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C Saccone

Publications and source records attributed to C Saccone.

At least 109 records · Page 6Linked to original sources

Rat liver mitochondrial aspartate aminotransferase mRNA: synthesis of an higher molecular weight precursor by free polysomes.

The site of synthesis of the higher molecular weight precursor of mAAT has been determined by separation of free and membrane-bound polysomes. Free and bound polysomes were isolated from rat liver and the polyA+RNA was extracted. Protein synthesis was carried out for two hours by using a reticulocyte lysate system in the presence of 35S-methionine. The samples were subjected to immunoprecipitation with specific antiserum. The precipitates were analyzed by Na-DodSO4/polyacrylamide gel electrophoresis and fluorography. The results clearly demonstrate that the enzyme is synthesized by free polysomes.

Animals↗

Rat liver mitochondrial aspartate aminotransferase mRNA: isolation of mRNA by polyacrylamide gel electrophoresis.

In order to obtain an enriched fraction of mRNA for mAAT we applied the following method: preparation of cytoplasmic polysomes; isolation of total RNA; isolation of mRNA by chromatography on oligo(dT)-cellulose column; polyacrylamide gel electrophoresis; extraction of mRNA from the gel. The procedure seems to allow isolation of mRNA enriched fraction for mAAT. An enriched fraction of mRNAs can be useful for the preparation of corresponding cDNAs.

Animals↗

Non-random patterns of nucleotide substitutions and codon strategy in the mammalian mitochondrial genes coding for identified and unidentified reading frames.

The base sequence of large part of the mitochondrial DNA of Wistar rats is presented. The sequence is compared with those of other mammalian mitochondrial DNAs. The nucleotide and amino acid homologies, codon strategy, nature and patterns of substitutions are reported. It results a very high amount of silent substitutions and, in short divergence time, a predominance of transitions on transversions. In both types of substitutions a strong bias in avoiding the use of the G in the third codon position is observed.

ATP Synthetase Complexes↗

The nucleotide sequences of several tRNA genes from rat mitochondria: common features and relatedness to homologous species.

We have determined the nucleotide sequences of thirteen rat mt tRNA genes. The features of the primary and secondary structures of these tRNAs show that those for Gln, Ser, and f-Met resemble, while those for Lys, Cys, and Trp depart strikingly from the universal type. The remainder are slightly abnormal. Among many mammalian mt DNA sequences, those of mt tRNA genes are highly conserved, thus suggesting for those genes an additional, perhaps regulatory, function. A simple evolutionary relationship between the tRNAs of animal mitochondria and those of eukaryotic cytoplasm, of lower eukaryotic mitochondria or of prokaryotes, is not evident owing to the extreme divergence of the tRNA sequences in the two groups. However, a slightly higher homology does exist between a few animal mt tRNAs and those from prokaryotes or from lower eukaryotic mitochondria.

Animals↗

Uptake of aspartate aminotransferase into mitochondria in vitro depends on the transmembrane pH gradient.

1. The effects of various inhibitors of electron transport and of oxidative phosphorylation and the effects of ionophores on the uptake of native aspartate aminotransferase into mitochondria were investigated. 2. Both antimycin and cyanide completely inhibited the uptake of the enzyme. On the other hand, uptake was stimulated to ATP and by oligomycin; however, the stimulation by ATP is inhibited by oligomycin. 3. The effects of ionophores of the valinomycin type in media containing K+ ions depended on the conditions used. Valinomycin alone stimulated the uptake of the enzyme, but in the presence of phosphate ions uptake was abolished. Nonactin was without effect at a low K+ concentration, but was stimulatory at 100 mM-KCl. Gramicidin also stimulated the uptake process. 4. Nigericin completely abolished uptake of aspartate aminotransferase into mitochondria. 5. The uptake of te enzyme was decreased by 18% in the absence of inhibitors or ionophores when the external pH was increased from 6.9 to 7.6. 6. These results indicate that ATP is not directly involved in the uptake of aspartate aminotransferase into mitochondria, neither is there a requirement for a cation gradient. Rather the uptake depends on the maintenance of a pH gradient across the mitochondrial inner membrane.

Adenosine Triphosphate↗

The nucleotide sequence of the large ribosomal RNA gene and the adjacent tRNA genes from rat mitochondria.

