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K Anzai

Publications and source records attributed to K Anzai.

At least 37 records · Page 2Linked to original sources

Phospholipid translocation from the outer to the inner leaflet of synaptic vesicle membranes isolated from the electric organ of Japanese electric ray Narke japonica.

The phospholipid translocation from the outer to the inner leaflet of synaptic vesicles isolated from the electric organ of the Japanese electric ray, Narke japonica, was measured using fluorescent phospholipid probes. Phosphatidylcholine (PC), phosphatidylethanolamine (PE), or phosphatidylserine (PS) with a fluorescent NBD-labeled short acyl chain at the sn-2 position was mixed with purified synaptic vesicles and the probe in the outer leaflet of the membranes was reduced with dithionite to quench the fluorescence from time to time. The percentage of fluorescence remaining after the dithionite treatment served as an index for the phospholipid translocation. The results obtained indicated that about 30, 13, and 9% of NBD-PE, NBD-PS, and NBD-PC, respectively, were translocated from the outer to the inner leaflet in 3 h. Thus, the translocation activity in synaptic vesicle membranes was much higher for PE than for PS, in contrast to the previous results obtained with plasma membranes, including synaptosomal membranes. The percentages of the phospholipid in the inner leaflet at equilibrium were estimated to be 41, 31, and 14% for PE, PS, and PC, respectively. The translocation was inhibited by pretreatment with an SH reagent, iodoacetamide, indicating the involvement of a proteinaceous translocator. These data may provide a biochemical basis for elucidating the mechanisms of membrane fusion and exocytosis at nerve endings.

4-Chloro-7-nitrobenzofurazan↗

Analysis of the expression of CagA and VacA and the vacuolating activity in 167 isolates from patients with either peptic ulcers or non-ulcer dyspepsia.

OBJECTIVES: The goals of this study were: 1) to examine the prevalence of cytotoxin-associated protein (CagA), vacuolating cytotoxin (VacA), and the vacuolating cytotoxin activity (VCA) in vitro of infecting Helicobacter pylori isolates and 2) to clarify the relation between the expression of these virulence factors and the occurrence of peptic ulceration. METHODS: One hundred sixty-seven clinical isolates of H. pylori from patients with peptic ulcer disease (gastric ulcer, 62 cases; duodenal ulcer, 48 cases) and nonulcer dyspepsia (57 cases) were studied regarding their genetic and phenotypic properties. RESULTS: Type 1 bacteria, which had both CagA and VCA, and type 2 bacteria, which did not express either CagA or VCA, represented 62.9% and 7.8%, respectively; the remaining 29.4% had an intermediate phenotype, expressing either CagA independent of the presence of VCA (CagA+VCA-) or vice versa (CagA-VCA+). CagA+VCA- and CagA-VCA+ bacteria represented 17.4 % and 12.0%, respectively, both of which were more numerous than the type 2 category. The proportion of the CagA-positive isolates was significantly higher in both the duodenal ulcer (97.9%) and gastric ulcer (83.9%) patients than in the non-ulcer dyspepsia patients (61.4%) (p < 0.01). On the other hand, the proportion of VacA/VCA-positive isolates was not significantly different between peptic ulcer disease and non-ulcer dyspepsia. CONCLUSIONS: The currently used classification of this bacterium based on the concomitant expression of CagA and VacA/VCA into the two major types is not adequate. The CagA-positive phenotype thus may be important as a virulence marker for peptic ulcer disease independent of the presence of VacA/VCA.

Adult↗

[Aging of macular function as seen in multifocal electroretinograms].

Multifocal electroretinograms were recorded from 32 eyes of 32 young and aged healthy volunteers to investigate the change in electrophysiological functions with age in the central, nasal, temporal, superior, and inferior retina. The amplitude and latency of the first negative and positive waves were analyzed statistically in correlation with age. In all regions, amplitudes of focal responses tended to diminish with age. There was significant inverse correlation between amplitude and age in the central retina at 2 and 8 degrees, but no significant correlation was found in the other regions. These facts suggest that the macular retina tends to show functional deterioration with age when compared with other retinal areas.

