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A Isogai

Publications and source records attributed to A Isogai.

At least 73 records · Page 4Linked to original sources

cDNA cloning and sequence determination of the pheromone biosynthesis activating neuropeptide of the silkworm, Bombyx mori.

We have identified the cDNAs encoding pheromone biosynthesis activating neuropeptide (PBAN) using PCR technique. The nucleotide sequence showed that the PBAN gene encodes, besides PBAN, diapause hormone and three putative amidated peptides. These four peptides share with PBAN the C-terminal pentapeptide amide which is corresponding to the shortest fragment with pheromonotropic activity. The organization of the PBAN gene is characteristic of several short neuropeptides and has some degree of similarity to that of the gene for the insect neuropeptide FMRFamide. Thus, the PBAN gene products construct a family of structurally related peptides and have various biological functions.

Amino Acid Sequence↗

Synthesis of bombyxin-IV, an insulin superfamily peptide from the silkworm, Bombyx mori, by stepwise and selective formation of three disulfide bridges.

We report the synthesis of bombyxin-IV, a disulfide-linked, heterodimeric, insulin superfamily peptide from the silkworm, Bombyx mori. The two chains (A- and B-chains) were synthesized separately by the solid-phase method using fluoren-9-ylmethoxycarbonyl (Fmoc) group as a protecting group for alpha-amino group. Three disulfide bonds were bridged step by step (A6-A11, A20-B22, and A7-B10) in a good yield. Synthetic bombyxin-IV was identical with natural one with regard to the retention time on a reversed-phase column and the molecular weight measured by mass spectrometry. Circular dichroism (CD) spectrum of the synthetic bombyxin-IV was very similar to that of the natural one. The specific activity of synthetic bombyxin-IV is equal to that of natural one (0.1 ng/Samia unit). These results suggest that the synthetic bombyxin-IV has the tertiary structure identical with the natural peptide. Our method developed for synthesis of bombyxin-IV would be generally applicable to the synthesis of insulin-like heterodimeric peptides.

Amino Acid Sequence↗

Determination of disulfide bond arrangement in bombyxin-IV, an insulin superfamily peptide from the silkworm, Bombyx mori, by combination of thermolysin digestion of natural peptide and selective synthesis of disulfide bond isomers.

The mode of disulfide linkages in bombyxin-IV, an insulin superfamily peptide consisting of A- and B-chains, was determined as A6-A11, A7-B10, and A20-B22. An intermolecular bond of A20-B22 was identified by sequencing and mass spectrometric analysis of the fragments generated by thermolysin digestion of natural bombyxin-IV. The mode of the remaining two bridges was determined by chemical and selective synthesis of three possible disulfide bond isomers of bombyxin-IV. A- and B-chains were synthesized by solid-phase method, and three disulfide bonds were bridged stepwise and in a fully controlled manner. Retention time on reversed-phase high-performance liquid chromatography (HPLC), thermolysin digests, and biological activity of the synthetic [A6-A11, A7-B10, A20-B22-cystine]-bombyxin-IV revealed that it was identical with the natural bombyxin-IV. Two other isomers with respect to disulfide bond arrangement, [A6-A7, A11-B10, A20-B22-cystine]- and [A6-B10, A7-A11, A20-B22-cystine]-bombyxin-IVs, were distinguishable from the natural one by use of HPLC, thermolysin digestion, and bioassay.

Amino Acid Sequence↗

A dammarane saponin from Neoalsomitra integrifoliola.

Neoalsoside A, a new dammarane saponin, was isolated from Neoalsomitra integrifoliola and characterized as 12 beta, 23 beta, 25-trihydroxy-(20S)(24S)-epoxydammarane 3-O-alpha-L-rhamnosyl(1----2)-alpha -rhamnosyl(1---- 3)-beta-D-glucoside.

Carbohydrate Sequence↗

Structural elucidation of minor components of peptidyl antibiotic P168s (leucinostatins) by tandem mass spectrometry.

Tandem mass spectrometry with a four-sector type mass spectrometer was used to elucidate the structures of minor components of the peptidyl antibiotic P168s (leucinostatins). As N-terminal fragments, ions by B-type cleavage were dominant, while V-type cleavages were observed along with X, Y, and Z types as C-terminal ions. The V-type ions were predominant in the cleavages of the amino terminals of leucyl and hydroxyleucyl residues. The structures of several minor components could be deduced from the tandem mass spectra.

Amino Acid Sequence↗

C-terminal identification of AD74, a proteolytic product of Enterococcus faecalis aggregation substance: application of liquid chromatography/mass spectrometry.

Sexual aggregation involved in conjugative transfer of Enterococcus faecalis plasmid pAD1 is enhanced by the sex pheromone cAD1, which is excreted from recipient cells. A membrane-anchored 137 kDa protein is a pAD1-encoded aggregation substance designated asal, which is responsible for cell-cell contact and leads to the aggregation of cells. An AD74 protein is a proteolytic product corresponding to the N-terminal half of asal. The C-terminal of AD74 was identified as lysine at position 510 (K-510) by liquid chromatography/mass spectrometry (LC/MS): it indicates that asal is cleaved specifically between K-510 and G-511.

