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Biomedical subjects

R Izzo

Publications and source records attributed to R Izzo.

At least 19 recordsLinked to original sources

Influence of poly(ADP ribose) polymerase depletion on promotion of liver carcinogenesis.

In previous studies we demonstrated that liver poly(ADP ribose) polymerase (pADPRP) activity was lost in animals exposed to N-2-acetylaminofluorene (2AAF) according to the Teebor and Becker experimental model (Cancer Res 31:1-3, 1971). In addition, we used the resistant hepatocyte model of Solt and Farber (Nature 263:702-703, 1976) to further investigate pADPRP activity during the multistep process of liver carcinogenesis. A marked depletion of the catalytic protein was evidenced after 2AAF exposure, confirming previous results and indicating a specific effect of 2AAF on this nuclear enzyme that controls conformational changes of chromatin and regulates several catalytic activities in the nucleus. The levels of pADPRP mRNA, measured by northern blot analysis using both experimental models, indicate that the enzyme depletion is not due to a loss of transcript. Moreover, these data indicate that pADPRP depletion, caused by 2AAF, was also maintained during liver compensatory growth, which is known to induce a rapid and marked increase in pADPRP activity and protein level. Treatment of 2AAF-exposed animals with N-acetyl-L-cysteine not only efficiently protected against DNA damage, but also prevented a rapid depletion of the catalytic protein. Interestingly, these data indicate that the marked loss of liver pADPRP occurred during the promotion step induced by 2AAF feeding and that this loss was observed using different models for experimental hepatocarcinogenesis. This phenomenon can be ascribed to a highly defective transcript that cannot be correctly translated into the specific protein or to a rapid degradation of the translated protein.

2-Acetylaminofluorene

Changes in activity and mRNA levels of poly(ADP-ribose) polymerase during rat liver regeneration.

ADP-ribosylation of nuclear proteins, catalysed by the enzyme poly(ADP-ribose) polymerase, is involved in the regulation of different cellular processes of DNA metabolism. To further clarify the role of the enzyme during proliferating activity of mammalian cells, we have studied the control of gene expression in regenerating rat liver. The changes in activity and mRNA levels were analysed during the early and late phases of the compensatory model. When enzyme activity was measured in isolated liver nuclei obtained at different times after hepatectomy, two different phases were observed: an early wave occurring before the onset of DNA synthesis, and a second one, starting several hours after the onset of DNA synthesis and returning to control values at later times. The evaluation of the enzymatic level in nuclear extracts and by activity gel analysis showed a more gradual increase starting 1 day after hepatectomy, in concomitance with the peak of DNA synthesis. By using a specific murine cDNA probe, a significant enhancement of mRNA levels for poly(ADP-ribose) polymerase was observed during liver regeneration, slightly preceding the onset of DNA synthesis. The results obtained show that changes in poly(ADP-ribose) polymerase activity, during liver regeneration, are associated both to early events preceding the increase in DNA synthesis and to later phases of the cell proliferation process.

Animals

Depletion of adenosine diphosphate-ribosyl transferase activity in rat liver during exposure to N-2-acetylaminofluorene: effect of thiols.

The exposure of rats to a feeding regimen containing N-2-acetylaminofluorene (2AAF) causes an accumulation of lesions on liver DNA and a progressive impairment in DNA repair capacity. We used the in vivo experimental model of Teebor and Becker (Cancer Res., 31:1-3, 1971) with the carcinogen given to rats during four consecutive cycles, each one composed of 3 weeks of treatment and 1 week of recovery. The extent of DNA damage and repair was determined during each cycle by the alkaline elution technique. The results obtained showed that the number of alkalilabile sites in DNA is significantly enhanced after the first cycle and remains increased during following cycles. Since ADP-ribosyl transferase (ADPRT) is known to play a central role in the response to DNA damage, we investigated the effect of 2AAF on this enzyme during the carcinogenic process. The activity and the structure of ADPRT were analyzed using the activity gel and Western blot techniques. The catalytic band with a molecular weight of 116,000, clearly evident in liver extracts of control rats, was no longer detectable after one cycle of exposure to 2AAF returning progressively to an almost normal level within the last two cycles. When the aminothiol N-acetyl-L-cysteine (NAC) was added to the 2AAF diet, the extent of DNA damage was drastically reduced, and DNA repair activity preserved for a longer period. In addition, the loss of ADPRT was not observed after the first cycle, but delayed to the end of the second, indicating that NAC exerts a protective effect on DNA and on ADPRT. Such effect was not evident when NAC was substituted by glutathione. The analysis of liver extracts on Western blot showed that the ADPRT immunoreactive band was almost undetectable after the first cycle suggesting that the loss in enzyme activity could be due to a block in de novo synthesis of the enzyme and not to an inhibition of its activity.

