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Biomedical subjects

T Kurata

Publications and source records attributed to T Kurata.

At least 91 records · Page 5Linked to original sources

Mutants of cholera toxin as an effective and safe adjuvant for nasal influenza vaccine.

The effectiveness and safety of mutants of cholera toxin (CT) as an adjuvant for nasal influenza vaccine was examined. Four CT mutants, called CT7 K (Arg to Lys), CT61F (Arg to Phe), CT112 K (Glu to Lys), and CT118E (Glu to Gln), were produced by the replacement of one amino acid at the A1-subunit using site-directed mutagenesis. All these mutants were confirmed to be less toxic than native CT when the toxicity was analysed by using Y1 adrenal cells in vitro. When high (1 microg) and low (0.1 microg) doses of these CT mutants, together with high (1 microg) and low (0.1 microg) doses of influenza A/PR/8/34 virus (H1N1) vaccine, respectively, were administered intranasally into BALB/c mice in a two dose regimen (twice, 4 weeks apart), they produced both anti-PR8 hemagglutinin (HA) IgA and IgG antibody (Ab) responses roughly in a dose-dependent manner. The relatively low level of anti-HA Ab responses, induced by the low dose CT mutants, were enough to provide complete protection against the homologous virus infection. Under these vaccination conditions, no anti-CTB IgE Ab responses were induced. The mutant CT112 K, which showed a relatively high adjuvant activity, the lowest toxicity and relatively high yields in a bacterial culture, seems to be the most effective and safest adjuvant for nasal influenza vaccine among those examined. The low dose of CT derivatives or vaccine used in the mouse model (0.1 microg/20 g mouse) corresponded to 100 microg/20 kg, the estimated dose per person. A tentative plan for safety standards for human use of CT (or LT) derivatives as an adjuvant of nasal influenza vaccine is discussed.

Adjuvants, Immunologic↗

Activation of C3G guanine nucleotide exchange factor for Rap1 by phosphorylation of tyrosine 504.

C3G is a guanine nucleotide exchange factor for Rap1 and is activated by the expression of Crk adaptor proteins. We found that expression of CrkI in COS cells induced significant tyrosine phosphorylation of C3G. To understand the mechanism by which C3G is phosphorylated and activated by Crk, we constructed a series of deletion mutants. Deletion of the amino terminus of C3G to amino acid 61 did not remarkably affect either tyrosine phosphorylation or Crk-dependent activation of C3G. When C3G was truncated to amino acid 390, C3G was still phosphorylated on tyrosine but was not effectively activated by CrkI. Deletion of the amino terminus of C3G to amino acid 579 significantly reduced the Crk-dependent tyrosine phosphorylation of C3G and increased GTP-bound Rap1 irrespective of the presence of CrkI. We substituted all seven tyrosine residues in this region, amino acids 391-579, for phenylalanine for identification of the phosphorylation site. Among the substitution mutants, the C3G-Y504F mutant, in which tyrosine 504 was substituted by phenylalanine, was remarkably less activated and phosphorylated than the wild type. All the other substitution mutants were activated and tyrosyl-phosphorylated by the expression of CrkI. Thus, CrkI activates C3G by the phosphorylation of tyrosine 504, which represses the cis-acting negative regulatory domain outside the catalytic region.

Animals↗

The cellular kinase binding motifs (PxxP and RR) in human immunodeficiency virus type 1 Nef protein are dispensable for producer-cell-dependent enhancement of viral entry.

We have recently demonstrated that human immunodeficiency virus type 1 (HIV-1) Nef is required for enhancing viral infectivity by increasing the efficiency of viral entry in a producer-cell-dependent manner, suggesting the possible involvement of a cellular factor(s) in the enhancement of viral entry. Moreover, it has been reported that a proline-rich (PxxP) motif and an Arg-Arg (RR) motif in HIV-1 Nef bind to the SH3 domain of the Src-family tyrosine kinase Hck and to a serine/threonine kinase, respectively. To address whether these cellular kinase binding motifs, PxxP and RR, could be involved in virus producer-cell-dependent enhancement of viral entry, we constructed two nef mutant proviral clones in which these motifs were mutated. The results show that the HIV-1 Nef PxxP motif, which significantly influenced viral infectivity, and the RR motif, which modestly affected viral infectivity, were both dispensable for enhanced viral entry, thus suggesting that another interaction of Nef with a cellular factor(s) is involved in the efficiency of viral entry.

Alanine↗

Analysis of human lymphotropic T-cell virus type II-like particle production by recombinant baculovirus-infected insect cells.

