Search PubMed⌕ Search

Biomedical subjects

S Aimoto

Publications and source records attributed to S Aimoto.

At least 91 records · Page 5Linked to original sources

Inhibitory effects of synthetic histidine-rich peptides on haemagglutination by Bacteroides gingivalis 381.

The haemagglutinating activity of Bacteroides gingivalis 381 was significantly inhibited by the synthetic peptide, Asp-Ser-His-Ala-Lys-Arg-His-His-Gly-Tyr-Lys-Arg-Lys-Phe-His- Glu-Lys-His-His-Ser-His-Arg-Gly-Tyr. However, bradykinin potentiator C, which does not contain cationic amino acids such as L-histidine, L-arginine and L-lysine, had no inhibitory effect.

Amino Acid Sequence↗

Long-term enhancement of synaptic transmission by synthetic mast cell degranulating peptide and its localization of binding sites in hippocampus.

A bee venom, mast-cell-degranulating (MCD) peptide, was synthesized by stepwise formation of the two disulfide bridges. This synthetic MCD peptide induced long-term potentiation (LTP) in the CA1 region of a hippocampus slice at concentrations ranging from 10(-7) to 10(-5) M. The potentiating effect of MCD was not lost by biotinylation of its N-terminus, and thus it became possible to investigate localization of its binding site at a cellular level in the hippocampus slice at a LTP-inducible concentration (1 microM). We found that even after brief application of N-biotinyl-MCD (1 microM) to perfusate, its presence was observed in pyramidal cell bodies in the CA1 and CA3 regions, but not in granule cells in the dentate gyrus of the hippocampus slice. This observation does not coincide with the localization of its high-affinity binding sites revealed by 125I-MCD binding, suggestive that another type(s) of MCD binding site, such as low-affinity binding sites, are present in the hippocampus.

Animals↗

Purification and characterization from human parotid secretion of a peptide which inhibits hemagglutination of Bacteroides gingivalis 381.

A peptide from human parotid secretion which inhibited hemagglutination of Bacteroides gingivalis 381 was purified by ultrafiltration followed by DEAE-Sephadex A-25 column chromatography and by gel filtration on Sephadex G-25, and then by reversed-phase HPLC. The complete amino acid sequence of the peptide, determined by automated Edman degradation was as follows; Lys-Phe-His-Glu-Lys-His-His-Ser-His-Arg-Gly-Tyr. The peptide contained 12 residues and the charged amino acids predominated with 4 histidine, 2 lysine, 1 arginine and 1 glutamic acid residues, thus being a histidine-rich peptide. The peptide was an active inhibitor of the hemagglutinating activity of B. gingivalis. Specific binding of tritium-labeled peptide to B. gingivalis cells was demonstrated. These results suggest that the histidine-rich peptide may function as a binding domain for the hemagglutinins of B. gingivalis during agglutination.

Amino Acid Sequence↗

Studies on the disulfide bridges of sarafotoxins. Chemical synthesis of sarafotoxin S6B and its homologue with different disulfide bridges.

Sarafotoxin S6b, a strong vasocontractile peptide with 21 amino acid residues containing two sets of disulfide bridges, was chemically synthesized. The retention time on a reversed-phase HPLC, lethal and vasocontractile activities of natural sarafotoxin S6b agree with those of the synthetic [Cys1-15, Cys3-11]-sarafotoxin S6b. The combination of the disulfide bridges of sarafotoxin S6b is the same as that of endothelin-1, a mammalian vasocontractile peptide, which shows a high degree of sequence homology and shares several common pharmacological properties with sarafotoxins.

Amino Acid Sequence↗

Structure-receptor binding relationships of sarafotoxin and endothelin in porcine cardiovascular tissues.

