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S Inouye

Publications and source records attributed to S Inouye.

At least 289 records · Page 16Linked to original sources

Structural characterization of a follicle-stimulating hormone action inhibitor in porcine ovarian follicular fluid. Its identification as the insulin-like growth factor-binding protein.

Recently, an inhibitory polypeptide that could block the follicle-stimulating hormone-induced estradiol and progesterone production in rat ovary granulosa cells has been isolated from porcine ovarian follicular fluid. Amino-terminal sequence analysis of the purified inhibitor suggests that it could be the porcine congener of the 53-kDa subunit of the growth hormone-dependent insulin-like growth factor binding protein (IGF-BP3). Using amino acid sequence information derived from the purified inhibitor to construct oligonucleotide probes, we have now identified the complementary deoxyribonucleic acids (cDNAs) encoding the inhibitory polypeptide from a porcine liver and a porcine ovary library. The nucleotide and predicted amino acid sequences revealed that the cDNAs indeed encode the porcine homolog of the recently characterized human IGF-BP3. The mature polypeptide consists of 266 amino acids, which is 2 amino acids longer than the human sequence. Between the two species, there are 42 amino acid substitutions, but the 18 cysteines and the three Asn-linked glycosylation sites are totally conserved. A single mRNA species of 2.6 kilobases encoding the IGF-BP3 was detected in porcine gonadal, brain, and liver tissues by Northern analysis.

Amino Acid Sequence↗

Aflatoxin B1-specific cytochrome P-450 isozyme (P-450-AFB) inducible by 3-methylcholanthrene in golden hamsters.

Hepatic microsomes of polychlorinated biphenyl (PCB)-treated Syrian Golden hamsters possessed a higher potency toward aflatoxin B1 activation, based on the Ames test, than other animal species. This activity was induced in hamsters preferentially by treatment with 3-methylcholanthrene rather than phenobarbital. The contribution of an isozyme of cytochrome P-450 (P-450-AFB) to the activity of hamster livers for aflatoxin B1 was studied. P-450-AFB, purified from 3-methylcholanthrene-treated hamster livers, was shown to possess the highest activation of aflatoxin B1 in the Ames test. The quantification of this isozyme by a fluorometric sandwich enzyme-linked immunosorbent assay (ELISA) demonstrated that P-450-AFB was induced mainly in Syrian Golden hamsters but not in Chinese hamsters, or in other species. This isozyme constitutes approximately 40% of the total cytochrome P-450 of the hepatic microsomes from 3-methylcholanthrene-treated Golden hamsters but only 1% in the microsomes of phenobarbital-treated hamsters. Thus, we conclude that the high activity of Golden hamster livers towards aflatoxin B1 activation was due presumably to this distinct and unique cytochrome P-450 isozyme which was induced mainly by 3-methylcholanthrene in Golden hamsters.

Aflatoxin B1↗

Retron for the 67-base multicopy single-stranded DNA from Escherichia coli: a potential transposable element encoding both reverse transcriptase and Dam methylase functions.

The region (retron-Ec67) required for the biosynthesis of a branched-RNA-linked multicopy single-stranded DNA (msDNA-Ec67) from a clinical isolate of Escherichia coli was mapped at a position equivalent to 19 min on the K-12 chromosome. The element containing the retron consisted of a unique 34-kilobase sequence that was flanked by direct repeats of a 26-base-pair sequence found in the K-12 chromosomal DNA. This suggests that the 34-kilobase element was probably integrated into the E. coli genome by a mechanism related to transposition or phage integration. In the 34-kilobase sequence an open reading frame of 285 residues was found, which displays 44% sequence identity with the E. coli Dam methylase. Interestingly, there are three GATC sequences, the site of Dam methylation, in the promoter region of the gene for reverse transcriptase.

Amino Acid Sequence↗

Two independent retrons with highly diverse reverse transcriptases in Myxococcus xanthus.

