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S Numa

Publications and source records attributed to S Numa.

At least 91 records · Page 5Linked to original sources

Cell-free translation and regulation of Candida tropicalis catalase messenger RNA.

To gain information on metabolic control and peroxisome biogenesis in Candida tropicalis growing on n-alkanes, cell-free translation of catalase (H2O2:H2O2 oxidoreductase, EC 1.11.1.6), a general marker enzyme of peroxisomes, was performed. The level of catalase activity in alkane-grown cells was approximately 9-fold and 27-fold higher than that in ethanol-grown and glucose-grown cells, respectively. Immunochemical titration experiments with rabbit antiserum against the purified peroxisomal catalase from alkane-grown C. tropicalis indicated that the remarkable variation in the enzyme activity level on different carbon sources was ascribable to a corresponding change in the amount of the enzyme protein. When cell-free translation was carried out with the mRNA-dependent reticulocyte lysate system, total RNA prepared from alkane-grown cells was shown to direct the synthesis of catalase subunit in vitro. The identity of the cell-free translation product was ascertained by the following evidence: (a) the translation product was immuno-reactive with specific antibody to catalase and competed effectively with the authentic enzyme for immunoprecipitation; (b) it possessed a molecular weight indistinguishable from that of authentic catalase subunit (Mr 54000); (c) its peptide fragments formed by partial digestion with Staphylococcus aureus V8 protease were identical with those from the authentic enzyme. With the use of the cell-free translation system, it was indicated that the significant change in the amount of catalase protein on different carbon sources nearly paralleled that in the activity of the mRNA encoding the enzyme.

Alkanes↗

Primary structure of alpha-subunit precursor of Torpedo californica acetylcholine receptor deduced from cDNA sequence.

DNA sequences complementary to the Torpedo californica electroplax mRNA coding for the alpha-subunit precursor of the acetylcholine receptor were cloned. The nucleotide sequence of the cloned cDNA indicates that the precursor consists of 461 amino acids including a prepeptide of 24 amino acids. Possible sites for acetylcholine binding and antigenic determinants on the alpha-subunit molecule are discussed.

Amino Acid Sequence↗

Cloning and sequence analysis of cDNA for porcine beta-neo-endorphin/dynorphin precursor.

The primary structure of a precursor protein that contains beta-neo-endorphin, dynorphin and a third leucine-enkephalin sequence with a carboxyl extension has been deduced from the nucleotide sequence of cloned DNA complementary to the porcine hypothalamic mRNA encoding it. The three peptides are each bounded by Lys-Arg. This precursor protein, like adrenal preproenkephalin and the corticotropin/beta-lipotropin precursor, comprises multiple repetitive units and a cysteine-containing amino-terminal sequence preceded by a signal peptide.

Amino Acid Sequence↗

Structural analysis of repetitive DNA sequences in the bovine corticotropin-beta-lipotropin precursor gene region.

Repetitive DNA sequences in the bovine corticotropin-beta-lipotropin precursor gene region have been mapped and subjected to nucleotide sequence analysis. Two of the four repetitive DNA segments found are located in the 5'-flanking region, and one each within the intervening sequences. Each repetitive DNA segment contains one to three highly homologous unit sequences with an approximate length of 120 base pairs. All the unit sequences are flanked on the 3' side by tandem repeats. There are about 10(5) copies of the repetitive DNA in the bovine genome. Comparison of the bovine repetitive sequences with those of other mammalian species reveals the presence of a homologous segment of approximately 40 base pairs. This segment and the region preceding it in the bovine repetitive DNA exhibit sequence homology with the region encompassing the origin of DNA replication in papovaviruses.

Adrenocorticotropic Hormone↗

Repetitive DNA sequences in the human corticotropin-beta-lipotrophin precursor gene region: Alu family members.

Repetitive DNA sequences in the human corticotropin-beta-lipotropin precursor gene region have been studied by blot hybridization analysis and DNA sequencing. Six repetitive sequences are present in this gene region; five of them are Alu family members with an approximate length of 300 base pairs, and the other consists of a portion of an Alu family sequence. Two of these Alu family members are located in the 5'-flanking region of the gene, and the remaining four within the intervening sequences. These Alu family sequences constitute inverted repeats in the intervening sequences as well as in the 5'-flanking region of the gene.

Adrenocorticotropic Hormone↗

Cloning and sequence analysis of cDNA for bovine adrenal preproenkephalin.

