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Biomedical subjects

F Cajone

Publications and source records attributed to F Cajone.

At least 37 records · Page 2Linked to original sources

The role of nuclei, polyribosomes and cytosol factors in the onset of the acute-phase reaction in the liver cell.

Nuclei isolated from livers of turpentine-treated rats show an increased RNA synthesis, reaching a maximum at 10 h after treatment. The stimulation affects both alpha-amanitin-resistant and alpha-amanitin-sensitive activities, suggesting that pre-ribosomal and pre-messenger RNA formation are activated at the same time and to the same extent. The amount of ribosomal RNA, which is still normal 10 h after treatment, increases significantly at 24 h, but the increase is limited to the bound ribosomes, in keeping with the fact that the acute phase reactants are export proteins. These ribosomes, however, are not more active per se and the stimulation of protein synthesis in cell-free preparations depends essentially on an increased activity of soluble factors located in the cytosol. In living cells these soluble factors co-operate with an increased amount of some specific mRNAs and an expanded population of membrane-bound polyribosomes, thus leading to the increased protein synthesis peculiar to the liver of turpentine-treated rats.

Amanitins↗

Isoelectric characteristics and the secondary structure of some nucleic acids.

The isoelectric characteristics of some nucleic acid preparations from rat liver have been examined. 10S and 4S RNA species and SV-DNA were found to have isoelectric points of 5.2, 6.0-6.7, and 4.35 respectively. The molecular charge ratios (net negative charge/nucleotide) were calculated. Using SV-DNA as a standard, these isoelectric characteristics and charge ratios have been interpreted as indicating that the 10S and 4S RNAs have 35 and 56% of the molecules involved in secondary structure.

DNA, Viral↗

Protein synthesis in liver injury. Soluble factors of protein synthesis in the cytosol from ischemic rat liver.

The high speed supernatant (cell sap) obtained from ischemic livers is less efficient than normal in supporting protein synthesis in cell-free systems. Cell saps from ischemic livers contain a reduced amount of transfer-RNA; the transfer of leucine to the specific tRNA is impaired; the incorporation of leucyl-tRNA into protein is reduced, although less than the incorporation of the corresponding amino acid. The binding of aminoacyl-tRNA to ribosomal subunits and exogenous messengers (polyuridylic acid and uridyl-3'-5'-uridyl-3'-5'-guanosine), is less efficient with ischemic than with normal cells sap, thus indicating a defective activity of elongation factor 1. The total amount-and possibly the intracellular distribution-of elongation factor 2 is also altered in ischemic livers. These changes, which are the expression of a multifunctional deficit of ischemic cell sap, are in general correlated with the duration of ischemia and do not seem to appear around the "point of no return" of the ischemic liver cells.

Amino Acyl-tRNA Synthetases↗

Interactions of liver encoplasmic reticulum membranes and polysomes in vitro.

The interactions of various preparations of endoplasmic reticulum membranes and polysomes have been studied by means of a sandwich sucrose gradient that clearly isolates free ribosomes, smooth endoplasmic reticulum (S.E.R.) and rough endoplasmic reticulum (R.E.R.) from the microsomal fraction of rat liver homogenates. Reconstructed rough membranes separate well from the native R.E.R. but occupy the same position along the gradient as the S.E.R. and the rough membranes, stripped of their ribosomes by means of LiCl. Native R.E.R. and S.E.R. do not bind any added labeled polysomes at 0 degree C; previous treatment with LiCl does not modify the behavior of S.E.R. The presence of cell sap during the binding reaction does not increase polysome fixation by stripped-rough membranes but protects in some way the polysomes and preserves all their original functional capacity of amino acid incorporation into protein.

Animals↗

Changes in the concentrations of some phosphorylated intermediates and stimulation of glycolysis in liver slices.

1. The concentrations of some phosphorylated glycolytic intermediates and of NADH were measured in glycolysing rat liver slices. 2. In anaerobically incubated liver slices the concentration of hexose monophosphates decreases during the first 20min. of incubation, whereas the concentrations of fructose diphosphate and triose phosphates increase progressively. 3. In liver slices from fed rats, previously exposed to oxygen, the stimulated anaerobic glycolysis is accompanied by an increase in the concentration of hexose monophosphates; fructose diphosphate and triose phosphates maintain the concentrations reached at the end of the aerobic preincubation. 4. The same pattern in the concentration of glycolytic phosphorylated intermediates is seen under all conditions where aerobic preincubation brings about a stimulation of anaerobic glycolysis. A similar pattern is also found in liver slices from fed rats incubated anaerobically in the presence of fructose; these slices display a high glycolytic activity, which is not further affected by previous aerobic incubation. 5. The concentration of NADH decreases in liver slices during exposure to oxygen; during the subsequent anaerobic glycolysis the concentration increases but is always lower in preincubated than in non-preincubated liver slices. 6. The results of the present experiments suggest that the limiting step mainly affected by the preliminary exposure to oxygen might be at the level of the utilization of triose phosphates.

Animals↗

Further studies on the stimulation of glycolysis by previous aerobiosis.

1. A short period of incubation in oxygen increases the rate of anaerobic glycolysis in all the normal adult tissues that have been tested, with the exception of erythrocytes. 2. This stimulation does not occur in the six different tumours and in the two embryonic tissues that have been studied. 3. In rat liver and in chicken heart, stimulation is first seen at birth. 4. Stimulation in rat liver slices is decreased in the presence of some inhibitors of oxidative metabolism (cyanide, Amytal, dinitrophenol, malonate), but is not affected if the aerobic preincubation is carried out at 1 degrees . 5. The presence in the medium of some metabolites that are known to be important regulators of the glycolytic rate in living tissues has essentially no effect on stimulation. 6. The pretreatment of animals with inhibitors of oxidative metabolism and with antioxidants does not suppress stimulation; the observed effect of NN'-diphenyl-p-phenylenediamine is probably the consequence of the fall of the glycogen content in the liver. 7. The stimulation of anaerobic glycolysis by previous aerobiosis could not be demonstrated in liver homogenates.

Aniline Compounds↗