Adolescent↗

[Squatting test].

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Autonomic Nervous System↗

A novel lipophilic spin probe for the measurement of radiation damage in mouse brain using in vivo electron spin resonance (ESR)

As a possible lipophilic spin probe of in vivo electron spin resonance (ESR), 3-methoxy carbonyl-2,2,5,5-tetramethyl-pyrrolidine-1-yloxy (MCPROXYL) was examined. The permeability of the blood-brain barrier to this compound was evaluated with a brain uptake index and autoradiography, with result that this probe is well distributed in the brain. The in vivo ESR spectra were measured in the head and the abdomen of MCPROXYL-injected living mice. The rate of signal decay of MCPROXYL in the head measured at one hour after X-irradiation was about 75% of that of the controls. The decrease in the head seems to be related to the early response of the brain to X-irradiation. This is the first report that the behavior of free radical such as MCPROXYL in the brain is influenced by X-irradiation. MCPROXYL is thus useful as a novel spin probe for in vivo ESR to monitor the radiation damage in the brain.

Animals↗

Mutational analysis reveals that an array of GCAAG/CTTGC motifs between sprit promoter sequences for RNA polymerase III is essential for neural BC1 RNA transcription.

BC1 RNA is expressed from an identifier (ID) sequence by RNA polymerase III (Pol III) and occurs in neural cells as a ribonucleoprotein particle (BC1 RNP). On the BC1 RNA gene, between the Pol III promoter A and B boxes, there is a region which contains short inverted repeats, including three GCAAG/CTTGC motifs. We found that a nuclear protein binds specifically to this region and, using an in vitro transcription system, demonstrated that point mutations within these motifs markedly inhibit BC1 RNA transcription. These results suggest that the GCAAG/CTTGC motif region and its binding protein may play a role in the transcription of BC1 RNA. Moreover, we demonstrated that transcription is repressed by a concomitant molar excess of BC1 RNA and that the BC1 RNA transcribed by this system forms an RNP with nuclear protein(s), suggesting some interaction of BC1 RNA with transcription factor(s).

Animals↗

Membrane permeabilization mechanisms of a cyclic antimicrobial peptide, tachyplesin I, and its linear analog.

Tachyplesin I (T-SS), an antimicrobial peptide from Tachypleus tridentatus, has a cyclic antiparallel beta-sheet structure maintained by two disulfide bridges. The peptide effectively permeabilizes both bacterial and artificial lipid membranes. T-Acm, a linear analog peptide with the four SH groups protected by acetamidomethyl groups, exhibits a much weaker membrane-permeabilizing activity in spite of a greater disruption of the lipid organization [Matsuzaki, K., Nakayama, M., Fukui, M., Otaka, A., Funakoshi, S., Fujii, N., Bessho, K., & Miyajima, K. (1993) Biochemistry 32, 11704-11710]. To clarify the efficient permeabilization mechanism of T-SS, we studied the interactions of both peptides with liposomes and planar lipid bilayers. The cyclic peptide capable of spanning the bilayer (ca. 3 nm length) was found to form an anion-selective pore and translocate across the bilayer coupled with the pore formation. A cis-negative transmembrane potential facilitated the pore formation compared with the cis-positive potential. In contrast, the linear peptide failed to translocate. Instead, it impaired the membrane barrier by disrupting the lipid organization with morphological changes in the vesicles.

Amino Acid Sequence↗

De novo design, synthesis, and characterization of a pore-forming small globular protein and its insertion into lipid bilayers.