The molecular processes involved in retrovirus assembly and budding formation remain poorly understood. The gag-pro-pol genes of human lymphotropic T-cell virus type II (HTLV-II) are translated into Gag, Gag-Pro, or Gag-Pro-Pol by frameshift events. In the present study, we investigated the roles of the gag, pro, and pol regions of HTLV-II in viral particle formation using recombinant baculoviruses. In this study we could successfully produce mature HTLV-II viral particles containing core structures using a construct expressing the entire gag-pro-pol region. We also investigated the role of the pol region in particle formation. Deletion of the pol region affects viral particle assembly or release very little, indicating that the gag-pro region is sufficient for viral particle formation and maturation. Expression of the Gag proteins alone or Gag proteins with inactivated viral proteases (Pro) resulted in the formation of viral particles; however, these particles did not contain core structures. These results suggest the intracellular expression of Gag with Pro of HTLV-II is essential for the production of mature virus particles, whereas that of Pol is not.

Animals↗

Enhanced protection against a lethal influenza virus challenge by immunization with both hemagglutinin- and neuraminidase-expressing DNAs.

The ability of plasmid DNA encoding hemagglutinin (HA), neuraminidase (NA) or matrix protein (M1) from influenza virus A/PR/8/34 (PR8) (H1N1), and mixtures of these plasmid DNAs (HA + NA and HA + NA + M1) to protect against homologous or heterologous virus infection was examined in BALB/c mice. Each DNA was inoculated twice, 3 weeks apart, or four times, 2 weeks apart, at a dose of 1 microg of each component per mouse by particle-mediated DNA transfer to the epidermis (gene gun). Seven days after the last immunization, mice were challenged with a lethal homologous or heterologous virus and the ability of each DNA to protect the mice from influenza was evaluated by observing lung virus titers and survival rates. The administration of a plasmid DNA mixture of either (HA + NA) or (HA + NA + M1) provided almost complete protection against the PR8 virus challenge, and this protection was accompanied by high levels of specific antibody responses to the respective components. The degree of protection afforded in these groups is significantly higher than that in mice given either HA- or NA-expressing DNA alone, which provided only a partial protection against PR8 challenge or that in mice given M1-expressing DNA, which failed to provide any protection. In addition, both of the plasmid DNA mixtures (HA + NA) and (HA + NA + M1) showed a slight tendency to provide cross-protection against an A/Yamagata/120/86 (H1N1) virus challenge, and this was accompanied by a relatively high level of cross-reacting antibodies. Thus, there was no clear difference between the ability of the HA + NA and HA + NA + M1 plasmid DNA mixtures in providing protection against either a PR8 or heterologous virus challenge. These results suggest that in mice immunized by gene gun, a mixture of plasmid DNAs encoding HA and NA can provide the most effective protection against the virus challenge. The addition of the M -expressing plasmid DNA to this mixture does not enhance the degree of protection afforded.

Animals↗

Pathogenicity of tick-borne encephalitis virus isolated in Hokkaido, Japan in mouse model.

The pathogenic characteristics of tick-borne encephalitis (TBE) virus strain (Oshima 5-10) isolated from a sentinel dog in Hokkaido, Japan, was compared by use of a mouse model with several inoculation routes to other strains of TBE virus (the Far Eastern subtype; Sofjin strain and the Western subtype; Hochosterwitz strain) and TBE complex virus (Langat virus; TP-21 strain). The degree of neuroinvasiveness of the strains in mice subcutaneously (s.c.) inoculated was Sofjin equaled Hochosterwitz which was greater than Oshima and TP-21, respectively. Neurovirulence, as determined after intracerebral inoculation was Sofjin > Oshima = Hochosterwitz > TP-21. Virus replication in the brains of mice s.c. or intracerebrally inoculated with Oshima strain was slower and of lower titer than that of Sofjin strain. Histopathological findings indicated that subarachnoid infiltration of mononuclear cells prior to necrosis of the cerebrum was characteristic in Oshima strain. These findings indicated that the Oshima strain possessed a pathogenic potential common to TBE viruses and is less virulent for mice as compared with the two other TBE strains examined.

Animals↗

High susceptibility of Mongolian gerbil (Meriones unguiculatus) to Borna disease virus.

