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Biomedical subjects

S Inouye

Publications and source records attributed to S Inouye.

At least 109 records · Page 6Linked to original sources

Protein binding in vivo to OP2 promoter of the Pseudomonas putida TOL plasmid.

The transcription of OP2 encoding enzymes for m-toluate catabolism on the Pseudomonas putida TOL plasmid is activated by basal-level XylS protein in the presence of m-toluate or by overproduced XylS protein in the absence of m-toluate. In this study, in vivo dimethyl sulfate (DMS) footprinting was performed to understand the mechanism of transcriptional regulation of OP2 promoter by XylS. In the presence of overproduced XylS without m-toluate, several protected nucleotides were observed, indicating the binding of RNA polymerase to DNA. However, the protection was canceled upon addition of m-toluate. These results suggest that RNA polymerase is retained by XylS on the OP2 promoter in the absence of inducer, and is released by m-toluate binding to XylS, concomitant with transcription.

Bacterial Proteins↗

Induction of interleukin-10 on activation of Epstein-Barr virus in EBV-infected B-cell lines.

Human (h) interleukin-10 (IL-10) exhibits a strong DNA and amino acid sequence homology to the Epstein-Barr virus (EBV) BCRF1 genome, viral (v) IL-10. We analyzed the production of IL-10 for EBV activation in B-cell lines. The latent EBV in Akata cells was activated by the cross-linking of surface immunoglobulin G (IgG) with anti-human IgG. The levels of IL-10(h+v) and vIL-10 in the culture fluids were measured by a specific enzyme-linked immunosorbent assay (ELISA). IL-10(h+v) was detected at the same time for EBV immediate early gene BZLF1 product ZEBRA and early gene BMRF1 product EA-D. This was more than 4 hours prior to the appearance of vIL-10, and late gene products gp 350/220 and viral capsid antigen. The induction of hIL-10 and vIL-10 mRNAs were detected in anti-IgG-treated Akata cells by reverse transcription-polymerase chain reaction. The induction of IL-10(h+v) and vIL-10 was inhibited with a tyrosine kinase inhibitor, herbimycin, or with an inhibitor of herpesvirus DNA polymerase, phosphonoacetic acid, or acyclovir. IL-10(h+v) and vIL-10 were also detected in the supernatants of Akata and Daudi but not Ramos cells infected with P3HR-1 EBV. These results show the IL-10 induction on EBV activation in EBV-carrying B-cell lines.

Acyclovir↗

Mechanism of mitochondrial import of adenylate kinase isozymes.

Adenylate kinase (AK) is a ubiquitous enzyme that contributes to the homeostasis of the cellular adenine nucleotide composition. Three isozymes, AK1, AK2, and AK3, have so far been characterized in vertebrates. They are located in different tissues, while their primary and tertiary structures are similar. Among them, AK2 and AK3 are located in mitochondria, but unlike most mitochondrial proteins, both proteins lack a cleavable presequence. In this study, we first confirmed that AK2 is distributed in liver cells in both the cytosol and the intermembrane space of mitochondria, while AK3 is localized exclusively in the mitochondrial matrix. Next, we analyzed the process of import of AK2 and AK3 by incubating isolated rat mitochondria with proteins that were synthesized in a reticulocyte lysate translation system. The results indicated that both AK2 (an intermembrane-space-targeting protein) and AK3 (a matrix-targeting protein) require an inner membrane electrochemical potential for their import. This finding for AK2 is in contrast with those of other noncleavable intermembrane-space-targeting proteins such as cytochrome c and cytochrome c heme lyase, which do not require the membrane potential for their import. In the transport process, AK2 and AK3 competed with the adrenodoxin precursor, which is imported into the matrix through a mechanism common to other mitochondrial matrix proteins. Thus, AK2 and AK3 were thought to be translocated into mitochondria through the same pathway as that for most mitochondrial protein precursors. Neither AK2, that was previously synthesized in reticulocyte lysates, nor AK2, that was purified from an Escherichia coli overexpression system, was imported into mitochondria in a post-translational import manner. In contrast, AK3 was imported into mitochondria after completion of protein synthesis. Thus, the import of AK2 is likely to be co-translational, and the co-translational import mechanism might contribute to the bi-topological distribution of AK2 in both the cytosol and mitochondria.

Adenylate Kinase↗

Morphological alterations of Saccharomyces cerevisiae induced by benanomicin A, an antifungal antibiotic with mannan affinity.