The nucleotide sequence of cloned cDNA for preproenkephalin from bovine adrenal medulla indicates that the precursor protein contains four copies of Met-enkephalin and one copy each of Leu-enkephalin, Met-enkephalin-Arg6-Phe7 and Met-enkephalin-Arg6-Gly7-Leu8, a previously undetected opioid peptide. The enkephalin and extended enkephalin sequences are each bounded by paired basic amino acid residues. Preproenkephalin may represent a multi-hormone precursor, like the corticotropin-beta-lipotropin precursor.

Adrenal Glands↗

DNA sequences required for transcription in vivo of the human corticotropin-beta-lipotropin precursor gene.

The cloned human corticotropin-beta-lipotropin precursor gene, when joined with an SV40 vector and introduced into COS monkey cells, is transcribed from its own promoter. The DNA sequences required for promoter function have been identified by using 5' deletion mutants of the fusion gene AT which contains the 5'-flanking sequence and capping site of the human corticotropin-beta-lipotropin precursor gene and the structural sequence of the herpes simplex virus thymidine kinase gene. The deletion of the sequence located between 53 and 59 bp upstream of the capping site enhances the transcription approximately 3-fold, while the deletion of the TATA box region abolishes the transcription.

Adrenocorticotropic Hormone↗

Structural organization of the corticotropin-beta-lipotropin precursor gene.

The human and the bovine corticotropin (ACTH)-beta-lipotropin (LPH) precursor gene have been isolated and characterized. Both genes consist of three exons which are divided by two large introns at exactly the same positions. One of the introns is inserted within the segment transcribed into the 5'-untranslated region of the mRNA, and the other interrupts the protein-coding sequence near the signal peptide region. The largest exon encodes most of the protein sequence which includes the three repeated melanotropin (MSH) peptides and other biologically active peptides such as ACTH and beta-endorphin. Thus, there is no apparent correspondence between the repetitive structure of the precursor protein and the structural organization of its gene. Comparison of the nucleotide sequences of the human and the bovine gene reveals that three regions are highly conserved, i.e., the region extending from the signal peptide to gamma-MSH, the ACTH region and the beta-MSH/beta-endorphin region. This suggests that the peptide(s) in the amino-terminal region, including gamma-MSH, may be of physiological importance, as is the case for ACTH and beta-endorphin. The different biologically active component peptides of the ACTH-beta-LPH precursor, encoded by a single gene, seem to be involved in the defense mechanism of the living organism by acting coordinately in the central nervous system as well as in peripheral tissues. The identification of the mRNA encoding the ACTH-beta-LPH precursor in a human ectopic ACTH-producing tumor is also reported.

Adrenocorticotropic Hormone↗

5'-terminal nucleotide sequence of the messenger RNA coding for bovine corticotropin/beta-lipotropin precursor.

The complete 5'-terminal nucleotide sequence of the MRNA coding for the bovine common precursor of corticotropin and beta-lipotropin has been determined. The 5'-32P-labelled, 21-nucleotides-long, single-stranded DNA fragment complementary to a portion of the 5'-noncoding region of the mRNA was prepared from a cDNA clone and elongated by reverse transcriptase reaction with the mRNA as template. The DNA transcript formed was sequenced by the procedure of Maxam and Gilbert, and the resultant sequence was cross-checked by two-dimensional electrophoretic analysis of the partial alkaline digest of the 5'-32P-labelled mRNA. The 5'-terminal nucleotide residue was determined by two-dimensional thin-layer chromatography of the complete hydrolysis product of the 5'-32P-labelled mRNA. The nucleotide sequence determined, which partially overlaps the known sequence of the cloned cDNA, reveals the complete 5'-terminal sequence of the mRNA. This, in conjunction with our previous data, defines the complete primary structure of the mRNA. The mRNA is composed of 1098 nucleotides, including an unusually long 5'-noncoding sequence of 128 nucleotides. The presence of a 'cap' structure at the 5' terminus of the mRNA is suggested. The 5'-terminal 48 nucleotide residues of the mRNA are extremely purine-rich, having an A + G content of 83%, whereas all pyrimidine-rich segments are located downstream from there. Because the 5'-noncoding region of the mRNA contains three segments of potential secondary structure which partially overlap, it can exist in a number of alternative base-pairing configurations. However, its interaction with the 3'-terminal segment of 18-S rRNA at the site of maximal complementarity would fix the mRNA configuration in such a way as to bring the possible site of ribosome binding near the initiation codon.

Adrenocorticotropic Hormone↗