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Biomedical subjects

N Sugimoto

Publications and source records attributed to N Sugimoto.

At least 19 recordsLinked to original sources

Calmodulin is involved in catecholamine secretion from digitonin-permeabilized bovine adrenal medullary chromaffin cells.

The role of calmodulin in exocytotic secretion was studied using digitonin-permeabilized bovine adrenal medullary chromaffin cells. Addition of calmodulin to the permeabilized cells increased Ca(2+)-dependent norepinephrine release in a dose-dependent manner. Unlike calmodulin, addition of caldesmon, actin or bovine serum albumin did not increase the release. Calmodulin increased the release at Ca2+ concentrations of more than 10(-6) M and its effect increased with increase in Mg2+ concentration. Th release of norepinephrine enhanced by calmodulin was inhibited by tetanus toxin, which specifically inhibits exocytotic secretion. These results indicate directly that calmodulin plays an important role in exocytotic secretion from chromaffin cells.

Actins

Characteristics of toxin-neutralization by anti-tetanus human monoclonal antibodies directed against the three functional domains [A], [B] and [C] of the tetanus toxin molecule and a reliable method for evaluating the protective effects of monoclonal antibodies.

Five anti-tetanus human monoclonal antibodies (MAbs) produced by hybrid cell lines we established previously were characterized. Their abilities to neutralize tetanus toxin in vitro and to protect mice against challenge with toxin were studied by observing the changes in the progress of symptoms in mice. Immunostaining showed that MAbs MAb-G4 and G2 recognized the N-terminal domain, [A] and the C-terminal domain, [C] of the tetanus toxin molecule, respectively, while MAbs MAb-G1, G3 and G6 recognized its middle domain, [B]. Enzyme-linked immunosorbent assay showed that the binding affinity of MAb-G3 was 2.9 x 10(10) M-1 and those of the other MAbs were as high as approximately 10(11) M-1. In in vitro neutralization experiments, at sufficient doses all the MAbs as single reagents protected mice completely against the effect of tetanus toxin. However, at lower doses than those sufficient to rescue mice, the kinetic patterns of progress of symptoms with the individual MAbs differed with each other and, except for MAb-G4, were different from that of anti-tetanus human polyclonal antibody. They suppressed the development and/or slowed the rate of progress of symptoms for over 96 h and delayed death of the mice. We propose that the comparison of the minimum survival dose with that of human polyclonal antibody of known international units is a reliable method for estimating the actual protective activity of a MAb. Intravenous (IV) injection of doses of individual MAbs or their mixtures at over 0.03 IU per mouse protected mice from subsequent challenge with 20 MLD of tetanus toxin.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Inhibition of neuromuscular transmission in isolated mouse phrenic nerve-diaphragm by the enterotoxin of Clostridium perfringens type A.

The enterotoxin of Clostridium perfringens type A, a channel forming protein toxin, inhibited neuromuscular transmission under conditions of low calcium. Twitch tension of isolated phrenic nerve-diaphragm preparations elicited by electrical stimulations to the phrenic nerve was recorded isometrically, and the preparations were exposed to the purified enterotoxin. In Krebs solution containing 0.5 mM calcium, the enterotoxin (20 micrograms/ml) reduced within 10 min the amplitude of the twitch tension to 34 +/- 7% (mean +/- S.D., n = 11) of that recorded before the treatment. The effects of the enterotoxin on the twitch tension were irreversible and proceeded independently of stimulation. The reduction of the twitch tension by the enterotoxin was apparent in Krebs solution containing less than 0.6 mM calcium and the degree of reduction was inversely related to the concentration of calcium. The reduction of the twitch tension by the enterotoxin was also dependent on temperature and concentration of the toxin. At temperatures below 20 degrees C, no obvious reduction of twitch tension was observed with 20 micrograms/ml of the enterotoxin. Enterotoxin at a concentration of 0.4 micrograms/ml caused 16 +/- 2% (mean +/- S.D., n = 4) reduction of twitch tension, and the degree of the reduction in twitch tension increased with toxin concentration, reaching a plateau of 65 +/- 4% (mean +/- S.D., n = 7) at 6.5 micrograms/ml of the enterotoxin. The effects of the enterotoxin were antagonized by 2 microM physostigmine. Unlike curare, pretreatment of the preparation with enterotoxin did not antagonize the neuromuscular block by decamethonium. Neither the tension of muscular twitch elicited by direct electrical stimulation to the muscle nor the resting membrane potentials of muscle fibers recorded intracellularly were affected by the enterotoxin. The enterotoxin (2.2 micrograms/ml) reduced the frequency, but not mean amplitude or amplitude distribution, of miniature end-plate potentials, from 0.91 +/- 0.07/sec to 0.72 +/- 0.07 (mean +/- S.E., n = 5). The results suggest that the enterotoxin will provide a novel tool for the studies on the mechanism of the neuromuscular transmission because of the unique characteristics of the inhibition and of the known mechanism of its action on the cell membrane.

