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Biomedical subjects

H Taguchi

Publications and source records attributed to H Taguchi.

At least 181 records · Page 10Linked to original sources

Relationship between expression of HSP60, urease activity, production of vacuolating toxin, and adherence activity of Helicobacter pylori.

The relationship between the expression of heat shock protein 60 (HSP60) of Helicobacterpylori on the bacterial surface and its pathogenic factors of urease activity, production of vacuolating toxin, and adherence to human gastric carcinoma cells was examined. There was no correlation between urease activity, production of vacuolating toxin, and the expression of HSP60. However, there was a significant correlation between the adherence activity to human gastric carcinoma MKN45 cells and the expression of HSP60 (correlation coefficient; r = 0.68). In an inhibition assay with anti-HSP60 antibody, we examined the adhesion of H. pylori to MKN45 cells. The adherence of 3 of 13 H. pylori strains was inhibited by anti-HSP60 antibody. The results suggest that H. pylori HSP60 may be associated with the adhesion of H. pylori to human gastric cells.

Bacterial Adhesion↗

Leaking gloves.

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Equipment Failure↗

[A case of non-paralytic pontine exotropia due to brainstem infarction].

A case with non-paralytic pontine exotropia due to brainstem infarction is reported. A 58-year-old male developed sudden onset diplopia. Ocular motor findings were as follows; in forward gaze, the left eye was in abduction position. Leftward gaze, the right eye did not adduct with left beating nystagmus of left eye. Rightward gaze, both eyes could make full excursion and upward, downward gaze were possible. These findings was noted at only acute phase, 7 days later NPPE was disappeared. MRI revealed spotty lesion in the paramedian portion of the mid pontine tegmentum. It is important to observe ocular movement at acute phase because NPPE is very important sign in diagnosis of brainstem disorders.

Brain Stem↗

Calorimetric observation of a GroEL-protein binding reaction with little contribution of hydrophobic interaction.

Binding of Escherichia coli chaperonin, GroEL, to substrate proteins with non-native structure, reduced alpha-lactalbumin (rLA) and denatured pepsin, were analyzed by isothermal titration calorimetry at various temperatures in the presence of salt (0.2 M KCl). Both proteins bound to GroEL with 1:1 stoichiometry and micromolar affinity at all temperatures tested. However, thermodynamic properties of their binding to GroEL are remarkably different from each other. While heat capacity changes (DeltaCp) of rLA-GroEL binding showed large negative values, -4.19 kJ mol-1 K-1, that of denatured pepsin-GroEL binding was only -0.2 kJ mol-1 K-1. These values strongly indicate that the hydrophobic interaction is a major force of rLA-GroEL binding but not so for denatured pepsin-GroEL binding. When salt was omitted from the solution, the affinity and DeltaCp of the rLA-GroEL binding reaction were not significantly changed whereas denatured pepsin lost affinity to GroEL. Thus, in the non-native protein-GroEL binding reaction, thermodynamic properties, as well as the effect of salt, differ from protein to protein and hydrophobic interaction may not always be a major driving force.

Calorimetry↗

Isolation of human and fission yeast homologues of the budding yeast origin recognition complex subunit ORC5: human homologue (ORC5L) maps to 7q22.

Orc5p is a subunit of the origin recognition complex in the budding yeast Saccharomyces cerevisiae, which has been shown to play a critical role in both chromosomal DNA replication and transcriptional silencing. We have cloned cDNAs from both human and fission yeast Schizosaccharomyces pombe that encode proteins homologous to the budding yeast and Drosophila Orc5p. Human Orc5p showed 35.1, 22.3, and 19.4% identity to the Drosophila, S. pombe, and S. cerevisiae Orc5p, respectively. We have localized the human ORC5 gene (ORC5L) to chromosome 7 using Southern and PCR analysis of DNA isolated from a panel of human/rodent somatic cell hybrids and mapped the gene locus to 7q22 using fluorescence in situ hybridization. We have identified a YAC clone that contains human ORC5L and maps to chromosome band 7q22.1. We have identified the S. pombe ORC5 gene and located it in a cosmid mapped on chromosome II.

Amino Acid Sequence↗

Structural and functional characterization of homo-oligomeric complexes of alpha and beta chaperonin subunits from the hyperthermophilic archaeum Thermococcus strain KS-1.