We have sequenced the Eco R(1) fragment D from rat mitochondrial DNA. It contains one third of the tRNA (Val) gene (the remaining part has been sequenced from the 3' end of the Eco R(1) fragment A) the complete gene for the large mt 16S rRNA, the tRNA (Leu) gene and the 5' end of an unidentified reading frame. The mt gene for the large rRNA from rat has been aligned with the homologous genes from mouse and human using graphic computer programs. Hypervariable regions at the center of the molecule and highly conserved regions toward the 3' end have been detected. The mt gene for tRNA Leu is of the conventional type and its primary structure is highly conserved among mammals. The mt gene for tRNA(Val) shows characteristics similar to those of other mt tRNA genes but the degree of homology is lower. Comparative studies confirm that AGA and AGG are read as stop codons in mammalian mitochondria.

Animals↗

The characterization of the area of rat mitochondrial DNA containing the large ribosomal RNA gene.

The base sequence of the Eco-RI D fragment from rat liver mtDNA, cloned in recombinant plasmid, has been analyzed, This fragment contains the genes for the 16SRNA of the large ribosomal subunit and the tRNA(Leu). Comparisons between these genes and corresponding regions either in other mitochondrial genomes or in E. coli DNA are presented, that allow some interesting evolutionary and phylogenetic considerations.

Animals↗

Further analysis of the type differences of rat-liver mitochondrial DNA.

1. The sequence of the small Hind III fragment F of rat-liver mitochondrial DNA (mtDNA) type A and type B was determined in order to investigate the nature of the differences between the two types of mtDNA and to determine its position in the Hind III fragment map. 2. The three differences found were point mutations. No deletion or insertion and no modification was observed. Two of the three differences affect the sequences which are recognition sites for Eco RI, Alu I and Taq I in type A, but not in type B, mtDNA. 3. The presence of an Eco RI restriction site only within the Hind III fragment F of type A shows that the fragment is situated in between the Hind III fragments A and E. 4. In one of the six reading frames, the Hind III fragment F contains the code for a carboxyl-terminal end of a polypeptide in which the three mutations do not lead to alterations in the possible aminoacid sequence. 5. The restriction sites for Taq I and a number of the sites for Alu I and Hae III were mapped. 6. The positions of the Hap II fragment J, and of a Hind III fragment G on the mtDNA were determined.

Animals↗

Macromolecular synthesis in mitochondria isolated from different regions of developing rat brain.

DNA, RNA, and protein synthesis in mitochondria isolated from cerebral hemispheres, brain stem, and cerebellum of 10- and 30-day-old rats was measured. Synthesis of different macromolecules was affected by the respective mitochondrial specific inhibitors, showing a good level of purity of mitochondrial preparations. DNA and protein synthesis in 10-day-old rats was about 70% higher than in 30-day-old animals. In contrast, RNA synthesis did not decrease with age in all the regions examined.

Aging↗

Mitochondrial DNA, RNA, and protein synthesis in different regions of developing rat brain.

In vivo and in vitro (tissue slices) incorporation of labeled precursors into DNA, RNA, and proteins was measured in mitochondria obtained from cerebral hemispheres, cerebellum, and brain stem of rats at different days of postnatal development. To compare the synthesis of macromolecules in mitochondria with that in other subcellular fractions, the incorporation of labeled precursors into DNA, RNA, and proteins extracted from nuclei and into RNA and proteins extracted from microsomes and cytoplasmic soluble fractions was also measured. The results obtained showed that the incorporation of [3H]thymidine into DNA and of [14C]leucine into proteins of nuclei and mitochondria from the various brain regions examined decreased during postnatal development; however, at 30 days of age the specific radioactivity of mitochondrial DNA was higher than that of nuclear DNA. [3H]Uridine incorporation into RNA decreased from 10 to 30 days of age in nuclei while in mitochondria it was quite similar at both ages. This result may be due to a faster turnover of mitochondrial RNA compared to that of mitochondrial DNA and proteins. The results obtained suggest an active biosynthesis of macromolecules in brain mitochondria and might indicate an intense biogenesis of these organelles in rat brain during postnatal development.

Animals↗