The question of how to design a water-soluble globular protein remains. We report here the synthesis of a native-like and pore-forming small globular protein (SGP, 69 amino acid residues). The protein was designed to have four helices: a Trp-containing short hydrophobic helix in the middle surrounded by three Tyr-containing long basic amphiphilic helices. Size-exclusion chromatography and CD measurements indicated that in buffer solution SGP is monomeric with a 50% helical structure. SGP did not completely denature even at high temperature (90 degrees C) and at relatively high Gu x HCl concentration so that the denaturant concentration at the midpoint of the transition is 5 M. Dye binding studies and fluorescence energy transfer experiments showed that SGP possesses a hydrophobic binding site and its Trp of the central helix is present at a relatively hydrophobic region and accepts the energy from Tyr(s) in other amphiphilic helices, indicating that SGP takes a stable globular-like structure in aqueous solution. From the depth-dependent fluorescent studies using egg PC liposomes containing n-doxyl fatty acids and brominated phospholipid as quenchers, it was found that the hydrophobic central alpha-helix is able to enter spontaneously into the lipid bilayers and the Trp in the central alpha-helix is located at about the middle of the alkyl chain in the outer layer of the phospholipid bilayer. The peptide is also able to increase the membrane permeability with two modes of current (basal current and single ion channel) in planar phospholipid bilayers, indicating the spontaneous insertion of the protein into the lipid bilayer (basal current) and then the formation of a uniform size of channel pore (14 pS). SGP is useful as a basic and starting model to find good amino acid sequences that fold to a desired protein structure and to search translocation mechanisms from aqueous solution into lipid bilayers.

Amino Acid Sequence↗

In vivo electron paramagnetic resonance studies on oxidative stress caused by X-irradiation in whole mice.

The effect of x-irradiation on the reduction rates of nitroxyl radicals was examined in whole mice using in vivo EPR. One hour after irradiation, the reduction rates of nitroxyl increased up to 15 Gy irradiation, but decreased over this dose. The enhancement of the reduction rate of nitroxyl was suppressed by preadministration of a radioprotector, cysteamine, suggesting that the enhancement of nitroxyl reduction is related to the radiation damage. Thiobarbituric acid-reactive substances (TBARS) in liver homogenate were increased by x-irradiation, indicating that x-irradiation induced oxidative stress in mice. Endogenous antioxidant, alpha-tocopherol, and the activities of antioxidative enzymes such as superoxide dismutase (SOD), catalase, and glutathione peroxidase were not induced by x-irradiation under these experimental conditions. Eventually the nitroxyl reduction in whole mice should be enhanced by the oxidative stress due to x-irradiation. An in vivo EPR system probing the nitroxyl reduction should be applicable to the noninvasive study on the oxidative stress caused by radiation.

Animals↗

Hydroxyl and superoxide anion radical scavenging activities of natural source antioxidants using the computerized JES-FR30 ESR spectrometer system.

Free radical scavenging activities of water-soluble extracts from some natural sources, health foods, and antioxidant substances were measured using the JES-FR30 JEOL spectrometer. The objective was to develop a standardized method whereby comparison could be made between the radical scavenging activities of complex mixtures. Scavenging of hydroxyl radical was determined using DMPO. Activity was calibrated using a standard material, L-ascorbic acid 2-[3,4-dihydro-2,5,7,8-tetramethyl-2-(4,8,12-trimethyltridecyl)-2H -1- benzopyran-6yl-hydrogen phosphate] potassium salt (EPC-K1), an analog of vitamin C and vitamin E which is water soluble and stable at room temperature. The order of greatest hydroxyl radical scavenging activity was green tea extract, pine bark extract (Pycnogenol), Ginkgo Biloba extract (EGb 761), a flavonoid blend of several fruit and vegetable extracts (GNLD), and Bio-Normalizer (Sun-O Corp). Activity was determined after treatment of samples with ascorbic acid oxidase. This treatment revealed the presence of ascorbate in some natural extracts and commercial preparations. The pine bark extract was the most heat resistant and had ascorbate-like activity in the preparations. Scavenging of superoxide anion was determined using the spin trap, 5,5-dimethyl-1-pyrroline-N-oxide (DMPO), and analyzed by comparison with a standard curve made with superoxide dismutase. Comparison of the water solubilized components of natural source antioxidants showed that filtrates fractionated using centrifuge type Millipore filter tubes (M.W. < 100,000; M.W. < 10,000) also had almost the same SOD-like activity. Samples were also treated with ascorbate oxidase or by heating (100 degrees C for 10 min). The order of activity, from greatest to least, was Ginkgo biloba extract EGb 761, pycnogenol, beta-catechin, tea and BioNormalizer.