The specific binding of 125I-sarafotoxin S6b was observed in the microsomal fractions from porcine thoracic aorta, and two vasoconstrictive peptides with strikingly homologous structures, sarafotoxin (SRT) and endothelin (ET), interact with a common receptor of the vasculature. The order of the potency of an each endothelin or sarafotoxin analogue as a competitor against 125I-sarafotoxin S6b binding was ET-1 greater than ET-2 greater than SRT S6b greater than ET-3 much greater than SRT S6c. The hydrophobic carboxyl-terminal tail and intramolecular disulfide bridges are essential for the binding activity. In addition, Ser4, Ser5 and Lys9 seem to be important for the activity while the 6th residue does not affect the activity.

Amino Acid Sequence↗

113Cd-NMR evidence for cooperative interaction between amino- and carboxyl-terminal domains of calmodulin.

113Cd-NMR experiments were performed to characterize the nature of Cd2+ binding to calmodulin in the presence of a tetradecapeptide mastoparan or a 26-residue peptide M13 (calmodulin-binding region of skeletal muscle myosin light-chain kinase). The results indicate that binding of these peptides to calmodulin induces a positive cooperativity between Ca2+ binding to C- and N-terminal domains. The results imply that the activation of myosin light-chain kinase caused by the increase in Ca2+ concentration occurs as a result of cooperative interactions not only between two Ca2+ binding sites in each domain but also between the two domains. The interdomain interaction manifests itself only in the presence of such peptides.

Animals↗

Mode of disulfide bond formation of a heat-stable enterotoxin (STh) produced by a human strain of enterotoxigenic Escherichia coli.

To determine the modes of three disulfide linkages in the heat-stable enterotoxin (STh) produced by a human strain of enterotoxigenic Escherichia coli, we synthesized STh(6-18), which consists of 13 amino acid residues and has the same intramolecular disulfide linkages as native STh [(1985) FEBS Lett. 181, 138-142], by stepwise and selective formation of disulfide bonds using different types of removable protecting groups for the Cys residues. Synthesis of the peptide with different modes of disulfide bond formation provided three peptides consistent with standard STh(6-18) in their physicochemical and biological properties, thereby indicating that the disulfide bonds in STh(6-18) are Cys-Cys-Glu-Leu-Cys-Cys-Asn-Pro-Ala-Cys-Thr-Gly-Cys.

Animals↗

Crystal and molecular structure of cyclo(L-prolyl-glycyl)3. A cyclic hexapeptide with a cis peptide bond.

The crystal structure of cyclo(L-Pro-Gly)3 was solved using X-ray crystallographic techniques. The backbone of the peptide is asymmetric and is made up of five trans peptide units and one cis peptide. There is a hydrogen bonded water bridge that links the carbonyl oxygens, O1 and O4. The molecules exist as dimers in the crystal lattice. The two molecules of the dimer are related by crystallographic twofold symmetry and are linked by two N-H ... O hydrogen bonds. The crystals are trigonal, space group P3(2)12 with a = 11.379(3), c = 32.93(1) and z = 6. The structure was solved by multisolution methods and refined by least squares technique to an R of 0.083.

Models, Molecular↗

Calcium binding cyclic hexapeptide. Crystal structure of cyclo-(L-prolyl-glycyl)3 calcium complex.

The synthetic cyclic hexapeptide (L-prolyl-glycyl)3 forms a 2:1 complex with Ca2+ ion. The cation is sandwiched between the two peptide molecules. The glycyl carbonyls from each of the peptides are octahedrally coordinated to the cation with an average calcium oxygen coordination distance of 2.26A. Both the molecules coordinating to the calcium ion have three fold symmetry, but show significant conformational differences. In one of the peptides of the sandwich, the alternate carbonyls point to the opposite sides of the peptide ring while in the other, all the six carbonyls point to the same side of the ring. Three NH ... O hydrogen bonds between the peptides add to the stability of the sandwich.

Calcium↗

Essential structure for full enterotoxigenic activity of heat-stable enterotoxin produced by enterotoxigenic Escherichia coli.