2-Acetylaminofluorene

Mammalian DNA ligase. Structure and function in rat-liver tissues.

DNA ligase was partially purified from normal and regenerating rat liver. Its structure was studied using the activity gel procedure that identifies the functional polypeptides. Two slightly different purification procedures were followed leading to the isolation of one or two peaks (fractions A and B) of DNA ligase by hydroxyapatite chromatography. When analyzed on activity gels, all these enzyme fractions corresponded to a single active 130-kDa polypeptide both in normal and regenerating liver. A limited trypsin digestion of ligase fractions A and B gave rise to an identical pattern of smaller polypeptides of 110 kDa, 100 kDa and 75 kDa. Also storage at 4 degrees C of fractions A and B produced smaller polypeptides of 110 kDa, 100 kDa, 85 kDa and 60 kDa, which were identical for the two fractions. Our results indicate that the same ligase polypeptide of 130 kDa can be isolated from stationary or regenerating rat liver cells. However, physiological or artifactual proteolysis during various purification procedures can lead to the isolation of two enzyme fractions with different chromatographic behaviour but with the same molecular mass.

Animals

Response of mammalian ADP-ribosyl transferase to lymphocyte stimulation, mutagen treatment and cell cycling.

The inhibitors of the nuclear enzyme ADP-ribosyl transferase (ADPRT) had been shown to block the stimulation of quiescent lymphocytes with mitogens suggesting the involvement of the enzyme in the control of gene expression and cell differentiation. By means of the activity-gel assay we have analysed the intensity and the molecular mass of the catalytic bands of the enzyme at early and late times after stimulation of human lymphocytes by phytohemagglutinin. We observed that the increase in the activity of ADPRT is concurrent with the onset of DNA synthesis and is maintained for up to 10 days after lymphocyte stimulation, when DNA replication is over but the capacity to perform repair synthesis is still elevated. The analysis of ADPRT in stimulated lymphocytes by Western blots indicated that the increase in enzyme activity is due to the de novo synthesis of enzyme protein. The response of ADPRT to the treatment of human lymphocytes with DNA-damaging agents was studied at various dose-ranges, using the activity-gel technique. The results obtained indicate that dimethyl sulfate is 10 times as active as methyl methane sulfonate in stimulating ADPRT activity and that, at very high doses, the activity band of the enzyme tends to disappear. Very similar observations were obtained when Chinese hamster ovary cells were treated with the same agents, although the concentrations of the mutagens eliciting maximal ADPRT activation were 10 times higher than in human lymphocytes. When analysed by Western blots, no significant difference of the protein band of the enzyme was observed in comparing control and treated cells. This suggests that the activity-gel system can detect two different phenomena: the increase in enzyme protein, as in the case of stimulated lymphocytes, and the enzyme-activating effect of DNA-damaging agents, which occurs without changing the number of enzyme molecules. Of particular interest is the observation that mitomycin C is capable of activating ADPRT in human lymphocytes, thus suggesting that cross-linking agents are involved in promoting ADP-ribosylation reactions. We have also analysed the variations of the enzyme throughout the cell cycle in HeLa cells synchronized in S phase or in mitosis. No significant changes in the levels of the enzyme activity were revealed by the activity-gel assay during the progression of the cycle, although an overall increase of active polypeptides of larger size in concomitance with the S period was observed.

Cell Cycle

Structural analysis of poly(ADP-ribose)polymerase in higher and lower eukaryotes.

