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Biomedical subjects

G Vecchio

Publications and source records attributed to G Vecchio.

At least 127 records · Page 7Linked to original sources

Reaction of human serum albumin with aldoses.

The reaction of human serum albumin (HSA) with aldoses (C3-C6) and acetaldehyde has been studied. U.v. and fluorescent spectra of the HSA-glyceraldehyde and HSA-GlcN adducts reveal yellow chromophores absorbing at 300-350 nm and emitting at 435 nm. However, even limited reaction of HSA with acetaldehyde induced perturbation in the Trp microenvironment. C.d. spectra of the adducts show an average 20% decrement in mean residual ellipticity [theta], which is independent of the extent of the reaction and the aldose used. It is concluded that most of the reactions with aldoses occur at the surface of the HSA molecule. With the exception of the GlcN adduct, the HSA adducts rearrange to produce pyrrole rings on the protein surface. I.e.f. analysis shows that the pI values of the modified HSA are almost linearly correlated with the chain length of the reacting aldose: from pI 4.2 for HSA-glyceraldehyde up to pI 5.0 for HSA-GlcN.

Acetaldehyde↗

A mos oncogene-containing retrovirus, myeloproliferative sarcoma virus, transforms rat thyroid epithelial cells and irreversibly blocks their differentiation pattern.

Differentiated, cloned rat thyroid epithelial cells (424 cells) were infected with a wild-type and a temperature-sensitive strain of the myeloproliferative variant of the Moloney murine sarcoma virus. The thyroid cells were productively infected and transformed by both virus strains and displayed some of the typical properties of malignant cells, such as morphological changes, growth in soft agar, and in vivo tumorigenicity. The acquisition of the transformed phenotype by the virus-infected cells was accompanied by a loss of the typical differentiated features of the thyroid epithelium, such as thyroglobulin (TG) secretion, iodide uptake, and dependence for growth on six factors including thyrotropin, the physiological thyroid stimulator. TG mRNA could not be demonstrated in cells transformed by both viral strains, suggesting a block at the level of the TG gene transcription. While the transformed state of the cell clones infected with the temperature-sensitive strain could be reverted by shifting the cultures to the temperature nonpermissive for transformation (39 degrees C), no reversion of the differentiated functions took place after such a shift, showing that the v-mos oncogene irreversibly shuts off the differentiation of thyroid epithelial cells in vitro. These results demonstrate, for the first time, an oncogenic potential of the v-mos oncogene family towards differentiated epithelial cells in vitro.

Animals↗

Changes in nuclear proteins on transformation of rat epithelial thyroid cells by a murine sarcoma retrovirus.

Two-dimensional electrophoresis has been used to document changes in nuclear proteins following viral transformation of an epithelial cell line exhibiting differentiation markers. After transformation, these markers are lost, and the cells become tumorigenic and capable of growth in soft agar. A sharp rise in the phosphorylation of histones H1, H2A, and ubiquitinated H2A is seen on transformation, together with the appearance of three phosphorylated proteins that are extractable by perchloric acid and appear related to high mobility group Protein 14, a constituent of active chromatin. Since comparison is made between normal and transformed cells that are each grown to confluence and since there is little difference between their observed growth rates, the changes seen represent intrinsic differences between the cell lines and are thus a direct reflection of the process of transformation.

Animals↗

Effect of the lyotropic series of anions on denaturation and renaturation of 20 beta-hydroxysteroid dehydrogenase.

The effect of the lyotropic series of anions on the stability and renaturation of tetrameric 20 beta-hydroxysteroid dehydrogenase (17,20 beta,21-trihydroxysteroid:NAD+ oxidoreductase, EC 1.1.1.53) was investigated. The variations in enzymatic activity were correlated with the changes in protein fluorescence, circular dichroism, reactivity of histidine residues and molecular weight. High concentrations of salting-out anions (phosphate, citrate, sulphate) were found to stabilize the enzyme markedly and increase the renaturation yield of the urea-denatured enzyme. Phosphate, for instance, induced the highest stabilization at about 1.2 M and the maximum reactivation (66%) at 0.5 M. At low anion concentration (0.01 M), the reactivation was only 7%. The renaturation property of salting-out anions seems to be due to their stabilizing effect on the end-product, i.e., the assembled tetramer. Salting-in anions (perchlorate, thiocyanate, iodide) inactivated the enzyme. At moderate anion concentrations (no greater than 0.25 M) the activation, which occurred slowly, without tetramer dissociation and with minor modifications of enzyme conformation, was fully reversed by concentrated phosphate or by saturating concentrations of NADH. In contrast, the inactivation induced by high anion concentrations (1-2 M) was rapid, irreversible and linked to considerable modifications of enzyme conformation.