Borna disease virus (BDV) is a neurotropic enveloped virus with a nonsegmented, single-, negative-stranded RNA genome. This virus induced encephalitis in experimentally infected adult rats, but in newborn rats BDV established a persistent, tolerant infection with no apparent clinical signs. Here, we report evidence that newborn Mongolian gerbils (Meriones unguiculatus) are more susceptible to experimental intracranial inoculation of horse-derived BDV in persistently infected MDCK cells, compared with similar inoculation in newborn rats. All inoculated newborn gerbils, but not rats, died 30 days after infection. Reverse transcriptase-polymerase chain reaction amplified BDV-specific sequences in several regions including the brain. Histopathological analysis revealed apparent inflammatory reactions in the brains of inoculated gerbils but not rats, although similar levels of BDV RNA were detected in both gerbil and rat brains. BDV-specific antigen and RNA were identified predominantly in neurons in the brains by immunohistochemistry with antibodies to BDV and in situ hybridization with BDV-specific riboprobes, respectively. BDV in the gerbil brain was easily rescued by co-cultivation of the brain homogenate with human oligodendroglioma cells. Thus, gerbils seem to be a useful animal model for studying BDV-induced pathogenesis in the brain.

Animals↗

Expression and antigenicity of human herpesvirus 8 encoded ORF59 protein in AIDS-associated Kaposi's sarcoma.

Human herpesvirus 8 (HHV-8, Kaposi's sarcoma-associated herpesvirus, KSHV) is a new herpes virus isolated from patients with AIDS-associated Kaposi's sarcoma (AIDS-KS). The ORF59 protein of HHV-8 has recently been shown to encode a processivity factor (PF-8) for HHV-8-encoded DNA polymerase. By immunoscreening a cDNA library derived from the HHV-8-infected cell line TY-1, ORF59 antigen was identified in AIDS-KS patients. Immunoblotting revealed that recombinant ORF59 protein reacted with sera from patients with AIDS-KS. Enzyme-linked immunosorbent assay (ELISA) using ORF59-recombinant protein as the antigen revealed that 7 of 22 (31. 8%) AIDS-KS patients and 6 of 263 (2.2%) Japanese HIV-negative patients or healthy blood donors were positive for anti-ORF59 antibodies. Immunohistochemistry using anti-ORF59 rabbit antibodies revealed that this protein was expressed in some of the tumor cells found in KS tissues and that ORF59 protein was detected in 11 of 22 (50%) AIDS-KS tissues. In situ hybridization indicated that some of KS tumor cells were positive for HHV-8 T1.1 mRNA in the same specimen. These data suggest that ORF59 is one of the HHV-8 encoded antigens in patients with AIDS-KS and also indicated that viral replication occurred in some of KS tumor cells.

AIDS-Related Opportunistic Infections↗

Preincubation of recombinant Ipa proteins of Shigella sonnei promotes entry of non-invasive Escherichia coli into HeLa cells.

Invasion plasmid antigens of Shigella sonnei, IpaB, C, D, were expressed as fusion proteins either with maltose-binding protein (MBP) or Strept-tag sequence. Affinity-purified IpaB and IpaD were separated from MBP by digestion with Factor Xa. Recombinant IpaC having Strept-tag sequence at its C-terminal was also purified by avidin affinity column chromatography. These recombinant proteins showed the ability to cause non-invasive Escherichia coli K-12 to internalize HeLa cell only when all of the proteins were preincubated with the bacterial prior to the inoculation of the mixture into HeLa cell culture. Electron microscopy also showed internalized bacteria within HeLa cells suggesting that functional complex of invasins (IpaB, C and D) were formed in vitro.

Antigens, Bacterial↗

Severe aplastic anemia associated with human parvovirus B19 infection in a patient without underlying disease.

Human parvovirus B19 (B19 virus) infection is known to induce aplastic crisis in patients with hemolytic anemia. In healthy subjects, B19 infection may sometimes cause mild pancytopenia, but these changes are transient and recovery is spontaneous. We report the first case of aplastic anemia in a previously healthy boy without any underlying diseases, following asymptomatic infection with the B19 virus. Laboratory examination initially showed thrombocytopenia, mild leukopenia in the peripheral blood, and severe hypoplastic bone marrow. Since pancytopenia developed and worsened progressively, immunosuppressive therapy was given, resulting in a complete remission. Despite the lack of an infectious prodrome, serological and histological analysis revealed an underlying infection with the B19 virus. Thus, B19 virus infection must be considered one of the causes of aplastic anemia in patients without underlying hemolytic anemia and an apparent episode of the viral infection.

Adolescent↗

Exacerbation of influenzavirus pneumonia by intranasal administration of surfactant in a mouse model.