A phylogenetic survey for the poly(ADP-ribose)polymerase has been conducted by analyzing enzyme activity in various organisms and determining the structure of the catalytic peptides by renaturation of functional activities of the enzyme in situ after electrophoresis in denaturing conditions (activity gel). The enzyme is widely distributed in cells from all different classes of vertebrates, from arthropods, mollusks and plant cells but could not be detected in echinoderms, nematodes, platyhelminths, thallophytes (including yeast) and bacteria. The presence on activity gels of a catalytic peptide with Mr = 115,000-120,000 was demonstrated in vertebrates, arthropods and mollusks but no activity bands were recovered in many lower eukaryotes, in plant cells and bacteria. By using an immunological procedure that used an antiserum against homogeneous calf thymus poly(ADP-ribose) polymerase, common immunoreactive peptides were visualized in mammals, avians, reptiles, amphibians and fishes, while lacking in non-vertebrate organisms. Our results indicate that the structure of poly(ADP-ribose) polymerase is conserved down to the mollusks suggesting its important role for DNA metabolism of multicellular organisms.

Animals

Variation in DNA ligase structure during repair and replication processes in monkey kidney cells.

Using a method that detects catalytically active DNA ligase in NaDodSO4-polyacrylamide gels (activity gels) we have characterized ligase produced in CV1-P monkey kidney cells infected with SV40 or treated with mitomycin C. Purification on hydroxylapatite columns of DNA ligase from control cells results in two peaks of activity called ligases I and II, respectively. Analysis of ligase I on activity gels revealed major catalytic peptides with Mr of 120, 110, 70 and 58 kDa, while analysis of ligase II revealed two major peptides of 65 and 58 kDa. Infecting CV1-P cells with SV40 produced a significant increase in the 120, 110, 70 and 58 kDa peptides while treating them with mitomycin C produced a significant increase in the 70 and 58 kDa peptides and a decrease in the 120 and 110 kDa ones. Autoproteolysis of partially purified ligase under several conditions resulted in an increase in the 58 kDa peptide and in the disappearance of other peptides. These results suggest that at least one active polypeptide is common to ligases I and II.

Animals

Variance estimates and individuality ratios of 25 serum constituents in beagles.

Variance components and individuality ratios for each of 25 chemical constituents of serum were estimated in a population of beagles. Ten blood samples were obtained from each of 14 beagles, seven of each sex, approximately weekly during three months. Glucose and phospholipid displayed marked inter-dog variation, as compared with intra-dog variation (individuality ratio less than 1). Triglycerides and nonesterified fatty acids had large intra-dog variances relative to their inter-dog variances (individuality ratio greater than 1). Overall, the estimated individuality ratios exceeded 1 for 20 of the 25 constituents. We conclude that subtraction of pretreatment values in the statistical analysis of the data from assays with individuality ratios greater than 1 may mask small clinically or biologically important changes between treatment groups. When the individuality ratio is greater than 1, pretreatment values should only be used as a population screening tool before a study.

Animals

Micromethod for lipid-chromatographic determination of cholesterol in lipemic sera.

A micromethod involving "high-performance" lipid chromatography was developed for determining cholesterol in sera obtained from animals that has been infused with high doses of lipid emulsions. Only 50 micro L of serum is required, and there is no interference from turbidity, bilirubin, fat-soluble vitamins, and sterols. Correlation with the commonly used Abell-Kendall method was good at cholesterol concentrations as great as 10.0 g/L (r = 0.998). The assay is ideal for determinations on samples from pediatric and hyperlipidemic patients. It is particularly useful for monitoring patients on lipid-emulsion therapy and for toxicological studies with small animals.

Animals

[Association of gastric cancer and hepatitis. A theory to be verified].

The protective implications of transfusion hepatitis with respect to cancer are examined. It was observed that three patients suffering from advanced stomach cancer (IIIrd and IVth stage TNM), submitted to palliative surgery, contracted a probably transfusional hepatitis in the postoperative period and thereafter showed remission of the basic disease. Mechanisms of aspecific immunitary activation and/or a direct cytotoxic action on the part of the virus are postulated.

Adult

The basal and the mutagen-induced levels of ADP-ribosyl transferase activity are not modified in Fanconi's anemia cells.

The activity of ADP-ribosyl transferase, an enzyme thought to be involved in several basic functions of the chromatin and in DNA repair, has been investigated in normal and Fanconi's anemia (FA) cells. Fibroblasts and lymphoblasts treated with alkylating (dimethyl sulfate) or cross-linking (mitomycin C, psoralen plus UVA) agents were compared to untreated cells. The basal level of the enzymatic activity was found to be the same in normal and FA cells and the enzymatic response to treatments with DNA-damaging agents was similar in both cell types. Consequently it is unlikely that the molecular defect in FA cells is due to a decreased activity in ADP-ribosyl transferase.

Anemia, Aplastic