Several analogues of heat-stable enterotoxins (STh and STp) produced by enterotoxigenic Escherichia coli were synthesized. Peptides (STh[6-18] and STp[5-17]) consisting of 13 amino acid residues from the Cys residue near the N-terminus to the Cys residue near the C-terminus and linked by three disulfide bonds had the same biological and immunological properties as native STh and STp, respectively. The results indicated that the sequence with the 13 amino acid residues and three disulfide linkages is essential for full biological activity of ST.

Amino Acid Sequence↗

Chemical synthesis of a highly potent and heat-stable analog of an enterotoxin produced by a human strain of enterotoxigenic Escherichia coli.

A shorter analog of a heat-stable enterotoxin produced by a human strain of enterotoxigenic Escherichia coli SK-1, consisting of 14 amino acid residues including 6 half-cystine residues, was synthesized by conventional methods. The peptide was evaluated for ability to induce intestinal secretion in suckling mice and for stability at high temperature under various conditions. The peptide was 2-5 times more potent than native toxin and was still toxic after heat-treatment at 120 degrees C for 30 min.

Amino Acid Sequence↗

Amino acid sequence of a heat-stable enterotoxin isolated from enterotoxigenic Escherichia coli strain 18D.

A heat-stable enterotoxin produced by a strain of enterotoxigenic Escherichia coli 18D was purified by ion-exchange and reversed-phase high-pressure liquid chromatography. The amino acid sequence of the purified toxin was determined by Edman-degradation and a combination of fast atom bombardment mass spectrometry and carboxypeptidase digestion to be Asn-Thr-Phe-Tyr-Cys-Cys-Glu-Leu-Cys-Cys-Asn-Pro-Ala-Cys-Ala-Gly-Cys-Tyr.

Amino Acid Sequence↗

Amino-acid sequence of a heat-stable enterotoxin produced by human enterotoxigenic Escherichia coli.

A heat-stable enterotoxin produced by a human strain of enterotoxigenic Escherichia coli was extensively purified by reverse-phase high-performance liquid chromatography. The minimum effective dose of the purified toxin to cause fluid accumulation in suckling mice was 2.5 ng. The amino acid sequence of the purified toxin was determined by Edman degradation and a combination of fast atom bombardment mass spectrometry and carboxypeptidase digestion to be Asn-Ser-Ser-Asn-Tyr-Cys-Cys-Glu-Leu-Cys-Cys-Asn-Pro-Ala-Cys-Thr-Gly-Cys-Tyr. This sequence was identical to that deduced from the nucleotide sequence encoding a human heat-stable enterotoxin, reported by Moseley et al., except for the C-terminal Tyr residue.

Amino Acid Sequence↗

Conformation of cyclo(-L-Pro-Gly-)(3) and its Ca and Mg complexes.

The synthetic hexapeptide cyclo(-L-Pro-Gly-)(3) is an ionophore that shows interesting conformational changes upon binding metal ions. X-ray crystallographic studies of this peptide show that when it is crystallized from an ethanol/ethyl acetate mixture the ring takes up an asymmetric conformation containing one cis peptide bond. In crystals of a Ca(2+) complex, the cation is sandwiched between two peptide molecules that differ markedly in conformation. However, both exhibit threefold symmetric forms, with all six peptide bonds in the molecule occurring in the usual trans conformation. The Ca(2+) is octahedrally surrounded by six glycyl carbonyl oxygens from the two peptides at an average distance of 2.26 A and can easily be released by the disruption of the peptide sandwich. In the magnesium complex, the peptide forms a 1:1 complex with the ion. The Mg(2+) is octahedrally coordinated to three glycyl carbonyls and three water oxygens. The average coordination distance between magnesium and the peptide oxygens is 2.03 A and that between magnesium and water oxygen is 2.11 A. The two peptide molecules in the asymmetric unit have similar conformations and have approximate threefold symmetry.

Journal Article↗