Although surfactant-secreting type II alveolar cells have been shown to be damaged during influenzavirus pneumonia, little is known about the effects of surfactant replacement therapy. We have developed a mouse influenza model, in which viral infection can be localized to the upper respiratory tract or to both the upper and lower respiratory tract depending on the volume (rather than infectious dose) of intranasal inocula of influenzavirus. In this model, only mice infected with a large inocula die with massive infection in the lung. Using this model, we unexpectedly found that intranasal administration of surfactant dramatically exacerbated influenzavirus infection causing fatal disease even in mice inoculated with a small inocula. This exacerbation resulted from enhancement of intrabronchial and intraalveolar spread of virus, as confirmed by immunohistochemical detection of viral antigen in lungs. Assuming this experimental model in mice recapitulates naturally occurring disease in humans, extreme caution is warranted in surfactant-replacement treatment of influenzavirus pneumonia in humans.

Administration, Intranasal↗

High expression of HHV-8-encoded ORF73 protein in spindle-shaped cells of Kaposi's sarcoma.

Human herpesvirus 8 (HHV-8) has been demonstrated previously in Kaposi's sarcoma (KS) tissues by immunohistochemistry, in situ polymerase chain reaction, and in situ hybridization. The HHV-8-encoded protein ORF73 is a 222- or 234-kd protein named latent nuclear antigen (LNA) or latency-associated nuclear antigen (LANA) that is identified in HHV-8-infected cell lines by immunofluorescence assay. In the present study, a rabbit antibody against a recombinant ORF73 protein was developed. Immunofluorescent staining of a HHV-8-infected cell line, TY-1, showed that the staining pattern of the anti-ORF73 antibody overlapped completely the LANA staining pattern obtained using KS patients' sera. Immunoblotting analysis showed that the anti-ORF73 antibody reacted specifically with 222- and 234-kd proteins that were present in TY-1 and BCBL-1 cell lysates. Immunohistochemistry using a catalyzed signal amplification system demonstrated that the anti-ORF73 antibody reacted exclusively with the majority of KS spindle-shaped cells, showing a nuclear dot-like staining pattern. Some of the ORF73 protein-positive cells also expressed CD34 and vimentin but not CD68 or factor-VIII-related antigen. These data indicate that the anti-ORF73 antibody recognizes LANA and that most KS cells are infected with HHV-8 in the latent phase. Our findings also suggest that ORF73 protein plays an important role in the pathogenesis of KS.

Animals↗

Application of the hybridization AT-tailing method for detection of human immunodeficiency virus RNA in cells and simian immunodeficiency virus RNA in formalin-fixed and paraffin-embedded tissues.

An in situ hybridization (ISH) AT-tailing method (HybrAT) was developed for the detection of viral genomes in infected cells and tissues. The method consists of hybridization with oligonucleotide probe which has a 3' end oligo d(A-T) tag, followed by elongation of the oligo d(A-T) by deltaTth DNA polymerase in the presence of the labeled nucleotide. The in situ HybrAT detected human immunodeficiency virus type 1 (HIV-1) in cells and simian immunodeficiency virus (SIV) in formalin-fixed and paraffin embedded sections with a sensitivity comparable to RNA ISH. The advantage of this method over other methods is discussed.

Animals↗

Genotype and allele frequency of a 32-base pair deletion mutation in the CCR5 gene in various ethnic groups: absence of mutation among Asians and Pacific Islanders.

BACKGROUND: A 32-base pair (bp) deletion mutation in the beta-chemokine receptor CCR5 gene has been associated with resistance against human immunodeficiency virus type 1 (HIV-1) infection and disease. Large-scale studies conducted among Caucasians indicate that individuals who are homozygous for this deletion mutation (D32/D32) are protected against HIV-1 infection despite multiple high-risk exposures, whereas CCR5/ D32 heterozygotes have a slower progression to acquired immunodeficiency syndrome (AIDS). OBJECTIVE: To determine the genotype and allele frequencies of the CCR5 gene 32-bp deletion mutation among ethnically diverse non-Caucasian populations. METHODS: DNA, extracted from blood collected between 1980 and 1997 from 1912 individuals belonging to various ethnic groups, including 363 Caucasians, 303 Puerto Rican Hispanics, 150 Africans, 606 Asians, and 490 Pacific Islanders, were analyzed for the CCR5 gene 32-bp deletion mutation by a polymerase chain reaction (PCR)-based assay, using an oligonucleotide primer pair designed to discriminate CCR5 alleles without restriction endonuclease analysis. RESULTS: The comparative frequency of CCR5/D32 heterozygosity was 61 of 363 (16. 8%) in Caucasians, 17 of 303 (5.6%) in Puerto Rican Hispanics, 9 of 490 (1.8%) in Pacific Islanders, 0 of 606 (0%) in Asians, and 0 of 150 (0%) in Africans. CONCLUSIONS: The data confirm the high frequency of CCR5/D32 heterozygosity among Caucasians. Intermediate and low-level D32 allele frequencies among Puerto Rican Hispanics and Hawaiians could be attributed to recent European Caucasian gene flow. By contrast, the inability to detect the D32 allele among Asians and other Pacific Islander groups suggests that other mechanisms are responsible for resistance to HIV-1 infection in these populations.