The effects of benanomicin A, a mannose-binding antifungal antibiotic, on yeast cells of Saccharomyces cerevisiae were studied by electron microscopy. Cytological studies using vital stain with methylene blue demonstrated that benanomicin A at 20 and 80 microg/ml killed buds in preference to parent cells. In confirmation, examination by TEM revealed that benanomicin A at 80 microg/ml damaged buds more severely than parent cells. The major effect on the ultrastructure was characterized by severe damage to the cell membrane. In addition, it caused expansion and vacuolation of the endoplasmic reticulum (ER), and partial fragmentation and disappearance of nuclear membranes. The membrane-disruptive activity of benanomicin A may be closely associated with its membrane affinity.

Anthracyclines↗

Antisporulating and respiration-inhibitory effects of essential oils on filamentous fungi.

Sporulation of four species of filamentous fungi, namely Aspergillus fumigatus, Fusarium solani, Penicillium expansum and Rhizopus oryzae, was suppressed by gaseous contact with citron, lavender and thyme oils and, to a lesser extent, by that of perilla and tea tree oils. Lemongrass and cinnamon bark oils were scarcely active. The antisporulating effect of the essential oils was not observed when they were applied as a solution, indicating that their vapours were the active form. Moreover, exposure of fungal cultures to vapours of the active essential oils caused curling of the tips of aerial hyphae (R. oryzae) or incomplete development of conidiophores (A. fumigatus). These antisporulating effects of the vapourizing essential oils seemed to be correlated with their respiration-inhibitory activity, rather than with their growth-inhibitory activity.

Fungi↗

In vitro synthesis of multicopy single-stranded DNA, using separate primer and template RNAs, by Escherichia coli reverse transcriptase.

A minor population of wild strains of Escherichia coli contains a retron, a retroelement responsible for the synthesis of multicopy single-stranded DNA (msDNA). The retron is a genetic element consisting of the gene for reverse transcriptase (RT) and the msr-msd region under a single promoter. A single RNA transcript from the msr-msd region serves not only as a template but also as a primer for msDNA synthesis. Here, using a cell-free system with purified RT from retron Ec73, we examined whether the reaction can occur in a bimolecular reaction with use of separately expressed msr and msd transcripts. DNA sequencing of the cell-free product revealed that the sequence of the 5'-end region was identical to that of msDNA-Ec73, indicating that the cDNA synthesis was primed from the 2'-OH group of the specific internal G residue of the primer RNA, identical to the branching G residue in the RNA molecule of msDNA-Ec73. The present results raise an intriguing possibility for a role of bacterial retrons in vivo, the possibility that cellular mRNAs can be converted into cDNAs in retron-harboring cells if the mRNAs contain a sequence complementary to the sequence directly upstream of the branching G residue of the msr RNA transcript.

DNA, Bacterial↗

Inhibition of development of Myxococcus xanthus by eukaryotic protein kinase inhibitors.

Myxococcus xanthus is a social bacterium that lives in the soil and undergoes spectacular development to form multicellular fruiting bodies. It contains a large family of eukaryote-like serine/threonine protein kinases. We found that a number of inhibitors for eukaryotic protein serine, threonine, and tyrosine kinases could inhibit the development and sporulation of M. xanthus to various degrees. These results suggest that serine/threonine and tyrosine phosphorylation may be involved in development of M. xanthus. None of the inhibitors tested had any effect on vegetative growth of M. xanthus. Most of them seemed to act during the early stages of development. However, the expression of a very early development-specific gene, Omega4521, was not significantly affected by the inhibitors. The patterns of protein phosphorylation during development were also not significantly altered by the inhibitors, suggesting that the targets of the inhibitors are minor or unstable phosphoproteins but play key roles in fruiting-body formation in M. xanthus.

Enzyme Inhibitors↗

Presence of anti-ovalbumin IgE antibody in the sera of laboratory-reared squirrel monkeys (Saimiri sciureus) fed quail eggs.

In this study, we examined serum anti-ovalbumin (OVA) IgE and IgG antibodies in laboratory-reared squirrel monkeys (Saimiri sciureus), that were fed a boiled quail egg everyday. We found that 36 of 95 monkeys (38%) possessed specific IgE and 44% (42/95) had specific IgG against OVA. These antibody titers seemed to increase with age. There was, however, no apparent correlation between the anti-OVA IgE and IgG antibody titers.

