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R Jagus

Publications and source records attributed to R Jagus.

At least 55 records · Page 3Linked to original sources

Regulation of polypeptide chain initiation and activity of initiation factor eIF-2 in Chinese-hamster-ovary cell mutants containing temperature-sensitive aminoacyl-tRNA synthetases.

The regulation of polypeptide chain initiation has been investigated in extracts from a number of well-characterized Chinese hamster ovary (CHO) cell mutants containing different temperature-sensitive aminoacyl-tRNA synthetases. These cells exhibit a large decline in the rate of initiation when cultures are shifted from the permissive temperature of 34 degrees C to the non-permissive temperature of 39.5 degrees C. During a brief incubation with [35S]Met-tRNAMetf or [35S]methionine, formation of initiation complexes on native 40S ribosomal subunits and 80S ribosomes is severely impaired in extracts from the mutant cell lines exposed to 39.5 degrees C. Wild-type cells exposed to 39.5 degrees C do not show any inhibition of protein synthesis or initiation complex formation. Inhibition of formation of 40S initiation complexes in the extracts from mutant cells, incubated at the non-permissive temperature, is shown to be independent of possible changes in mRNA binding or the rate of polypeptide chain elongation and is not due to any decrease in the total amount of initiation factor eIF-2 present. However, assays of eIF-2 X GTP X Met-tRNAMetf ternary complex formation in postribosomal supernatants from the temperature-sensitive mutants reveal a marked defect in the activity of eIF-2 after exposure of the cells to 39.5 degrees C and addition of exogenous eIF-2 to cell-free protein-synthesizing systems from cells incubated at 34 degrees C and 39.5 degrees C eliminates the difference in activity between them. The activity of the initiation factor itself is not directly temperature-sensitive in the mutant CHO cells. The results suggest that the activity of aminoacyl-tRNA synthetases can affect the ability of eIF-2 to bind Met-tRNAMetf and form 40S initiation complexes in intact cells, indicating a regulatory link between polypeptide chain elongation and chain initiation.

Amino Acyl-tRNA Synthetases↗

Impaired adenylate cyclase activity of phenylhydrazine-induced reticulocytes.

A method which involves Percoll gradient centrifugation, is described for separating rabbit reticulocytes from other blood cells, including erythrocytes. This permits a quantitative comparison of the adenylate cyclase activity of reticulocyte membranes which had been induced either by bleeding (30% reticulocytosis) or by repeated injections of phenylhydrazine (90% reticulocytosis). Adenylate cyclase activity was greatly impaired on exposure to the hemolytic agent; total activity was reduced about 20-fold. However, a more selective loss was observed in terms of hormonal stimulation. Prostaglandin E1 was 2-fold more effective than either sodium fluoride or Forskolin in stimulating the enzyme from bled reticulocytes, whereas it was 3-fold less effective than either fluoride or Forskolin in the case of membranes from animals which had been exposed to phenylhydrazine. A stimulatory adenosine receptor was detectable only in reticulocytes which had not been treated with the hemolytic agent. These studies suggest that purified reticulocytes from bled animals represent the most suitable model system in which to study the maturation of red blood cells.

1-Methyl-3-isobutylxanthine↗

Indirect inactivation of eukaryotic initiation factor 2 in reticulocyte lysate by selenite.

Addition of selenite to rabbit reticulocyte lysate produces a biphasic pattern of translational inhibition. Sucrose density gradient shows that the onset of translational inhibition is accompanied by decreased Met-tRNAf binding to 43 SN ribosomal subunits and loss of polysomes. Control rates of translation are restored by the addition of exogenous eukaryotic initiation factor 2 (eIF-2). Selenite also directly inhibits Met-tRNAf binding activity of eIF-2. While selenite could react directly with unpaired cysteine residues of eIF-2 to inhibit protein synthesis initiation, a more complex mechanism than a direct inactivation of eIF-2 is suggested by the following observations: 1) translational inhibition produced by selenite is accompanied by an apparent increase in the phosphorylation state of eIF-2alpha; and 2) the extent of translational inhibiton is not proportional to steady-state level of phosphorylation. Rather, the time required for the onset of translational inhibition decreases as the level of eIF-2alpha phosphorylation is increased. This suggests a multistep sequence for eIF-2 inactivation, dependent upon an initial activation of eIF-2alpha kinase and followed by additional eIF-2 modification(s).

Animals↗

Translational activity of messenger ribonucleic acid isolated from unstimulated and phytohaemagglutinin-activated lymphocytes.