To elucidate the function of group II chaperonin, the gene for the chaperonin from the hyperthermophilic archaeum Thermococcus strain KS-1 was cloned and sequenced. Two distinct genes coding for chaperonin subunits, designated alpha and beta, were obtained, and their deduced amino acid sequences are highly homologous to those of group II chaperonins from other sources. The alpha and beta subunits were individually expressed in Escherichia coli. Both of the recombinant subunits assemble to constitute the homo-oligomeric double-ring complexes, which are prone to form large aggregates. The alpha aggregate is dissociated into the typical chaperonin ring complex by incubation in buffer containing 15% (v/v) methanol, while the beta aggregate cannot be dissociated. At high temperature, both of the recombinant complexes have weak ATPase activities. They are able to arrest refolding of a chemically denatured thermophilic enzyme in the absence of ATP, and refolding is resumed when ATP is supplemented. These results suggest that homo-oligomeric complexes of the archaeal chaperonin have activity.

3-Isopropylmalate Dehydrogenase↗

4-alpha-glucanotransferase from the hyperthermophilic archaeon Thermococcus litoralis--enzyme purification and characterization, and gene cloning, sequencing and expression in Escherichia coli.

4-Alpha-Glucanotransferase was purified from cells of Thermococcus litoralis, a hyperthermophilic archaeon. The molecular mass of the enzyme was estimated to be approximately 87 kDa by gel filtration. The optimal temperature for its activity was 90 degrees C. The enzyme catalyzed the transglycosylation of maltooligosaccharides, yielding maltooligosaccharides of various lengths and glucose. When maltoheptaose was used as the substrate, glucoamylase-resistant and glucoamylase-sensitive saccharides were produced. On incubation of amylose with the T. litoralis enzyme, glucoamylase-resistant but alpha-amylase-sensitive molecules were produced, but the amount of reducing sugar showed only slight increases. These results indicate that the T. litoralis enzyme catalyzes not only intermolecular transglycosylation to produce linear alpha-1,4-glucan, but also intramolecular transglycosylation to produce cyclic alpha-1,4-glucan (cycloamylose), similarly to potato 4-alpha-glucanotransferase (called disproportionating enzyme). The gene encoding the T. litoralis 4-alpha-glucanotransferase was cloned, sequenced and expressed in Escherichia coli. The nucleotide sequence of the gene encoded a 659-amino acid protein with a calculated molecular mass of 77,883 Da. The amino acid sequence of the T. litoralis enzyme showed high similarity with those of alpha-amylases of Pyrococcus furiosus, a hyperthermophilic archaeon, and Dictyoglomus thermophilum, an extremely thermophilic bacterium, but little similarity with those of other known 4-alpha-glucanotransferases.

Amino Acid Sequence↗

Human herpesvirus 6 (HHV-6)-positive Burkitt's lymphoma: establishment of a novel cell line infected with HHV-6.

Human herpesvirus 6 (HHV-6) DNA has been detected in several human lymphoproliferative disorders. We report a case of HHV-6-infected Burkitt's lymphoma, from which a cell line, designated Katata, has been established. Katata cells had an immature B-cell phenotype with an L3 morphology and carried a t(8;14)(q24;q32) chromosomal abnormality. The HHV-6 DNA sequences were detected in both the patient's tumor cells and Katata cell line by polymerase chain reaction using three sets of primers that target different regions of HHV-6 DNA. The presence of HHV-6 DNA in Katata cells was also shown by Southern blot hybridization with the BamHI fragment of HHV-6. It is likely that the virus is in a latent state, since (1) virion-associated protein was not expressed in Katata cells, (2) transcriptional level of the immediate-early gene was very low, and (3) no viral particles were observed by electron microscopy. Katata cells were highly tumorigenic in nude mice and the tumor cells also contained HHV-6 DNA. We have successfully obtained several clonal lines by allowing the cells to form colonies in soft agarose and by the limiting dilution method. HHV-6 DNA was detectable in all 13 clones analyzed, suggesting that virtually all Katata cells are infected with HHV-6. This is the first report of a case of HHV-6+ Burkitt's lymphoma in the absence of Epstein-Barr virus. Furthermore, there has been no report of lymphoma cell lines that are persistently and nonproductively infected with HHV-6. The Katata Burkitt's lymphoma cell line, therefore, would provide a useful tool for studies of the mechanisms of HHV-6 latency and reactivation.

Animals↗

Purification and molecular cloning of the group II chaperonin from the acidothermophilic archaeon, Sulfolobus sp. strain 7.

To elucidate the structure and functional mechanism of the group II chaperonin, molecular cloning of the gene for and purification of the group II chaperonin from the thermoacidophilic archaeon Sulfolobus sp. strain 7 were performed. The purified Sulfolobus chaperonin exhibited weak ATPase activity and arrested the spontaneous refolding of the thermophilic lactate dehydrogenase. However, the refolding could not be resumed by addition of ATP. The chaperonin consists of two kinds of subunits, alpha and beta, the deduced amino acid sequences of which were highly homologous to those of TF56 and TF55 from Sulfolobus shibatae, respectively.