20-Hydroxysteroid Dehydrogenases↗

Fractionation techniques in a hydro-organic environment. I. Sulfolane as a solvent for hydrophobic proteins.

Sulfolane (thiophene, tethrahydro-1,1-dioxide), at concentrations of 4 M or above, is an efficient solubilizing agent for water-insoluble proteins (e.g., zein or globin chains). In comparison with urea, it appears indefinitely stable in aqueous solutions and does not chemically modify proteins upon storage. Moreover, it favors protein structure, i.e., it increases their alpha-helix content, while urea decreases it. Sulfolane is compatible with electrophoretic techniques (it only slightly reduces polyacrylamide polymerization efficiency and it does not interfere with protein and peptide detection methods) and with chromatographic methods (it has negligible A280 nm). With hydrophilic proteins, sulfolane behaves as a mild denaturant and precipitates them at concentrations between 5 and 7 M.

Buffers↗

Expression of the onc gene of the Kirsten murine sarcoma virus in differentiated rat thyroid epithelial cell lines.

A systematic study has been performed using a series of differentiated rat thyroid epithelial cell lines either uninfected or infected with Kirsten murine sarcoma virus (KiMSV), to determine the levels of the p21 product of the v-ras-Ki oncogene in transformed and normal cell lines. The p21 levels have been assayed by SDS-polyacrylamide gel electrophoresis of immunoprecipitates of 35S-labelled cell extracts and by a GDP binding assay. All cell lines analysed showed a significant increase in the levels of p21 after transformation with KiMSV compared to the p21 levels of uninfected and untransformed differentiated thyroid cells. The results reported here confirm the potential ability of the v-ras-Ki oncogene product to transform epithelial cells. They show, furthermore, that not only is p21 present in some epithelial cells transformed by KiMSV, but also that it is functionally active, as has been shown for fibroblasts transformed by the same virus, and that its functioning is maintained after passaging in vivo of the transformed cells.

Animals↗

Dissociation between transformed and differentiated phenotype in rat thyroid epithelial cells after transformation with a temperature-sensitive mutant of the Kirsten murine sarcoma virus.

Differentiated rat thyroid epithelial cells, infected in vitro with a temperature-sensitive mutant of the Kirsten murine sarcoma virus, expressed at the permissive temperature (33 degrees C) some phenotypic properties typical of transformed cells, including morphological features, colony formation in agar, and induction of tumors in newborn animals. Specific functional markers of these differentiated cells, i.e., synthesis/secretion of thyroglobulin, synthesis of thyroglobulin mRNA and iodide uptake, were blocked during growth at 33 degrees C. Normal morphology, failure to grow in agar, and the requirement of hormones for optimal growth were all restored after shifting to the temperature nonpermissive for transformation (39 degrees C), though the typical differentiated functions remained blocked. Infection with a leukemia helper virus clone (Moloney or Kirsten murine leukemia virus) did not lead to the loss of the differentiated phenotype of rat epithelial thyroid cells, thus demonstrating that the loss of the differentiated phenotype is caused by the sarcoma virus component. These results indicate that the expression of some of the phenotypic properties of transformed differentiated rat thyroid epithelial cells is under the direct control of the p21 thermosensitive activity, whereas the block in the expression of two typical differentiation markers of thyroid epithelial cells is irreversible and probably controlled by different mechanisms.

Animals↗

Block in the expression of differentiation markers of rat thyroid epithelial cells by transformation with Kirsten murine sarcoma virus.

Well-differentiated epithelial cells, derived from primary cultures of normal rat thyroid glands (T-79 cells), as well as a cloned cell line also derived from normal rat thyroid glands (FRT-L cells) were infected with Kirsten murine sarcoma virus carrying outer coat of the helper Kirsten murine leukemia virus. Infected T-79 and FRT-L cells changed morphologically and began to proliferate rapidly, suggesting malignant transformation by the virus. Both cell lines can support the replication of both transformation-competent and transformation-incompetent viruses such as murine or rat leukemia viruses. Infected T-79 and FRT-L cells had a high colony-forming efficiency (68 and 64%, respectively) when grown in agar and formed tumors when transplanted s.c. into syngeneic rats. These tumors morphologically resemble undifferentiated adenocarcinomas, thus showing that Kirsten sarcoma virus carrying the outer coat of the helper Kirsten murine leukemia virus is able to transform differentiated epithelial cells. Transformed T-79 and FRT-L cells, in contrast to uninfected cells, neither secrete thyroglobulin concentrate iodide, two biochemical markers of differentiated thyroid function. Thus, expression of the differentiated phenotype is blocked as a consequence of cell transformation. The system described may be useful in studying epithelial cell carcinogenesis in terms of regulated expression of differentiated functions.