Antioxidants↗

Direct evidence for the contribution of B cells to the progression of insulitis and the development of diabetes in non-obese diabetic mice.

The non-obese diabetic (NOD) mouse is an excellent animal model of autoimmune diabetes associated with insulitis. The progression of insulitis causes the destruction of pancreatic beta cells, resulting in the development of hyperglycemia. Although it has been well documented that T cells are required for the development of insulitis and diabetes in NOD mice, the importance of B cells remains unclear. To clarify the role of B cells in the pathogenesis of NOD mice, we therefore generated B cell-deficient NOD (B-NOD) mice. Surprisingly, none (of 13) of the B-NOD mice developed diabetes by 40 weeks of age, while the control littermates with B cells (B+NOD) suffered from a high proportion (43 of 49) of diabetes. The insulin reactivity of B+NOD mice was significantly impaired, while the B-NOD mice showed a good insulin response, thus suggesting the pancreatic beta cell function to be well preserved in B-NOD mice. Although B-NOD mice did develop insulitis, the extent of insulitis was significantly suppressed. These data thus provide the direct evidence that B cells are essential for the progression of insulitis and the development of diabetes in NOD mice.

Animals↗

[Immunodeficiency and carcinogenesis in patients with chronic active Epstein-Barr virus infection].

Three adult patients with chronic active Epstein-Barr virus infection (CAEBV) had high anti-EBV-VCA antibody, positive anti-EA, low anti-EBNA and were associated with systemic lymphadenopathies and immunosuppression. The case 1 and 2 had elevated serum immunoglobulin levels, and recurrent infections, and case 3 showed pancytopenia. These 3 cases developed both EBV and latent membrane protein (LMP) positive malignant histiocytosis, EBV positive but LMP negative plasmacytoma, and EBV negative acute myelogeneous leukemia, respectively. It was suggested that CAEBV belonged to high risk groups for the development of malignant neoplasms. Since HLA of the case 1 and his father was identical, we conducted a in vitro cytotoxicity test using EBV transformed autologous B lymphocytes, K562 cells, and Raji cells to clarify the association of immunosuppression and HLA. The case 1 showed a low level of specific cytotoxicity to autologous EBV transformed B cells, while his parents were negative for the specific cytotoxicity. The patient and his parents developed inducible cytotoxicity to all targets after in vitro incubation of peripheral mononuclear cells with recombinant interleukin 2 (rIL-2) for 7 days. The patient and his mother showed lower enhancement of cytotoxicity, while HLA identical father could induce good cytotoxic activity to all targets as well as normal controls, indicating that a low IL-2 induced cytotoxic activity observed in CAEBV was independent of HLA associated immunoregulation at least in the case 1. Further studies are required to clarify the exact mechanisms responsible for the development of CAEBV.

Adult↗

The effects of substituents introduced into 9-aminoacridine on frameshift mutagenicity and DNA binding affinity.

Some derivatives of 9-aminoacridine (1) were synthesized, and their frameshift mutagenicity and DNA binding affinity were studied. The introduction of a methyl group into the acridine ring of 1 reduced the mutagenic activity and the intercalative DNA binding affinity, while the introduction of chlorine increased them. Halogenated derivatives of 1 showed higher toxicity against Salmonella typhimurium TA1537.

