previously reported that concanavalin A (ConA) is precipitated by a high mannose type glycopeptide (Brewer, C. F. (1979) Biochem. Biophys. Res. Commun. 90, 117-122; Bhattacharyya, L., and Brewer, C. F. (1986) Biochem. Biophys. Res. Commun. 137, 670-674). In the present study, we have investigated the ability of a series of high mannose and bisected hybrid type glycopeptides to bind and precipitate the lectin. The modes of binding of the glycopeptides were studied by nuclear magnetic relaxation dispersion (NMRD) techniques, and their affinities were determined by hemagglutination inhibition measurements. The stoichiometries of the precipitation reactions were investigated by quantitative precipitation analysis. The equivalence zones (regions of maximum precipitation) of the precipitin curves indicate that certain high mannose and bisected hybrid type glycopeptides are bivalent for lectin binding. From the NMRD and precipitation data, we have identified two protein binding sites on each glycopeptide: one site on the alpha(1-6) arm of the core beta-mannose residue involving a trimannosyl moiety which binds with high affinity (primary site); and the other site on the alpha(1-3) arm of the core beta-mannose residue involving an alpha-mannose residue(s), which binds with lower affinity (secondary site). These two types of sites bind to ConA by different mechanisms. Certain bisected hybrid type glycopeptides were found to possess only the primary ConA binding sites, but not the secondary sites, and hence were able to bind but not precipitate the lectin. Other related glycopeptides have only the secondary type sites and thus exhibit low affinity and are unable to precipitate the protein. The results are related to the possible structure-function properties of cell-surface glycopeptides.

Asparagine↗

Characterization of the intermediate filament apparatus in skin fibroblasts from patients with giant axonal neuropathy: effect of trypsin.

Skin fibroblasts from two siblings with giant axonal neuropathy (GAN) were examined by both biochemical and immunocytochemical studies. The presence of intermediate filaments (IF) characteristic of these cells was affected by the growth conditions. Immediately after plating and during the following 24 hours the majority of the cells contained an IF "bundle"; however, after 4-6 days in culture only a minority of the cells retained this structure. We present evidence that trypsinization but not serum concentration is likely to influence the formation of the "bundle." The results indicate that the formation of the "bundle" may result from a defective association or relationship between the cytoskeleton and the plasma membrane.

Antibodies↗

Trembler mouse Schwann cells in culture: anomalies in the synthesis of lipids and proteins.

We investigated the biochemical and growth properties of Schwann cells from the sciatic nerve of Trembler and unaffected mice in culture. Both Trembler and control cultures showed similar growth rates. The specific activity of 2',3'-cyclic nucleotide 3'-phosphodiesterase (CNP) and enzymes involved in lipid metabolism of cerebrosides and sulfatides were studied. UDP-galactose: ceramide galactosyltransferase was significantly decreased in Trembler cultures less than 21 days in vitro. No differences were found in the specific activities of cerebroside sulfotransferase, arylsulfatase A or CNP between Trembler and control cultures. Schwann cells from Trembler and control mice were labeled with [35S]methionine and the protein analyzed by two-dimensional gel electrophoresis. Our study revealed few but consistent differences in the protein pattern synthesized by the Trembler Schwann cells.

Animals↗

Identification of a novel glycopeptide species that correlates with differentiation of F9 cells.

The high-molecular-weight fucosyl glycopeptides of differentiated F9 cells have been analyzed. We found that these high-molecular-weight surface structures contain two components with different molecular weights, the largest of which, peak I, has never before been reported. The material eluting in this peak seems to contain only acidic species. Removal of sialic acid from both the peak I and the peak II species does not eliminate the differences in molecular weight, indicating that the two species have more profound structural differences than can be accounted for by sialic acid. Since peak I glycopeptides were found both in differentiated F9 cells and in two parietal endoderm cell lines, we suggest that its presence is related to parietal endoderm differentiation.

Animals↗

Determination of the structure of ovalbumin glycopeptide AC-B by 1H nuclear magnetic resonance spectroscopy at 500 MHz.

Three unique, unmodified ovalbumin glycopeptides were separated to homogeneity by high-pressure liquid chromatography. The nuclear magnetic resonance data, at 500 MHz, confirmed the structure of two of the three species and for the first time established the presence of a Man8GlcNAc2Asn glycopeptide in ovalbumin. This compound was a single homogeneous isomeric form out of three possible compounds expected as processing intermediates.

Chemical Phenomena↗

The effect of alkaline pH on the cell growth of six different mammalian cells in tissue culture.

