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Biomedical subjects

S Inouye

Publications and source records attributed to S Inouye.

At least 217 records · Page 12Linked to original sources

Type differentiation of herpes simplex virus by stringent hybridization of polymerase chain reaction products.

A simple procedure for type differentiation of herpes simplex virus with the use of polymerase chain reaction (PCR)-amplified DNAs, was established: 1. The target sequence region for PCR was chosen from the coding sequences for an envelope protein, with the terminal sequences for PCR primers to be common among different types, but with the internal sequences to be variable. 2. Biotin-labelled probes for each type were prepared by PCR with the above primers and the templates from standard viruses of different types. 3. With templates from isolated strains or clinical specimens, the target DNA segment was amplified, and then immobilized on microplate wells. 4. Hybridization was carried out with the biotin-probes under a stringent condition so that the immobilized DNA was hybridized only with the homologous-type probe. 5. This hybridization result was visualized by using streptavidin-conjugated peroxidase and coloring reagents. This procedure may be applicable to differentiation of types or strains belonging to a group of closely related viruses.

Base Sequence↗

Airborne cat (Fel d I), dog (Can f I), and mite (Der I and Der II) allergen levels in the homes of Japan.

We measured the airborne and floor dust allergen levels of the cat (Fel d I), dog (Can f I), and mite (Der I and Der II) allergens in 13 houses. Airborne allergens were sampled with a low-noise air sampler for 5 to 7 days in the living rooms where the inhabitants were living as usual. The mean levels of airborne Fel d I and Can f I in houses with cats or dogs were 5960 and 2880 pg/m3, respectively, which were about 160 and 100 times higher than levels of airborne Der I. In floor dust the mean levels of Fel d I and Can f I were 322 and 236 micrograms/gm fine dust, respectively, which were 59 and 10 times higher than the levels of Der I. These results suggest that the airborne cat and dog allergens might be important sources of allergens for persons who live in a house with those animals, because the absolute allergen levels in both the air and dust are significantly higher than those of mite.

Air↗

Light-emitting properties of recombinant semi-synthetic aequorins and recombinant fluorescein-conjugated aequorin for measuring cellular calcium.

15 kinds of recombinant semi-synthetic aequorins and a recombinant fluorescein-conjugated aequorin were prepared and their properties in Ca(2+)-triggered luminescence were studied. The semi-synthetic aequorins showed a wide range of Ca(2+)-sensitivity. The luminescence intensity of a high-sensitivity type (hcp-aequorin) was greater than 10(4)-times that of a low-sensitivity type (n-aequorin) at pCa 6.0-6.5. The fluorescein-conjugated aequorin exhibited fluorescence in addition to the Ca(2+)-triggered luminescence, thus it can be used to visualize the diffusion and distribution of aequorin in cells. The data obtained, particularly the Ca(2+)-sensitivity curves, are useful in selecting a suitable semi-synthetic aequorin for an experiment.

Aequorin↗

The retron: a bacterial retroelement required for the synthesis of msDNA.

'Retrons' are bacterial retroelements responsible for the synthesis of msDNA, a hybrid nucleic acid consisting of a single-stranded DNA that is branched out from an internal guanosine of an RNA molecule via a 2',5'-phosphodiester linkage. Retrons are found in a minor population of various bacterial species and are extensively diverse. Two important questions now demanding attention are whether retrons are mobile elements and why are they so diverse?

Base Sequence↗

A new method of counting airborne Japanese cedar (Cryptomeria japonica) pollen allergens by immunoblotting.

We have devised a new method of counting pollen allergen particles, modified from the fluorescent immunoblotting technique of Schumacher et al. Airborne Japanese cedar pollen allergens collected on Burkard's sampling tape were transferred onto a nitrocellulose membrane. The membrane was then treated with antiallergen mouse monoclonal antibody conjugated with alkaline phosphatase. Pollen allergens were detected as purple spots on the nitrocellulose membrane after phosphate substrate staining was performed. Pollen allergen particles were visible under a stereoscopic microscope or to the naked eye and could thus be counted easily. This new counting method takes less time than previous methods and requires no special skill.

Air↗

A new putative sigma factor of Myxococcus xanthus.