Animals

Production, purification, and characterization of botulinolysin, a thiol-activated hemolysin of Clostridium botulinum.

A hemolysin, botulinolysin, produced by Clostridium botulinum was purified to homogeneity and characterized. First, a strain of C. botulinum type C, strain C-203 Tox, which produced a large amount of hemolysin, was selected, and optimal culture medium and conditions for its production of hemolysin were determined. The hemolysin produced in the culture supernatant of this strain under optimal conditions was purified by a combination of ammonium sulfate precipitation, DEAE-Sepharose CL-6B column chromatography, Sephadex G-75 gel permeation chromatography, and SP-Toyopearl 650 M cation-exchange column chromatography, with a recovery of 12%. The purified hemolysin gave a single protein band in polyacrylamide gel electrophoresis (PAGE) with and without sodium dodecyl sulfate (SDS). The protein in this band in PAGE with SDS was estimated to have a molecular weight of 58,000 and was immunostained with a neutralizing monoclonal antibody. In PAGE without SDS, the hemolytic activity corresponded in position to the single protein band. The pI of the hemolysin was 8.4. Amino acid analysis of the purified hemolysin indicated the presence of four half-cystine residues per molecule. The purified hemolysin had a specific activity of 2,100 hemolytic units per microgram of protein on rabbit erythrocytes. It was activated by SH compounds, inhibited by cholesterol, and heat labile. The optimum pH for hemolysis was 6.0 to 7.0. Rabbit, human, and guinea pig erythrocytes were the most susceptible to the hemolysin, while sheep, mouse, rat, and chicken erythrocytes were much less susceptible. The purified hemolysin had a lethal effect in mice and was cytotoxic for some cultured cells: its 50% lethal dose in mice was 310 ng, and its 50% cytotoxic dose for Vero cells was 120 ng/ml.

Amino Acids

Substitution of non-catalytic stem and loop regions of hammerhead ribozyme with DNA counterparts only increases KM without sacrificing the catalytic step (kcat): a way to improve substrate-specificity.

In elucidating structure-function relationships and stabilizing ribozymes in vivo, several chimeric RNA/DNA ribozymes and substrates were chemically synthesized. Measurements of kinetic parameters revealed that the maximally deoxyribonucleotide-substituted ribozyme (DRDRD32) gained the highest catalytic activity reaching the kcat value of > 10 min-1, the highest value ever reported for hammerhead-type ribozymes. Since these chimeric ribozymes are more stable than the wild-type all-RNA ribozymes in vivo and they also possess higher substrate-specificity, they are considered to be better candidates for antiviral therapeutic agents.

Base Sequence

Kinetics and thermodynamics of double-helix formation of self-complementary deoxyribooctanucleotides d(TCTATAGA) and d(TAGATCTA).

Double-helix formation of self-complementary deoxyribooctanucleotides, d(TCTATAGA) and d(TAGATCTA), with identical nearest neighbor base pairs has been studied by means of UV melting and temperature-jump techniques. The self-complementary duplexes of both octanucleotides with identical nearest neighbors had similar stabilities: The stabilization energies of the octanucleotides at 25 degrees C were 5.8 kcal mol-1 for d(TCTATAGA) and 6.7 kcal mol-1 for d(TAGATCTA). On the kinetic curve the melting reactions finished within 20 ms for d(TCTATAGA) and 40 ms for d(TAGATCTA) at 20 degrees C. For both octanucleotides the rate constants of dissociation increased and the rate constants of association decreased with increasing temperature.

Deoxyribonucleotides

Double-helix formation of self-complementary chimeric oligonucleotides r(CG)nd(CG)3-n (n = 0, 1, 2, 3).