Animals↗

Transformation of rat thyroid epithelial cells by Kirsten murine sarcoma virus.

Fischer rat thyroid epithelial cella (FRT) growing continuously in culture were infected with the Kirsten murine sarcoma virus KiMSV(KiMuLV) and found to produce this virus constitutively. Although the morphology of the FRT cells did not change appreciably, the cells became malignant after infection with KiMSV(KiMuLV) as shown by the growth of infected cels in semi-solid media (uninfected FRT cells did not grow) and by the tumorigenicity of infected when injected into syngeneic animals (uninfected FRT cells or FRT cells infected with non-transforming retro-viruses were not tumorigenic). The induced tumors morphologically resembled moderately differentiated carcinomas. Two markers of thyroid epithelial differentiation were absent in the original FRT clone and remained unexpressed after transformation. Fully differentiated rat thyroid epithelial cells (FRT-L cells) infected with another strain of the Kirsten murine sarcoma virus, the KiMSV(MolMuLV), were also transformed as demonstrated by the ability also of these cells to grow as carcinomas (after in vitro transformation) in syngeneic animals. Our results clearly demonstrate that the Kirsten murine sarcoma virus can transform in vitro cells of epithelial as well as of fibroblastic origin.

Animals↗

L-glutaminase and L-asparaginase by extracorporeal route in acute lymphoblastic leukemia therapy.

Use of L-asparaginase by the extracorporeal route in the therapy of acute lymphoblastic leukemia (ALL) has been proposed. Results, however, are not so satisfactory as i.v. administration of this enzyme, because the levels of L-asparagine do not fall for a sufficient length of time due to the antagonistic action of the L-asparagine-synthetase. To avoid the L-asparagine rebound we have utilized, by extracorporeal route, L-glutaminase together with L-asparaginase, in order to reduce L-asparagine and L-glutamine levels. We have therefore performed a series of experiments in vitro and in vivo either using L-asparaginase alone or together with L-glutaminase. Results show that, contrary to what happens when L-asparaginase is used alone, L-asparagine levels decrease and remain low even after 24 hours from the treatment, when L-glutaminase is added to the system. Thus a lowering of L-glutamine levels, which seems to play an important role in the therapy of ALL, is obtained.

Animals↗

Interferon effects on Friend leukaemia cells. I. EXpression of virus and erythroid markers in untreated and dimethyl sulphoxide-treated cells.

The effects of low doses (40 to 1000 units/ml) of mouse interferon (IF) on the expression of Friend leukaemia virus (FLV) and globin genes in Friend leukaemia cells (FLC) have been examined. IF blocks production of extracellular virus, but virus antigens accumulate in the cytoplasm. In cells treated with IF at the time of seeding, there is a reduction in the amount of RNA specified by the lymphatic leukaemia virus (LLV) component of FLV; with the same IF dose there is a small but definite stimulation of haemoglobin and globin mRNA synthesis. The effects of IF on LLV gene expression are even more pronounced in dimethyl sulphoxide (DMSO)-stimulated LFC. No correlation was found between LLV gene expression and the appearance of erythroid markers.

Antigens, Viral↗

Enhancement of viral gene expression in Friend erythroleukemic cells by 12-O tetradecanoylphorbol-13-acetate.

Tumor-promoting agents are known to inhibit the specific differentiation processes of several animal cell systems in vitro, including the Friend leukemia cell system. We have examined the effect of 12-O tetradecanoylphorbol-13-acetate (TPA) on the latter system and have investigated its action on Friend virus expression. At a concentration of 16.7 nM, TPA inhibits the dimethyl sulfoxide-induced Friend cell terminal differentiation and, at the same time, enhances the expression of the Friend virus genome, as demonstrated by a 2-fold increase in the amount of reverse transcriptase-containing particles released into the culture fluid and in the levels of virus-specific intracytoplasmic RNA. The greatest effect of TPA is evident after 24 hr of treatment. At this time, TPA exerts also its strongest effect upon the induction of the plasminogen activator. Our results indicate that two specific effects of TPA, i.e., block of differentiation and induction of plasminogen activator, correlate well in the Friend cell system with an extracellular and intracellular increase in virus expression.

Cell Differentiation↗

Immobilization and characterization of L-asparaginase on hollow fibers.

L-Asparaginase was immobilized with various methods: cyanogen bromide, cyanuric chloride and cross-linking with glutaraldehyde. A dialysis device was transformed in a bioreactor with the enzyme immobilized on the outer surface of hollow fibers. Results on kinetic behavior, stability in storage and lyophilization are reported.

Asparaginase↗