A third putative sigma factor gene, sigC, has been isolated from Myxococcus xanthus by using the sigA gene (formerly rpoD of M. xanthus) as a probe. The nucleotide sequence of sigC has been determined, and an open reading frame of 295 residues (M(r) = 33,430) has been identified. The deduced amino acid sequence of sigC exhibits the features which are characteristic of other bacterial sigma factors. The characterization of a sigC-lacZ strain has demonstrated that sigC expression is induced immediately after cells enter into the developmental cycle and is dramatically reduced at the onset of sporulation. A deletion mutant of sigC grows normally in vegetative culture and is able to develop normally. However, in contrast to the wild-type cells, the sigC deletion mutant cells became capable of forming fruiting bodies and myxospores on semirich agar plates. This suggests that sigC may play a role in expression of genes involved in negatively regulating the initiation of fruiting body formation.

Amino Acid Sequence↗

The lonD gene is homologous to the lon gene encoding an ATP-dependent protease and is essential for the development of Myxococcus xanthus.

Myxococcus xanthus contains two genes (lonV and lonD) homologous to the Escherichia coli lon gene for an ATP-dependent protease. We found that the lonD gene encodes a 90-kDa protein consisting of 827 amino acid residues. The lonD gene product shows 49, 48, and 52% sequence identity to the products of the M. xanthus lonV, E. coli lon, and Bacillus brevis lon genes, respectively. When a lonD-lacZ fusion was used, lonD was expressed during both vegetative growth and development. However, while lonD-disrupted strains were able to grow normally vegetatively, the development of M. xanthus was found to be arrested at an early stage in these strains. The mutant strains were able to form neither fruiting bodies nor myxospores.

ATP-Dependent Proteases↗

Oar, a 115-kilodalton membrane protein required for development of Myxococcus xanthus.

Myxococcus xanthus is a developmental gram-negative bacterium which forms multicellular fruiting bodies upon nutrient starvation. This bacterium was found to contain a 115-kDa membrane protein which separated with the inner membrane fraction by sucrose density gradient centrifugation. The gene for this protein was cloned, and its DNA sequence was determined. The deduced amino acid sequence consists of 1,061 residues. This protein contains a putative signal sequence and many short segments, found scattered throughout the entire protein, that have sequence similarities with OmpA, a major outer membrane protein of Escherichia coli. Thus, the gene was designated oar (OmpA-related protein). A second open reading frame was found 36 bases downstream of the oar termination codon. This open reading frame encodes a protein of 236 residues and contains a putative lipoprotein signal sequence. An aor disruption mutation (delta oar) showed no effect on vegetative growth but caused abnormal morphogenesis during development and reduced myxospore formation. When examined with a light microscope, delta oar cells were unable to aggregate on developmental agar, indicating that Oar is required for cellular adhesiveness during development.

Amino Acid Sequence↗

Autophosphorylation of nucleoside diphosphate kinase from Myxococcus xanthus.

The nucleoside diphosphate kinase (NDP kinase) from Myxococcus xanthus has been purified to homogeneity and crystallized (J. Munoz-Dorado, M. Inouye, and S. Inouye, J. Biol. Chem. 265:2702-2706, 1990). In the presence of ATP, the NDP kinase was autophosphorylated. Phosphoamino acid analysis was carried out after acid and base hydrolyses of phosphorylated NDP kinase. It was found that the protein was phosphorylated not only at a histidine residue but also at a serine residue. Replacement of histidine 117 with a glutamine residue completely abolished the autophosphorylation and nucleotide-binding activity of the NDP kinase. Since histidine 117 is the only histidine residue that is conserved in all known NDP kinases so far characterized, the results suggest that the phosphohistidine intermediate is formed at this residue during the transphosphorylation reaction from nucleoside triphosphates to nucleoside diphosphates. Preliminary mutational analysis of putative ATP-binding sites is also presented.

Adenosine Triphosphate↗

Cloning and nucleotide sequence of the Myxococcus xanthus lon gene: indispensability of lon for vegetative growth.