Double-helix formations of self-complementary chimeric hexanucleotides, r(CGCGCG), r(CGCG)d(CG), r(CG)d(CGCG), and d(CGCGCG), have been studied spectrophotometrically an thermodynamically in 1 mol dm-3 NaCl buffer. CD (circular dichroism) spectra showed that r(CGCGCG), r(CGCG)d(CG), and r(CG)d(CGCG) formed A-type double helix, while d(CGCGCG) formed B-type double helix. The stabilization energies of these helices at 37 degrees C obtained from UV melting analyses were 9.2 kcal mol-1 for r(CGCGCG), 8.2 kcal mol-1 for r(CGCG)d(CG), 6.8 kcal mol-1 for r(CG)d(CGCG), and 8.5 kcal mol-1 for d(CGCGCG), respectively.

Chimera

Action of 5-trifluoromethyl-2'-deoxyuridine on DNA synthesis.

The action of 5-trifluoromethyl-2'-deoxyuridine (CF3dUrd) on DNA synthesis was investigated in vitro assay systems with purified DNA polymerases. CF3dUrd was incorporated into the DNA of mammalian cells in culture. We studied the incorporation of CF3dUrd 5'-triphosphate (CF3dUTP) into DNA and effect of CF3dUrd residue on DNA synthesis. Therefore, we synthesized oligonucleotides that allow site specific introduction of a CF3dUrd residue into a synthetic DNA oligonucleotide. After CF3dUTP incorporation, the primer was extended for human DNA polymerase alpha (pol. alpha). When CF3dUrd residue was located at an internucleotide site in the template, however, pol. alpha was exhibited a strong arrest band one nucleotide after the CF3dUrd residue site, and Escherichia coli polymerase I (Klenow fragment) also exhibited a weaker arrest band one nucleotide before the CF3dUrd residue. These results suggested that a mechanism of antitumor activity of CF3dUrd is inhibition of DNA replication.

Base Sequence

[A case of diffuse large cell lymphoma treated with combination chemotherapy of CHOP (cyclophosphamide, doxorubicin, vincristine, prednisolone) and BEMP (bleomycin, etoposide, mitoxantrone, procarbazine) with complete remission].

A 73-year-old man with diffuse large cell lymphoma was treated with noncross resistant alternating combination chemotherapy of CHOP and BEMP, consisting of cyclophosphamide (1,000 mg/body, i.v., day 1), doxorubicin (60 mg/body, i.v., day 1), vincristine (2 mg/body, i.v., day 1), prednisolone (100 mg/body, p.o., day 1-5), bleomycin (30 mg/body, i.v., day 22), etoposide (80 mg/body, i.v., day 22-24), mitoxantrone (6 mg/body, i.v., day 22), and procarbazine (100 mg/body, p.o., day 22-26). Following the three courses' administration of CHOP and BEMP, complete remission was obtained with a remission duration of over ten months. Leukocytopenia was a dose-limiting factor. It is concluded that noncross resistant alternating combination chemotherapy of CHOP and BEMP is effective for diffuse large cell lymphoma.

Administration, Oral

Computer-aided interpretation of coronary cineangiograms. Accuracy of automatic detection of stenotic lesions.

To accurately diagnose stenotic lesions on coronary cineangiograms, an automatic detection method using computer image processing was developed. We evaluated its accuracy by comparing the results of computer-aided interpretation (CAI) with those obtained independently by 3 observers. Evaluation was performed on 129 segments from 27 arteries visualized on angiograms obtained in 18 patients. The detection rates of stenosis of the 3 observers by pure visual interpretation were 7.0%, 27.9%, and 17.1%, and using CAI 40.0%, 42.6%, and 47.3%. By computer recognition alone, a detection rate of 51.9% was achieved. The agreement by at least 2 observers (consensus) on the sites with lesions was 41.1% while the consensus of computer recognition regarding the sites with lesion was 40.3%. Therefore, our findings indicated that computer recognition of cineangiograms is likely to result in overdetection of lesions. However, all 3 observers detected stenotic lesions better with CAI than with pure visual interpretation. Accordingly, CAI may improve the reliability of cineangiographic diagnosis.

Arterial Occlusive Diseases

Thermodynamic study of internal loops in oligoribonucleotides: symmetric loops are more stable than asymmetric loops.