Adenosine Triphosphate↗

ATP-, K+-dependent heptamer exchange reaction produces hybrids between GroEL and chaperonin from Thermus thermophilus.

Chaperonin from Thermus thermophilus (Tcpn6014.Tcpn107) splits at the plane between two Tcpn607 rings into two parts in a solution containing ATP and K+ (Ishii, N., Taguchi, H., Sasabe, H., and Yoshida, M. (1995) FEBS Lett. 362, 121-125). When Escherichia coli GroEL14 was additionally included in the solution described above, hybrid chaperonins GroEL7.Tcpn607 and GroEL7. Tcpn607.Tcpn107 were formed rapidly (<20 s) at 37 degrees C. The hybrid was also formed from Tcpn6014 and GroEL14 but not from a mutant GroEL14 lacking ATPase activity. The hybrid formation was saturated at approximately 300 microM ATP and approximately 300 mM K+. These results imply that GroEL14 also splits and undergoes a heptamer exchange reaction with Thermus chaperonin under nearly physiological conditions. Similar to parent chaperonins, the isolated hybrid chaperonins exhibited ATPase activity that was susceptible to inhibition by Tcpn107 or GroES7 and mediated folding of other proteins. Once formed, the hybrid chaperonins were stable, and the parent chaperonins were not regenerated from the isolated hybrids under the same conditions in which the hybrids had been formed. Only under conditions in which GroEL in the hybrids was selectively destroyed, such as incubation at 70 degrees C, Thermus chaperonin, but not GroEL14, was regenerated from the hybrid. Therefore, the split reaction may not be an obligatory event repeated in each turnover of the chaperonin functional cycles but an event that occurs only when chaperonin is first exposed to ATP/K+.

3-Isopropylmalate Dehydrogenase↗

Chaperonin-mediated folding of green fluorescent protein.

Chaperonin-mediated folding of green fluorescent protein (GFP) was examined by real-time monitoring of recovery of fluorescence and by gel filtration high-performance liquid chromatography. Acid-denatured GFP can fold spontaneously upon dilution into the neutral buffer. When Escherichia coli GroEL/ES was present, folding of GFP was arrested. Folding was resumed by subsequent addition of 100 microM or 1 mM ATP, and native GFP was regenerated to 100% yield. When folding was resumed by 10 microM ATP (1.4 mol/mol GroEL subunit), about 60% of GFP recovered native structure, and one-half of them (30%) was found to be still bound to GroEL/ES, indicating the occurrence of folding in the central cavity of the GroEL ring underneath GroES (cis-folding). Because the overall rates of GroEL/ES-, ATP-mediated GFP folding were all similar to that of spontaneous folding, it was concluded that cis-folding proceeded as fast as spontaneous folding. The GroEL/ES-bound native GFP was observed only when both GroES and ATP (but not ADP) were present in the folding mixture. Holo-chaperonin from Thermus thermophilus, which was purified as a cpn60/10 complex, exhibited the similar cis-folding. Consistently, ATP-dependent exchange of cpn10 in the holo-chaperonin with free cpn10 was observed.

Adenosine Diphosphate↗

Molecular cloning of the human methylthioadenosine phosphorylase processed pseudogene and localization to 3q28.

Human methylthioadenosine phosphorylase (MTAP) is a purine and methionine metabolic enzyme present ubiquitously in all normal tissues, but often deleted in many types of cancer. The gene for this enzyme maps to chromosome 9 at band p21 where the cyclin-dependent kinase inhibitor genes for p16 and p15 also reside. During our efforts to clone this gene we also isolated a phage clone containing a processed pseudogene of MTAP. The sequence is 92% homologous to the MTAP cDNA, is flanked at its 3' end by a repetitive element, but does not possess a poly(A) stretch. We localized this processed pseudogene to band 28 on the long arm of chromosome 3 by fluorescence in situ hybridization. All 22 malignant cell lines with deletions at 9p21 screened possessed the pseudogene.

Amino Acid Sequence↗

Flow cytometric analysis for adhesion of Vibrio cholerae to human intestinal epithelial cell.

The adhesion of Vibrio cholerae O1 strains to human intestinal epithelial cell, Intestine 407, was analyzed by flow cytometer. According to positive percentages of Intestine 407 cells adhered by V. cholerae, two groups of V. cholerae strains were classified as follows: more adhesive (more than 50%), less adhesive (less than 50%) strains. In addition, the fluorescence intensity after attachment of V. cholerae was directly correlated to the number of the microorganisms. It was concluded that flow cytometry is a useful and objective method for analyzing adhesion of V. cholerae to cultured cells.