A reverse transcriptase (RT) was recently found in Myxococcus xanthus, a Gram-negative soil bacterium. This RT has been shown to be associated with a chromosomal region designated a retron responsible for the synthesis of a peculiar extrachromosomal DNA called msDNA (multicopy single-stranded DNA). We demonstrate that M. xanthus contains two independent, unlinked retrons, one for the synthesis of msDNA-Mx162 and the other for msDNA-Mx65. The structural analysis of the retron for msDNA-Mx65 revealed that the coding regions for msdRNA (msr) and msDNA (msd), and an open reading frame (ORF) downstream of msr are arranged in the same manner as found for the Mx162 retron. The ORF encodes a polypeptide of 427 amino acid residues. The amino-terminal domain (residues 1-138) shows no striking similarity to these proteins presently available in the data bases including the msDNA-Mx162 ORF, while the sequence from residues 139-394 can be aligned with various known RT sequences and has 47% identity with the RT domain of the msDNA-Mx162 ORF. On the basis of these findings, possible origins of two highly diverse retrons on the M. xanthus chromosome are discussed.

Amino Acid Sequence↗

Development-specific sigma-factor essential for late-stage differentiation of Myxococcus xanthus.

The gene for a developmentally expressed sigma-factor, sigB, has been isolated from Myxococcus xanthus by use of the sigA gene (formerly rpoD) of the vegetative sigma-factor as a probe. The sequence of sigB has been determined, and an open reading frame of 193 amino acid residues (Mr = 21,551) was identified. The amino-terminal region of SigB contains 69 residues, of which 35 are identical (50% identity) to the region of SigA required for core RNA polymerase binding and initiation of RNA polymerization. SigB also possesses many features commonly found in other prokaryotic sigma-factors. Analysis of an M. xanthus strain carrying a sigB-lacZ fusion gene revealed that sigB is expressed from a middle to late stage of differentiation corresponding to the period from the onset of sporulation to late development. A sigB deletion mutant displayed normal mound formation and sporulation; however, production of the ops gene product in myxospores of the delta sigB strain was shown to be blocked. Myxospores from the sigB deletion strain also exhibited severe defects in stability and viability during late development. Our data indicate that sigB encodes a sigma-factor essential for the maturation of myxospores at a late stage of M. xanthus differentiation. Our results also suggest that differentiation of M. xanthus is regulated by development-specific sigma-factors.

Amino Acid Sequence↗

Fecal IgA antibody responses after oral poliovirus vaccination in infants and elder children.

We investigated fecal IgA antibody responses after oral polyvalent poliovirus vaccination. Infants were given vaccines twice with an interval of 6 weeks. Specific IgA antibodies in the feces were determined by enzyme-linked immunosorbent assay, and viruses were isolated in tissue cultures. We found that, after the first vaccination, antibody responses seemed to be elicited only against the serotypes of isolated viruses. After the second vaccination, however, antibodies were detected to all three serotypes with higher titers, suggesting that the first vaccination induced the immunologic memory. The IgA antibodies had virus-neutralizing activity, and existed in the feces as both intact 11S and fragmented 4S molecules. Next, children were given the third vaccination 3 or 9 years later. Fecal IgA antibody responses were found to be poorer in elder children, while they responded with high serum neutralization titers. The secretory IgA memory seemed to last much shorter the serum IgG memory.

Adolescent↗

Identification of the second major allergen of Japanese cedar pollen.

We isolated and characterized the second major allergen (Cry j II) from Japanese cedar pollen. We found that most patients with this pollinosis had IgE antibody to this protein in addition to IgE antibody to Cry j I; however, some sera reacted only with Cry j I or Cry j II. IgE-ELISA inhibition studies revealed that Cry j I and Cry j II had no cross-allergenicity. Cry j II did not react with anti-Cry j I monoclonal antibodies. In SDS-PAGE under a non-reducing condition, Cry j II showed a band at the 37 kDa position, compared with the 45-50 kDa bands of Cry j I. N-terminal amino acid sequence of Cry j II was completely different from that of Cry j I.

Allergens↗

Cloning and DNA sequence of the gene coding for the major sigma factor from Myxococcus xanthus.

The gene for a sigma factor (rpoD) was cloned from Myxococcus xanthus, a soil bacterium which differentiates to form fruiting bodies upon starvation for nutrients. The DNA sequence of the gene was determined, and an open reading frame encoding a polypeptide of 708 amino acid residues (Mr = 80,391) was identified. Except for the amino-terminal sequence consisting of 100 residues, the M. xanthus sigma factor (sigma-80) showed extensive similarity with Escherichia coli sigma-70 as well as Bacillus subtilis sigma-43. In particular, the carboxy-terminal sequence of 242 residues that is known to be required for promoter recognition and core recognition showed 78 and 72% amino acid sequence identity with the E. coli and B. subtilis sigma factors, respectively. The putative RpoD protein was detected at the position of an apparent molecular weight of 86,000 by Western blot (immunoblot) analysis by using antiserum against B. subtilis sigma-43, which agreed well with the position of a vegetative sigma factor of M. xanthus previously identified by Rudd and Zusman (K. Rudd and D. R. Zusman, J. Bacteriol. 151:89-105, 1982).