The lon gene of Escherichia coli is known to encode protease La, an ATP-dependent protease associated with cellular protein degradation. A lon gene homolog from Myxococcus xanthus, a soil bacterium which differentiates to form fruiting bodies upon nutrient starvation, was cloned and characterized by use of the lon gene of E. coli as a probe. The nucleotide sequence of the M. xanthus lon gene was determined. It contains an open reading frame that encodes a 92-kDa protein consisting of 817 amino acid residues. The deduced amino acid sequence of the M. xanthus lon gene product showed 60 and 56% identity with those of the E. coli and Bacillus brevis lon gene products, respectively. Analysis of an M. xanthus strain carrying a lon-lacZ operon fusion suggested that the lon gene is similarly expressed during vegetative growth and development in M. xanthus. In contrast to that of E. coli, the M. xanthus lon gene was shown to be essential for cell growth, since a null mutant could not be isolated.

ATP-Dependent Proteases↗

Amino acids and peptides. XVII. Synthesis of peptides related to N-terminal portion of fibrin alpha-chain and their inhibitory effect on fibrinogen/thrombin clotting.

Various peptides related to N-terminal portion of fibrin alpha-chain were synthesized by the solution method and the solid-phase method, and their inhibitory effect on fibrinogen/thrombin clotting was examined. Extension of peptide chain from N-terminal tripeptide decreased the inhibitory effect. The most potent effect was shown by N-terminal decapeptide analog, H-Gly-Pro-Arg-Pro-Pro-Glu-Arg-His-Gln-Ser-NH2.

Amino Acid Sequence↗

[Antibody responses against Japanese cedar pollen allergen (Cry j I) in different strains of rats].

We established an IgE-capture ELISA for rat IgE antibody, and examined rat strain differences in the antibody responses against the major allergen of Japanese cedar pollen (Cry j I). First, IgE-capture ELISA and passive cutaneous anaphylaxis (PCA) method were compared. IgE-capture ELISA was found to be, in sensitivity, about 10 times higher than, and, in specificity, equal to, PCA. Second, seven strains of rat were immunized three times at days 0, 14 and 28 by intraperitoneal injections of 1 or 10 micrograms Cry j I mixed with 4 mg aluminium hydroxide gel. Anti-Cry j I IgE was detected by IgE-capture ELISA. Anti-Cry j I IgG and IgM responses were found not significantly different among different strains, but IgE responses in Brown-Norway (BN) rat were about 10 times higher than in other strains of rats. These results suggest that BN rat may be a useful animal model for studying physiological and pathological changes in the nose after pollen challenge to that organ.

Allergens↗

[Effects of Perilla frutescens extract on anti-DNP IgE antibody production in mice].

Perilla frutescens is a Chinese herbal medicine. In this study, we prepared an extract of Perilla frutescens (PFE) and examined its effects on anti-DNP antibody responses in mice. The mice were immunized with DNP-ovalbumin in Alum adjuvant. To examine the effects of PFE on primary antibody responses, PFE was intraperitoneally injected the day before primary immunization. Anti-DNP IgE antibody production was found to be markedly suppressed by PFE injection. Then, we examined the effects on secondary antibody responses. PFE was injected only the day before secondary immunization. Anti-DNP IgE production was markedly suppressed, but IgG response was not so affected. These results suggest that the immunosuppressive effects of PFE are preferentially on IgE production and that PFE may be useful for the suppression of IgE antibody in certain allergic disorders.

Animals↗

Confirmation of the airborne occurrence of micron-size airborne pollen antigen carrying particles by immunoblotting.

We confirmed the existence of micron-size airborne particles carrying major pollen antigen of Cryptomeria japonica (Cry j l) and Lolium perenne (Lol p l) by means of an immunoblotting technique and examination by light microscopy. The size of the spots on a nitrocellulose membrane, marking the presence of antigen on the sampler's tape, varied considerably under light microscopic examination. Spots smaller than pollen grains and micron-size spots were observed together with large spots which seem to have been derived from intact pollen grains. The number of micron-size spots counted under a light microscope did not correspond with the number of spots from pollen grain observable with the naked eyes. This suggests other sources of airborne Cry j l particles than intact pollen grains alone.

Air↗

Imaging of luciferase secretion from transformed Chinese hamster ovary cells.