Animals↗

Cladinose analogues of sixteen-membered macrolide antibiotics. VI. Synthesis of metabolically programmed, highly potent analogues of sixteen-membered macrolide antibiotics.

Five novel 3-hydroxyl derivatives of sixteen-membered macrolide possessing 4-O-acyl-alpha-L-cladinose as a neutral sugar moiety were synthesized by using a combination of structurally stable silyl acetal protection and selective hydrogenolysis of a 3"-methylthiomethyl ether to a 3"-OMe group. Several derivatives having n-butyryl, i-butyryl and n-valeryl substituent at the 4"-OH group exhibited significant antibacterial activity in vitro. One of them, 4"-O-n-butyryl-3"-O-methylleucomycin V, showed improved therapeutic effect in mice.

Animals↗

Trend of adenovirus type 7 infection, an emerging disease in Japan. A report of the National Epidemiological Surveillance of Infectious Agents in Japan.

The program of the National Epidemiological Surveillance of Infectious Diseases under the auspices of the Ministry of Health and Welfare started in 1981 apprehended in 1995 emergence of adenovirus type 7 in Japan. We analyzed the reported data of type 7 comparing with those of type 3, both belonging to the same subgenus B, and the following results were obtained: After 1981, the main serotypes in the reports of adenovirus isolation/detection were types 3, 2, and 1 in this order. The reports of isolation of adenovirus type 7 used to be extremely few, however, suddenly increased in 1995. In 1997, reports of isolation of adenovirus type 3 decreased and those of type 7 acquired the third place after those of types 2 and 3. Type 7 infection occur almost every month, but most frequently during May-September. The ages of cases from which type 7 was isolated were 0-4 years accounting for 55%, 5-9 years 35%, teens 6.3% and adults 4.0%, being similar proportions to those yielding type 3. Clinical diagnoses of cases yielding adenovirus type 7 were pharyngo-conjunctival fever (PCF) and influenza-like illness, these two accounting for half. The symptoms were severe, being characterized by higher maximum body temperature during the feverish period and severe pneumonia. Encephalitis and arthro-muscular pain were seen in only type 7-infected cases, although such cases were few.

Adenoviridae Infections↗

A bacterial cloning vector using a mutated Aequorea green fluorescent protein as an indicator.

The bacterial cloning vector, pGreenscript A, derived from the mutated Aequorea green fluorescent protein (GFP-S65A) gene, when expressed in E. coli produced colonies that showed yellow color under daylight and strong green fluorescence under long-wave ultraviolet light. The vector was used to select for inserted foreign genes based on the loss of the yellow color/green fluorescence of E. coli cells caused by the insertional inactivation of GFP production.

Amino Acid Sequence↗

The use of Renilla luciferase, Oplophorus luciferase, and apoaequorin as bioluminescent reporter protein in the presence of coelenterazine analogues as substrate.

To investigate the use of various luciferases as reporter protein, the substrate specificity of recombinant Renilla luciferase, Oplophorus luciferase and recombinant apoaequorin was examined using 23 kinds of coelenterazine analogues as the substrate. The intensity of luminescence was generally highest with Oplophorus luciferase and lowest with apoaequorin, but varied widely by the substrate used. A very high level of light intensity was obtained when the luminescence reactions of e-coelenterazine and v-coelenterazine were catalyzed by Renilla luciferase, strongly suggesting the usefulness of recombinant Renilla luciferase as a highly sensitive reporter protein. Oplophorus luciferase can be an equally sensitive reporter protein when its gene is obtained.

Aequorin↗

Biochemical characterization of Pkn2, a protein Ser/Thr kinase from Myxococcus xanthus, a Gram-negative developmental bacterium.

Pkn2, a protein Ser/Thr kinase, from the developmental bacterium Myxococcus xanthus was expressed under a T7 promoter in Escherichia coli and purified. Purified Pkn2 retained the autophosphorylation activity with the Km value of 177 microM for ATP and 73 nmol/min/mg for Vmax. The optimum pH and temperature were determined to be 7.5 and 35 degrees C, respectively. The autophosphorylation activity was inhibited by staurosporine with the IC50 value of 400 nM while H-7 and genistein had little effect on this kinase. Pkn2 appears to be unique for its higher manganese dependence. This is the first biochemical characterization of the prokaryotic protein Ser/Thr kinase.

Bacterial Proteins↗

Detection of herpes simplex virus type-specific antibodies by an enzyme-linked immunosorbent assay based on glycoprotein G.