Bacterial Adhesion↗

Angioimmunoblastic lymphadenopathy with disseminated human herpesvirus 6 infection in a patient with acute myeloblastic leukemia.

A 47-year-old man with acute myeloblastic leukemia (AML) developed angioimmunoblastic lymphadenopathy with dysproteinemia (AILD) 4 months after induction chemotherapy for AML. During a leukopenic period, the patient suffered from pericarditis with massive pericardial effusion in which human herpesvirus 6 (HHV-6) DNA was detected. Although complete remission of AML was achieved, fever persisted and atypical skin rash followed by generalized lymphadenopathy along with polyclonal hypergammaglobulinemia appeared. A diagnosis of AILD was made on a biopsy specimen of the inguinal lymph node. The patient died of fulminant hepatitis and the autopsy showed lymphomatous infiltrates involving the liver, bone marrow, lungs, spleen, kidneys and heart. HHV-6 DNA sequences were identified in the biopsy specimen of the lymph node and in the involved organ tissues. HHV-6 in this patient was variant B. It is known that HHV-6 can be reactivated in immunocompromised patients and causes severe complications. This unusual clinical course suggests that the immunosuppression associated with AML and the additional iatrogenic immunosuppression following cytopenia-inducing chemotherapy predisposed the patient to reactivated HHV-6 infection. The sequential detection of this virus before and after manifestation of AILD may support the evidence that HHV-6 infection could directly or indirectly trigger AILD. This is the first time that such a sequence of events has been reported to our knowledge. The possibility of HHV-6 infection should be considered when unexplained fever and generalized lymphadenopathy are seen in patients with leukemia, and administration of antiviral agents should be considered for the diagnostic evaluation.

Antineoplastic Combined Chemotherapy Protocols↗

Involvement of Glu-264 and Arg-235 in the essential interaction between the catalytic imidazole and substrate for the D-lactate dehydrogenase catalysis.

For Lactobacillus pentosus D-lactate dehydrogenase, the binding of 2-ketoacids is markedly stabilized through interactions between the protonated imidazole of His-296, an acid/base catalyst of the enzyme, and the carbonyl oxygen of 2-ketoacids. The replacement of Arg-235 with Gln destabilized the inhibitory binding of oxamate much more than that of formate, acetate, or propionate, and the Arg to Lys substitution specifically diminished only oxamate binding. On the other hand, replacement of a conserved Glu, Glu-264, with Gln severely impaired the enzyme activity and markedly reduced affinity to 2-keto acids. The pH dependence of the oxamate inhibition revealed that the substitutions of Arg-235 and Glu-264 induced a great loss of the imidazole-carbonyl interaction. However, replacement of Glu-264 with Asp, another acidic amino acid, affected the enzyme function less than the Glu to Gln substitution. In addition, both the Arg-235 and Glu-264 substitutions induced marked increases in the primary isotope effect on the catalysis, suggesting that these amino acids stimulate the hydrogen transfer step in the catalysis. We concluded, therefore, that the guanidino and carboxyl groups of Arg-235 and Glu-264, respectively, cooperatively promote the essential imidazole-substrate interaction, enhancing the substrate binding and catalysis.

Arginine↗

Effect of sofalcone on adherence, production of vacuolating toxin, and induction of interleukin-8 secretion by Helicobacter pylori.

We examined the effect of sofalcone, a mucosal protective agent that has been reported to inhibit growth of Helicobacter pylori, on adherence, production of vacuolating toxin (VT), and induction of interleukin-8 (IL-8) secretion by H. pylori. Mixing VT with various concentrations (1.5-100 micrograms/ml) of sofalcone resulted in a 50% decrease in the VT titer. When toxigenic H. pylori strains were incubated in the presence of sofalcone (20 and 40 micrograms/ml), although bacterial growth was not inhibited significantly there was significant inhibition of VT production. Notable inhibition of IL-8 secretion by human gastric cancer cells (MKN 45) was detected in the presence of sofalcone (20-100 micrograms/ml) after co-incubation with H. pylori strains. In flow cytometric analysis, adherence of H. pylori strains to MKN 45 cells was significantly inhibited by treatment with sofalcone (20-60 micrograms/ml), indicating at least one reason for the inhibition of IL-8 secretion. These results show that sofalcone is an effective mucosal protective agent that inhibits both production of VT and induction of IL-8 secretion.

Anti-Ulcer Agents↗