The blue luminescence characteristic of the marine ostracod crustacean Vargula hilgendorfii is from a simple, but highly specific, enzyme-substrate reaction. Light is emitted by the oxidation of Vargula luciferin (substrate) by molecular oxygen, a reaction catalyzed by luciferase. Stable transformants of Chinese hamster ovary cells carrying the Vargula luciferase gene secreted luciferase from discrete sites on the cell surface, and this secretion could be monitored in real time by the bioluminescence produced by the secreted luciferase in the presence of Vargula luciferin by using an image-intensifying technique. Addition of anti-Vargula luciferase IgG to the luminescing cells almost completely extinguished the luminescence, confirming that Vargula luciferase caused the luminescence.

Animals↗

Cell-free synthesis of the branched RNA-linked msDNA from retron-Ec67 of Escherichia coli.

msDNA-Ec67 is produced in a clinical strain of Escherichia coli and composed of a 67-base single-stranded DNA, which is linked to the 2'-OH group of the 15th rG residue of a 58-base RNA molecule by a 2',5'-phosphodiester linkage (Lampson, B. C., Sun, J., Hsu, M.-Y., Vallejo-Ramirez, J., Inouye, S., and Inouye, M. (1989) Science 243, 1033-1038). The production of msDNA-Ec67 is dependent upon retron-Ec67, which consists of the msr-msd region and the gene for reverse transcriptase (RT). These two elements were separately cloned into plasmids; p67-BHO.6 contained the msr-msd region and pRT-67 contained the RT gene under the lpp-lac promoter-operator. msDNA-Ec67 was produced only when cells were transformed with both plasmids. In addition, msDNA-Ec67 was synthesized in a cell-free system using total RNA prepared from cells harboring plasmid p67-BHO.6 and purified Ec67-RT. Using this cell-free system, the priming reaction, during initiation of DNA synthesis, was demonstrated to be a specific template-directed event; only dTTP was incorporated into a 132-base precursor RNA yielding a 133-base compound. This specific dT addition could be altered to dA or dC by simply substituting the 118th A residue of the putative msr-msd transcript with a T or G residue. The priming reaction was blocked when A was substituted for G at the 15th residue of the precursor RNA transcript, which corresponds to the branched rG residue in msDNA. DNA chain elongation could be terminated by adding ddNTP in the cell-free system, forming a sequence ladder. The DNA sequence determined from this ladder completely agreed with the msDNA sequence. The RT extension reaction was completely blocked when the RNA preparation was treated with RNase A but not when the preparation was treated with DNase. This clearly demonstrates that RNA but not DNA is responsible for the msDNA production. A part of the fully extended cell-free product contained a 13-base RNA strand resistant to RNase A, which is consistent with the previously proposed model. In this model, the 5'-end sequence of the msr-msd transcript (a2; bases 1-13) forms a duplex with the 3'-end sequence (a1) of the same transcript, thus serving as a primer, as well as a template for msDNA synthesis by RT. Our results are inconsistent with a model recently proposed by Lease and Yee (Lease, R. A., and Yee, T. (1991) J. Biol. Chem. 266, 14497-14503).

Base Sequence↗

In vivo production of a stable single-stranded cDNA in Saccharomyces cerevisiae by means of a bacterial retron.

Gram-negative bacteria such as Myxococcus xanthus, Stigmatella aurantiaca, and Escherichia coli contain retroelements called retrons. Retrons consist of the msr-msd region and the gene for reverse transcriptase (RT), which are essential for the production of the branched RNA-linked ms-DNA (multicopy single-stranded DNA). In this study, we attempted to produce msDNA in the yeast Saccharomyces cerevisiae. Retron Ec67 from E. coli, which is responsible for the production of msDNA-Ec67, was cloned under the GAL10 promoter in a 2-microns-based plasmid. msDNA thus produced was detected by extending the 3' end of the msDNA by avian myeloblastosis virus RT. This yielded a main product of 117 nucleotides. Treatment of this product with RNase A resulted in a DNA of 105 nucleotides. These results are in good agreement with the structure of msDNA-Ec67. The production of msDNA-Ec67 was further confirmed by Southern blot hybridization. The msDNA production was dependent upon the bacterial RT gene in the clone and was increased severalfold when the RT gene of retron Ec67 was placed in front of the msr-msd region. The potential of msDNA as a eukaryotic vector producing a stable single-stranded DNA as well as RNA is discussed.

Base Sequence↗