Alleles↗

Histamine behavior during the fermentation process in the manufacture of fish sauce.

The behavior of histamine in fish sauce making was investigated using fresh and spoiled fish with or without histidine added during fermentation. The histamine content in the 2% histidine added fresh fish mixture did not change significantly even after a lapse of 4 months incubation. However, when histidine was added to spoiled fish, the histamine content rose to a high level but decreased continuously with incubation time. This decrease may suggest the presence of histamine-decomposing bacteria in the samples. Eight of the 10 commercial fish sauces analyzed contained histamine levels below the "decomposition level" of 50 mg/kg set by the FDA. The increase in histamine at the initial stage and the decrease in histidine might suggest that histidine was converted to histamine by a microorganism possessing the enzyme histidine decarboxylase.

Animals↗

The interaction of mitogen-activated protein kinases to Epstein-Barr virus activation in Akata cells.

To understand the mechanism by which Epstein-Barr virus (EBV) is activated in Akata cells by cross-linking of surface immunoglobulin, the interaction between mitogen-activated protein kinase (MAPK)/extracellular signal-regulated kinase (ERK) and EBV activation was investigated. Immunoblotting using an anti-phosphoMAPK antibody (Ab) revealed that anti-IgG Ab induced rapid phosphorylation of MAPK in the cells. The phosphorylation was inhibited by MAPK/ERK kinase specific inhibitor, PD98059. The expressions of the EBV immediate early BZLF1 mRNA and its protein product ZEBRA, and early antigen were also inhibited by the inhibitor. These results indicate that MAPK is involved in the pathways of EBV activation.

B-Lymphocytes↗

Induction of gamma-glutamylcysteine synthetase gene expression by platinum drugs in peripheral mononuclear cells of lung cancer patients.

BACKGROUND: To investigate in vivo the roles of gamma-glutamylcysteine synthetase (gamma-GCS), multidrug resistance-associated protein (MRP), human canalicular multispecific organic anion transporter (cMOAT) and DNA topoisomerase I (topo I) in relation to platinum drug resistance, we monitored the changes of the steady-state levels of the mRNAs for these factors in peripheral mononuclear cells (PMN) after completing platinum drug administration. PATIENTS AND METHODS: PMN from 46 subjects were studied. We obtained PMN from 14 previously untreated lung cancer patients and 14 normal volunteers to measure the baseline gene expression levels. We then obtained PMN from 18 patients with previously untreated advanced lung cancer before and after they received platinum drug treatment. We analyzed the gene expression levels by using the quantitative reverse transcription polymerase chain reaction (RT-PCR). RESULTS: There were no differences in the baseline expression levels between normal volunteers and lung cancer patients in any of the genes. After platinum drug administration, the heavy subunit of gamma-GCS (gamma-GCSh) expression level increased 2.5-fold within 24 hours and the increase persisted for a month, whereas the light subunit of gamma-GCS (gamma-GCSl) expression level did not show an early response but had increased after a month. By contrast, the MRP, cMOAT and topo I expression levels were similar before, during and after chemotherapy. CONCLUSIONS: These results suggest that the gene expression levels of both subunits of gamma-GCS play an important in vivo role in platinum drug resistance.

Adenocarcinoma↗

Primary infection of human herpesvirus 6 in children with vertical infection of human immunodeficiency virus type 1.

The role of human herpesvirus 6 (HHV-6) infection in 227 children born to human immunodeficiency virus (HIV)-seropositive mothers was investigated. Of 41 HIV-uninfected infants, 3 (7%) were positive for HHV-6 DNA in the first month of life, suggesting possible intrauterine infection. The cumulative infection rates of HHV-6 at 6 and 12 months of age were significantly lower in HIV-infected children (11% and 33%, respectively) than in uninfected children (28% and 78%, respectively; P<.001). There was an association between high CD4+ cell numbers (>15%) before HHV-6 infection and high HHV-6 infection rate. Twenty-two infants with HIV classed as Centers for Disease Control and Prevention stages N1 or N2 were studied for an association of HHV-6 infection with progression of HIV disease. Ten of the infants had HHV-6, and 12 did not. In 5 of the infants without HHV-6 (42%), HIV disease had not progressed by 1 year of age; however, HIV disease had progressed in all 10 children with HHV-6 infection. These results suggest an association of HHV-6 infection and progression of HIV disease in the study children with vertical HIV-1 infection (P<.05).

CD4 Lymphocyte Count↗