Amino Acid Sequence↗

Phylogenetic distribution of branched RNA-linked multicopy single-stranded DNA among natural isolates of Escherichia coli.

Multicopy single-stranded DNA (msDNA), a branched DNA-RNA molecule, has been shown in Escherichia coli B and clinical strain Cl-1 to be synthesized by reverse transcriptase. We report that 13% of the strains of the ECOR collection, a sample of 72 E. coli isolates representing the breadth of genetic variation of the species, produce msDNA. Three of the four major subspecific groups include msDNA-producing strains. Screening of 25 isolates that are genetically related to msDNA-producing clinical strains uncovered 22 additional msDNA-producing strains. A phylogenetic tree based on allelic variation detected electrophoretically at 20 enzyme-encoding loci revealed two major clusters and several deep branches composed of strains that synthesize msDNA. Although E. coli K-12 does not harbor msDNA, other closely related strains of the K-12 family do. The results support the hypothesis that msDNA-synthesizing systems, including reverse transcriptase genes, were acquired recently and independently in different lineages of E. coli.

Animals↗

Microplate hybridization of amplified viral DNA segment.

We have developed a simple hybridization method for a DNA segment which is amplified by the polymerase chain reaction: after heat denaturation, the amplified DNA segment with a length of more than 300 bases is adsorbed to microplate wells in the presence of 1.5 M NaCl or 0.5 M ammonium sulfate; the immobilized DNA is hybridized with a biotin-labeled DNA probe; then, the hybridization signal is detected by streptavidin-conjugated beta-galactosidase or peroxidase. This method has several advantages over the conventional dot blot hybridization method: (i) radioisotopes are not used, (ii) synthetic oligonucleotide for the probe is not needed, (iii) the time required for washing of the solid phase is greatly reduced, and (iv) the baking and prehybridization procedures are eliminated. By this method, we were able to detect viral genomes in vesicle specimens from patients infected with varicella-zoster virus.

Animals↗

Comparative ototoxicity of ribostamycin, dactimicin, dibekacin, kanamycin, amikacin, tobramycin, gentamicin, sisomicin and netilmicin in the inner ear of guinea pigs.

Nine aminoglycoside antibiotics, ribostamycin (RSM), dactimicin (DAC), dibekacin (DKB), kanamycin (KM), amikacin (AMK), netilmicin (NTL), tobramycin (TOB), gentamicin (GM) and sisomicin (SISO) were administered intramuscularly to guinea pigs for 4 weeks, and ototoxicity and drug concentration in the inner ear fluid were determined. RSM and DAC showed the weakest ototoxicity against the cochlea and vestibular organs. AMK and KM were more toxic to cochlea than vestibular organs. DKB, TOM, GM and SISO were equally toxic to vestibular organs and cochlea. NTL was more toxic to vestibular organs than cochlea. As judged from the pinna reflex response and hair cell damage in the cochlea, the order of auditory toxicity was the following: SISO greater than GM greater than TOB greater than AMK greater than DKB greater than KM greater than NTL, DAC RSM, whereas the vestibular toxicity was in the following order: SISO greater than GM greater than DKB greater than TOB greater than NTL greater than AMK greater than KM greater than DAC, RSM. RSM, causing the weakest ototoxicity, showed a low drug concentration in the inner ear fluid, while GM, causing severe ototoxicity, showed the highest drug level under the same conditions.

Aminoglycosides↗

Synthesis and biological activity of (cyclopentenopyridinium) thiomethylcephalosporins.

Substituted (cyclopentenopyridinium)thiomethyl groups were introduced as C-3 substituents of (6R,7R)-7-[(Z)-2-(2-aminothiazol-4-yl)-2-oxyimino]acetami docephalosporins. Structure-activity relationships of this class of cephalosporins are discussed on the basis of their MIC. The selected compounds, 3a and 4a (ME1221), having an acidic substituent, showed excellent in vivo efficacy and low toxicity.

Animals↗

A new antipseudomonal cephalosporin CP6162 and its congeners.