Amino Acid Sequence↗

Prothoracicotropic hormone of the silkworm, Bombyx mori: amino acid sequence and dimeric structure.

Prothoracicotropic hormone (PTTH) of the silkworm, Bombyx mori, was purified and its primary structure determined for the most part. From sodium dodecyl sulfate-polyacrylamide gel electrophoresis of the purified PTTH under non-reducing and reducing conditions, and the amino acid sequence and composition analyses of the carboxamidomethylated PTTH, we concluded that Bombyx PTTH has a dimeric structure consisting of two identical, or nearly identical subunits, held together by disulfide bond(s). There exist subunit variants that differ by deletion of only a few amino acid residues at the N-terminus, and possibly at the C-terminus also, giving rise to a high heterogeneity in the PTTH molecule. The amino acid sequence up to the 104th residue from the N-terminus of the longest subunit, except for the 41st residue, was determined by sequence analysis of fragment peptides produced by lysyl endopeptidase, chymotrypsin and V8 protease digestions, leaving only a short C-terminal sequence undetermined. Bombyx PTTH is expected to contain a carbohydrate chain bound to an asparagine at position 41, deduced from the cDNA sequence.

Amino Acid Sequence↗

Amino acid sequence of pheromone-inducible surface protein in Enterococcus faecalis, that is encoded on the conjugative plasmid pPD1.

The major pheromone-inducible protein, PD78, believed to contribute to bacterial conjugation, was purified from Enterococcus (formerly Streptococcus) faecalis cells containing the plasmid pPD1. A cloned EcoRI-BglII 3.6-kbp fragment of the plasmid pAM351(pPdl::Tn916) contained an open reading frame corresponding to 467 amino acid residues representing PD78. In a central region of the deduced protein, there is a repeated sequence of X-X-Pro that is repeated 15 times. This is analogous to the Gln-Gln-Pro repeat in the C-terminal region of TraD product encoded on the R100 plasmid in Escherichia coli.

Amino Acid Sequence↗

Amino acid sequence of pheromone-inducible surface protein in Enterococcus faecalis, that is encoded on the conjugative plasmid pPD1.

The major pheromone-inducible protein, PD78, believed to contribute to bacterial conjugation, was purified from Enterococcus (formerly Streptococcus) faecalis cells containing the plasmid pPD1. A cloned EcoRI-BglII 3.6-kbp fragment of the plasmid pAM351 (pPD1::Tn916) contained an open reading frame corresponding to 467 amino acid residues representing PD78. In a central region of the deduced protein, there is a repeated sequence of X-X-Pro that is repeated 15 times. This is analogous to the Gln-Gln-Pro repeat in the C-terminal region of TraD product encoded on the R100 plasmid in Escherichia coli.

Amino Acid Sequence↗

Eclosion hormone of the silkworm Bombyx mori. Expression in Escherichia coli and location of disulfide bonds.

A gene encoding eclosion hormone (EH) from the silkworm, Bombyx mori was chemically synthesized, inserted into a secretion vector and expressed in Escherichia coli, leading to the production of biologically active EH. Sequence analysis of cystine-containing peptides in a thermolysin digest of this EH established the locations of 3 disulfide bonds in the molecule. Evidence was also obtained that the 6 residues at the NH2-terminal are dispensable but 4 residues at the COOH-terminal play an important role in EH activity.

Amino Acid Sequence↗

Structure of cCF10, a peptide sex pheromone which induces conjugative transfer of the Streptococcus faecalis tetracycline resistance plasmid, pCF10.

The peptide pheromone, cCF10, which induces aggregation and high frequency plasmid transfer in Streptococcus faecalis cells carrying the tetracycline resistance plasmid, pCF10, was isolated and its structure determined. The molecular weight of cCF10 is 789, and its amino acid sequence is H-Leu-Val-Thr-Leu-Val-Phe-Val-OH. Pheromone activity, as determined by a clumping induction assay, was detectable at a concentration of 2.5 x 10(-11) M. A peptide of the same sequence as that of the cCF10 produced by S. faecalis cells was synthesized by the liquid-phase method. The synthetic pheromone showed biological activity and chromatographic behavior that was identical to that of the cCF10 of bacterial origin. When the response of S. faecalis cells to various concentrations of synthetic cCF10 was monitored by measuring both the frequency of plasmid transfer and the synthesis of pheromone-inducible antigens, an excellent correlation was observed between donor ability and the appearance of a 150-kilodalton protein that appears to be involved in formation of mating aggregates. The dose-response data in the range of concentrations where the amount of pheromone became limiting (10(-11)-10(-12) M) were consistent with the notion that as few as one or two molecules per donor cell may be sufficient to induce a mating response.

Amino Acid Sequence↗