Purified cytoplasmic poly(A)+ RNA isolated from unstimulated pig lymphocytes has the same ability to direct translation in a range of cell-free systems as the corresponding mRNA from 20h phytohaemagglutinin-activated lymphocytes. Additional methylation of the mRNA is not required for maximum protein synthesis in the wheat-germ cell-free system. Misleading results are obtained if the mRNA preparations used are not adequately purified, and a method suitable for routine assessment of the degree of purification achieved is described. Cell-free protein-synthesizing systems from unstimulated lymphocytes translate added lymphocyte mRNA with lower efficiency than do comparable systems from phytohaemagglutinin-activated lymphocytes, whatever the source of the mRNA used.

Animals↗

Distribution of lymphocyte messenger RNA during stimulation by phytohaemagglutinin.

Additional of phytohaemagglutinin to cultured lymphocytes results in a progressive increase in the rate of protein synthesis of up to 7-10 times the initial rate after 20 h. Between 2 h and 12 h after the addition of mitogen, the increase in the rate of protein synthesis can be accounted for by the transfer of mRNA from messenger ribonucleoprotein complexes to polysomes. Between 12 h and 20 h the increase also reflects the accumulation of mRNA and ribosomes. However, the proportion of mRNA associated with ribosomes in unstimulated lymphocytes is unexpectedly high and paradoxically decreases during the first 2 h after mitogen addition, although the rate of protein synthesis increases. A mechanism involving mRNA selection is suggested.

Animals↗

The use of [14C]eukaryotic initiation factor 2 to measure the endogenous pool size of eukaryotic initiation factor 2 in rabbit reticulocyte lysate.

[14C]Eukaryotic initiation factor 2 (eIF-2), obtained by reductive methylation of the purified initiation factor, was shown to be active in the unfractionated reticulocyte lysate. This allowed a direct measurement of the endogenous pool size of eIF-2 in rabbit reticulocyte lysate according to the principle of isotope dilution. A value of 20 to 30 pmol/ml of lysate was obtained. Although translational inhibition resulting from hemin deficiency appears to be characterized by a change from catalytic to stoichiometric utilization of eIF-2, the pool size of eIF-2 is too small to account for the normal period of protein synthesis before the onset of translation inhibition. This suggests, therefore, that additional events to eIF-2 alpha phosphorylation may be required for translational inhibition.

Animals↗

Quantitation and localization of globin messenger RNA in rabbit reticulocyte lysate.

A sensitive and quantitative method is described for the determination of globin mRNA distribution in rabbit reticulocyte lysate. The method uses high resolution sucrose density gradient centrifugation followed by [5'-3H]polyuridylate hybridization to poly(A)-mRNA in gradient fractions. Polyadenylate, purified globin mRNA, and ribonuclease-treated lysate are used to standardize the hybridization assay. It is demonstrated that changes of mRNA and ribosomal distribution do not affect quantitation of the total mRNA localization and Met-tRNAf which suggest that the monitoring of Met-tRNAf binding alone may not be sufficient to assess the mechanisms of control which affect the initiation of protein synthesis.

Animals↗

Control of eIF-2 phosphatase activity in rabbit reticulocyte lysate.

A sensitive assay requiring picomole amounts of [32P]eIF-2 to measure eIF-2 phosphatase activity has been developed. Dephosphorylation of [32P]eIF-2 alpha (38,000-dalton subunit) is extremely rapid (t 1/2 = 20 sec) and occurs at the same rate in both hemin-supplemented and hemin-depleted lysates. In contrast, [32P]eIF-2 beta phosphate is stable under all conditions studied. At concentrations required to produce a transient inhibition of protein synthesis, GDP prevents dephosphorylation of half of the phosphate introduced on eIF-2 alpha by the hemin-controlled repressor. Equimolar GTP is without effect. The concept that the energy charge of the guanylate pool may regulate accessibility of a phosphorylated site on eIF-2 alpha to its phosphatase and the implication of this to the mechanism of hemin-regulated translational control are discussed.

Animals↗

Identification of a 48 S preinitiation complex in reticulocyte lysate.

When the polypeptide initiation sequence is interrupted by the peptide antibiotic edeine, the sedimentation coefficient of the native small ribosomal subunit is increased from 43 S to 48 S. Formation of the 48 SN particle is absolutely dependent on the binding of both Met-tRNAf and globin mRNA. These results support the concept that Met-tRNAf binds to the native small ribosomal subunit before mRNA, and that processes involved in mRNA binding to the 43 SN preinitiation complex may be the rate-limiting step of 80 S initiation complex formation.

Animals↗

The regulation of eIF-2 function protein synthesis initiation.

The regulation of eIF-2 activity during protein synthesis initiation has been postulated to involve phosphorylation/dephosphorylation mechanisms and/or the participation of ancillary protein factors. Both mechanisms would affect directly the binding of initiator methionyl-tRNAi by eIF-2. Recent data concerning the phosphorylation state of eIF-2 in hemin-deficient lysates and other covalent modifications which alter the efficiency of eIF-2 utilization, however, suggest that modulation of eIF-2 activity is more complex, and involves alteration of its catalytic recycling.

Animals↗