The synthesis and biological activity of a series of 3-[2-(5-hydroxy-4-pyridon-2-yl)ethenyl]cephalosporin derivatives are described. They showed very potent activity against Gram-negative bacteria, especially Pseudomonas aeruginosa. (6R, 7R)-7-[(Z)-2-(2-Aminothiazol-4-yl)-2 -(1-carboxy-1-methyl)-ethoxyiminoacetamido]-3-[(Z)-2-(1,5-dihydrox y-4- pyridon-2-yl)ethenyl]ceph-3-em-4-carboxylic acid, CP6162 (8e), was selected for further evaluation as antipseudomonal chemotherapeutic agent.

Animals↗

New aminothiazolylglycylcephalosporins with a 1,5-dihydroxy-4-pyridone-2-carbonyl group. I. Synthesis and biological activity of cephalosporin derivatives leading to MT0703.

A series of new aminothiazolylglycylcephalosporins with a mono- or dihydroxypyridonecarbonyl group at the alpha-amino group of the C-7 substituent have been prepared and antibacterial activity of these compounds was investigated. Among them, the compounds having a 1,5-dihydroxy-4-pyridone-2-carbonyl group showed excellent anti-pseudomonal activity. In particular, (6R,7R)-7-[(RS)-2-(2-aminothiazol-4-yl)-2-(1,5-dihydroxy-4- pyridone-2-carboxamido)- acetamido]-3-[[1-(2-hydroxyethyl)pyridinium-4-yl]thiomethyl]ceph-3 -em- 4-carboxylate (MT0703, 7g) was found to be a well balanced compound with respect to antibacterial activity.

Animals↗

New aminothiazolylglycylcephalosporins with a 1,5-dihydroxy-4-pyridone-2-carbonyl group. II. Synthesis and antibacterial activity of MT0703 and its diastereomers.

A practical synthetic method for large scale production of MT0703, (6R,7R)-7-[(RS)-2-(2-aminothiazol-4-yl)-2-(1,5-dihydroxy-4-pyridon e-2- carboxamido)acetamido]-3-[[1-(2-hydroxyethyl)pyridinium-4- yl]thiomethyl]ceph-3-em-4-carboxylate, was established. Its two diastereomers on configuration of the aminothiazolylglycyl moiety were synthesized using chemico-enzymatic method. The S-isomer of MT0703 was found to be more active against Gram-positive and Gram-negative bacteria including beta-lactamase-producing strains than the R-isomer.

Animals↗

Synthesis and antibacterial activity of novel 2-methyl-1-oxacephalosporins.

New 2-methyl-1-oxacephem compounds having 2-(2-aminothiazol-4-yl)-2-(alkoxyimino)acetamido substituents at C-7 and various C-3 side chains were synthesized starting from (3R,4S)-phenyloxazolinoazetidinone (8). Introduction of the 2 beta-methyl group into the 1-oxacephem nucleus increased the stability to beta-lactamases. OCP-9-176 (7b) having the (1-methylpyridinium-4-yl)thiomethyl group at C-3 showed potent antibacterial activity and a broad spectrum.

Bacteria↗

MK4588, a new antibiotic related to xanthocillin.

A new antibiotic, MK4588, structurally related to xanthocillin, was isolated from the culture broth of Leptosphaeria sp. L-179. Antibiotic MK4588 exhibited inhibitory activity against a limited range of Gram-positive and Gram-negative bacteria. The antibiotic was degraded by alkali to a more active product. The structures of MK4588 and the degradation product were determined to be (1R*,6S*,7S*)-7-(Z)-(1-isocyano-2-(4-methoxyphenyl]ethenyl-1-hydro xy-7- isocyanobicyclo[4,2,0]oct-2-en-4-one and (Z)-2,3-diisocyano-1-(4-methoxyphenyl)buta-1,3-diene, respectively, by NMR spectral analyses coupled with X-ray crystallographic analysis of MK4588.

Anti-Bacterial Agents↗

A new aminothiazolylcephalosporin having 1-carboxyethoxyimino group, ME1228.

Aminothiazolylacetamidocephalosporins having 1-carboxyethoxyimino groups were synthesized and found to have excellent antibacterial activities including anti-pseudomonal activity and low toxicities. Among these cephalosporins, ME1228 having (S)-1-carboxyethoxyimino substituent and being combined with an (N-ethyl-4-pyridinio)thiomethyl group at C-3 showed marked therapeutic effects against systemic infections in mice and was selected as the best candidate for further evaluation.

Animals↗