In order to develop a simple and quantitative method to detect herpes simplex virus (HSV) type-specific antibodies, the usefulness of an enzyme-linked immunosorbent assay (ELISA) using HSV glycoprotein G (gG) captured on a plate by monoclonal antibodies as antigen was studied. The gG1- and gG2-specific IgG antibody activities were measured by the ELISA for 54 sera which had been collected from culture-proven genital herpes patients and pre-characterized by an immunodot assay using purified gG antigens. Thirty control sera without antibodies against the HSV whole antigens were also included. In comparison with the immunodot assay as standard, the sensitivities of the ELISA were 88.9% (32/36) for HSV-1 antibody and 89.2% (33/37) for HSV-2 antibody and the specificities were both 100%. Sera taken within a few months after primary infection tended to give false negative results. The HSV type-specific ELISA based on easy-to-prepare gG antigens might be useful to help improve the serological assessment of HSV infections.

Antibodies, Viral↗

In vivo production of oligodeoxyribonucleotides of specific sequences: application to antisense DNA.

Retrons, bacterial retroelements found in Gram-negative bacteria, are integrated into the bacterial genome expressing a reverse transcriptase related to eukaryotic reverse transcriptase. The bacterial reverse transcriptases are responsible for the production of multicopy, single-stranded (ms) DNA consisting of a short single-stranded DNA that is attached to an internal guanosine residue of an RNA molecule by a 2',5'-phosphodiester linkage. Reverse transcriptases use an RNA transcript from the retrons, not only as primer, but also as template for msDNA synthesis. By studying the structural requirement, it was found that for msDNA synthesis an internal region of msDNA can be replaced with other sequences. msDNA can thus be used as a vector for in vivo production of an oligodeoxyribonucleotide of a specific sequence. Artificial msDNAs containing a sequence complementary to part of the mRNA for the major outer membrane lipoprotein of Escherichia coli effectively inhibited lipoprotein biosynthesis upon induction of msDNA synthesis. This is the first demonstration of in vivo synthesis of oligodeoxyribonucleotides having antisense function. Since we have previously demonstrated that bacterial retrons are functional in eukaryotes producing msDNA in yeast and in mouse NIH/3T3 fibroblasts, the present system may also be used to produce a specific oligodeoxyribonucleotide inside the cells to regulate eukaryotic gene expression artificially. We also describe a method to produce cDNA to a specific cellular mRNA using the retron system.

Animals↗

Comparison of gelatin particle agglutination and hemagglutination inhibition tests for measles seroepidemiology studies.

The prevalence of measles antibody in Japan was surveyed with a newly developed gelatin particle agglutination (PA) test, and the results compared with those of the hemagglutination inhibition (HI) test. The two age-distribution curves of the PA antibody-positive rates at > or = 1:8 and > or = 1:32 were almost the same in all the age groups, except the less-than-1-year-old group for which the rate at > or = 1:8 was higher than that at > or = 1:32 (p < 0.05, chi 2 test). In the vaccinated children, all groups older-than-1-year of age had antibody-positive levels of 96% or more. In contrast, in the unvaccinated children, there was a sharp increase in antibody-positive rates between the 1- and 4-year-old groups, indicative that about 80% of the children were infected by wild measles virus at these ages. A significant number of PA antibody-positive specimens were antibody-negative (< 1:8) by HI. The percentage of specimens in this category, PA (+) but HI (-), was greatest in infants less than one year old, and least in young children, but it increased with age to 97% of the HI (-) specimens from adults of more than 20 years of age. The PA test therefore detected some measles antibodies that HI could not. This test is simple and useful for making serosurveys in both developed and developing countries.

Adolescent↗

Development of a gelatin particle agglutination reagent for measles antibody assay.

A new agglutination test that utilizes gelatin particles as the carrier of measles antigen was developed and used to evaluate immune status to measles virus infection. The particle agglutination (PA) reagent reacted with monoclonal antibodies against two major proteins of measles virus, the hemagglutinin (H) and fusion (F) proteins. Children were followed individually for ten years for measles antibody. Results showed that the PA test was as sensitive and specific as the plaque neutralization test. The procedure is simple and rapid. No prior treatment of specimens is needed, and the test is completed in a single reaction. The PA test therefore can be used for diagnoses and epidemiologic surveys of measles virus infection.

Agglutination Tests↗