Thermodynamic parameters for internal loops of unpaired adenosines in oligoribonucleotides have been measured by optical melting studies. Comparisons are made between helices containing symmetric and asymmetric loops. Asymmetric loops destabilize a helix more than symmetric loops. The differences in free energy between symmetric and asymmetric loops are roughly half the magnitude suggested from a study of parameters required to give accurate predictions of RNA secondary structure [Papanicolaou, C., Gouy, M., & Ninio, J. (1984) Nucleic Acids Res. 12, 31-44]. Circular dichroism spectra indicate no major structural difference between helices containing symmetric and asymmetric loops. The measured sequence dependence of internal loop stability is not consistent with approximations used in current algorithms for predicting RNA secondary structure.

Base Sequence

Pathodynamics of intoxication in rats and mice by enterotoxin of Clostridium perfringens type A.

The pathodynamics of lethal intoxication in rats and mice by i.v. administration of enterotoxin of Clostridium perfringens type A was studied using whole animals and isolated organs. A lethal i.v. dose (50 micrograms/kg) of enterotoxin killed anesthetized rats and mice within 4-15 min. Rapid changes of ECG pattern suggestive of hyperpotassemia, rapid fall of blood pressure and transient hyperpnea followed by respiratory depression were observed. Analysis of plasma levels of cations revealed hyperpotassemia in both animal species. On the other hand, enterotoxin (up to 100 micrograms) showed little direct cardiotoxicity on the isolated heart. ECG changes produced by i.v. injection of KCl (0.5 ml of 50 mM) mimicked the ECG changes observed in the intoxicated rats injected with a lethal dose of enterotoxin. Perfusion of rat isolated organs showed that potassium concentration in the eluent from the liver (but not lungs or lower extremities) increased markedly within 1-2 min after the administration of enterotoxin. The amount of potassium liberated from a rat liver was about 133 mumoles, which is sufficient to increase the plasma level of potassium to more than 10 mM. In addition to potassium, cytoplasmic enzymes, such as glutamate oxalacetate transaminase, glutamate pyruvate transaminase and lactate dehydrogenase, were also liberated from the intoxicated liver, indicating that potassium was liberated from hepatocytes by the change in membrane permeability produced by enterotoxin. It is concluded that hyperpotassemia elicited by the cytotoxic action of enterotoxin on hepatocytes caused cardiac failure leading to the death of the intoxicated animals.

Animals

Growth inhibition of tumour cells by a liposome-encapsulated, mycolic acid-containing glycolipid, trehalose 2,3,6'-trimycolate.

In vivo growth of syngeneic tumour cells in the peritoneal cavity was strongly inhibited by intraperitoneal injection of a liposome-encapsulated, mycolic acid-containing glycolipid, trehalose 2,3,6'-trimycolate (TTM), derived from a non-pathogenic, acid-fast bacterium. Gordona aurantiaca. Peritoneal macrophages from mice after this treatment lysed tumour cells in vitro at a low effector/target ratio, and their culture supernatant inhibited tumour cell growth. The supernatant inhibited growth of not only tumour necrosis factor (TNF)-sensitive tumour cells, but also TNF-insensitive tumour cells. This inhibitory activity was enhanced by addition of lipopolysaccharide (LPS) to the culture medium of the macrophages. The macrophages released more superoxide (O2-), TNF and interleukin-1 (IL-1) on LPS triggering, and the releases of these compounds were further increased by addition of recombinant interferon-gamma (IFN-gamma) to the medium. Moreover, splenic T cells of TTM liposome-primed mice were found to produce eight times more IFN-gamma upon stimulation with LPS. These results indicated that priming with TTM liposomes resulted in strong activation of macrophages, which lysed tumour cells directly and also inhibited tumour cell growth by released factors.

Animals

Effect of the third-strand length on the formation of DNA triple helix.

The triple-helix formation of octadeoxyribonucleotides, (dA)8 and (dT)8, and a shorter oligonucleotide, (dT)n (n; 4, 5, 6, or 7) has been studied by UV and CD measurements. The results showed that the third strand, (dT)5, (dT)6, or (dT)7 can bind to the double helix of (dA)8.(dT)8 at 50 mmol dm-3 MgCl2 though (dT)4 can not bind at the same concentration of the salt.

Circular Dichroism