The effect of high alkaline pH on the reinitiation of cell growth was studied in six different mammalian cells. We failed to confirm the observation of Zetterberg & Engström, Proc natl acad sci US 78 (1981) 4334 [17] and Exp cell res 144 (1983) 199 [18]. Treatment of quiescent cells at pH 9.5 did not stimulate cell growth when measured by total protein/flask or increase in cell number.

Animals↗

1H-NMR relaxation studies of glycopeptides: a dynamic structural investigation.

The Glycopeptide Man5GlcNAc4Asn (ACCB2) in water solution has been studied by means of 1H NMR relaxation techniques in order to define molecular structure and dynamics. From the analysis of selective and non-selective proton relaxation rates of selected ACCB2 protons, a lack of internal mobility along the polysaccharide chain was observed. The presence of a conformationally well-defined molecular structure for ACCB2 is proposed.

Carbohydrate Conformation↗

Fractionation of ovalbumin glycopeptide AC-C by high-pressure liquid chromatography. Determination of structure by 1H-NMR spectroscopy.

We describe for the first time a method for the separation of intact ovalbumin glycopeptides by high-pressure liquid chromatography (HPLC). The separation was achieved using two reverse-phase columns connected in series and eluting with an isocratic solvent system at acid pH containing 1-hexane sulfonate. Ovalbumin glycopeptide fraction AC-C has been separated into at least four distinct glycopeptides. High resolution 1H-NMR spectroscopy has confirmed the reported structure of the two major species. We also extend our structural studies to the two other glycopeptides and establish the structure of a previously unreported ovalbumin glycopeptide, Man3GalGlcNAcAsn.

Animals↗

Endoglycosidase H-sensitive glycopeptides in eleven different animal cells.

We have examined the distribution of mannose-labelled glycopeptides in eleven different animal cells grown in vitro. All of the cells examined contained endoglycosidase H-sensitive species of high and low molecular weight, associated with the cell material and with the cell surface; however, the distribution between the two pools was different, suggesting a 'sorting out' of glycoproteins. Another conclusion from our studies is that the oligosaccharide processing known to occur during or after membrane glycoprotein translation is incomplete in a high percentage of mannose-containing N-linked oligosaccharides of cell surfaces. There was no consistent correlation between the relative amounts of endoglycosidase H-sensitive and -resistant glycopeptides and whether the cells were normal, virus-transformed or tumour-derived.

Animals↗

Purification and characterization of a beta-N-acetylglucosaminidase from Octopus vulgaris. Determination of specificity by using 360-MHz 1H-NMR spectroscopy.

We have purified a beta-N-acetylglucosaminidase from the hepatopancreas of the octopus which we have called beta I. The enzyme was homogeneous as judged by Sephadex column chromatography, isoelectric focusing, non-denaturing gel electrophoresis at two different pH and with sodium dodecyl sulphate/polyacrylamide gel electrophoresis. The native protein has an apparent molecular weight of 120 000 and we can conclude that it is a tetramer made up of two alpha and two beta subunits with apparent Mr of 27 000 and 34 000, respectively. Using NMR spectroscopy we have examined the specificity of beta I and have established that the enzyme hydrolyses the beta 1,4 linkage of N-acetylglucosamine but at only a specific site of the substrates used, two glycopeptides isolated from ovalbumin. To our knowledge this is the first known exoglycosidase which has both linkage and site specificity.

Acetylglucosaminidase↗

Growth properties and biochemical characterization of mouse Schwann cells cultured in vitro.

Purified secondary cultures of mouse Schwann cells (less than 5% fibroblast contamination) have been obtained by taking advantage of the differential adhesion of Schwann cells and fibroblasts during trypsinization. The growth properties of the purified subcultures changed with time in culture. Cells passaged after 5 days in vitro (DIV) divided rapidly (doubling time 22 h), whereas cells that had been in vitro for longer periods progressively decreased their growth rate, becoming quiescent after 20 or more days. Schwann cells lacked the Thy 1.2 surface antigen, but were positively stained with antigalactocerebroside antibodies after prefixation. Biochemical analyses showed Schwann cells to be enriched in the activities of enzymes characteristic of the myelin-forming cells: 2'3'-cyclic nucleotide 3'-phosphodiesterase (CNP), cerebroside sulfotransferase (CST) and UDP-galactose: ceramide galactosyltransferase (CGalT).

2',3'-Cyclic Nucleotide 3'-Phosphodiesterase↗