Aminacrine↗

Neural BC1 RNA in mouse skeletal muscle is a denervation-induced RNA whose expression is developmentally regulated.

We detected neural BC1 RNA in mouse skeletal muscle. The level of BC1 RNA was high in the fetus, but it declined progressively to the adult level as development proceeded. These observations suggest that this RNA is involved in the prenatal development and differentiation of muscles. Although its developmental expression correlates with the fetal period of polyneuronal innervation, BC1 RNA does not seem to play a direct role(s) in synaptogenesis, since its expression was not restricted to the neuromuscular junction. We also demonstrated that the BC1 RNA level in adult muscle was elevated after denervation, suggesting that changes in the activity of muscles or neural factors caused by axotomy, or both may result in BC1 RNA upregulation.

Actins↗

A voltage-dependent chloride channel from Tetrahymena ciliary membrane incorporated into planar lipid bilayers.

Membrane vesicles from cilia of Tetrahymena thermophila were incorporated into a planar phospholipid bilayer membrane, and single-channel currents across the planar membrane were recorded under voltage-clamp conditions. A novel and reproducible chloride channel was observed when a mixture of phosphatidylethanolamine and phosphatidylcholine was used to form the planar lipid membrane but not when acidic phospholipid mixtures such as asolectin or a mixture containing phosphatidylserine. Using symmetrical 100 mM KCl solutions, the single-channel conductance of the fully open state (O1) was 73.1 pS, with sub-level (O2) conductance of 9.0 pS. The permeability ratio Pc1/Pk was calculated as 3.7, according to the Goldman-Hodgkin-Katz current equation. This channel exhibited characteristic voltage-dependent burst activities. With an increase in membrane potential, the lifetimes of both the burst and interburst states decreased. In the burst state, the frequency of transition between the O1 and O2 states was also voltage-dependent, mainly due to the decrease in the lifetime of the O1 state, with an increase in membrane potential. In addition, channel activity was inhibited by indanyloxyacetic acid-94 (IAA-94), an inhibitor of epithelial chloride channels.

Animals↗

gamma-Hydroxybutyric acid increases intracellular Ca2+ concentration and nuclear cyclic AMP-responsive element- and activator protein 1 DNA-binding activities through GABAB receptor in cultured cerebellar granule cells.

In primary cultures of mouse cerebellar granule cells, a brief stimulation by gamma-hydroxybutyric acid (GHB, 0.1-3 mM) significantly increased the intracellular Ca2+ concentration ([Ca2+]i) in a concentration-dependent manner. In addition, gel mobility assay showed that exposure of the cells to GHB also increased nuclear DNA-binding activity specific for the cyclic AMP-responsive element (CRE) and activator protein 1 (AP-1) transcriptional element in a concentration-dependent manner. The concentration range of GHB that increased the DNA-binding activity was essentially the same as the concentration range that elicited the increase in [Ca2+]i. The GHB-induced increases in [Ca2+]i and nuclear DNA-binding activity were antagonized by specific GABAB antagonists such as p-[3-aminopropyl]-p-diethoxymethylphosphinic acid (CGP 35 348) and 3-N-[1-(S)-(3,4-dichlorobenzyl)ethanol-2-(S)-hydroxy-P-benzylphosphin ic acid (CGP 55 845). In addition, the GHB-induced increase in [Ca2+]i was abolished by pretreatment of the cells with islet-activating protein. Furthermore, treatment of the cells with 1,2-bis(2'-aminophenoxy)ethane-N,N,N',N'-tetraacetic acid tetraacetoxymethyl ester (BAPTA-AM) and thapsigargin blocked the GHB-induced increase in nuclear DNA-binding activity. GHB inhibited [3H]baclofen binding to cultured cerebellar granule cells and mouse cerebellar membranes. These results suggest that stimulation of GABAB receptors by GHB activates intracellular Ca2+ stores and that the increased [Ca2+]i resulting from release of stored Ca2+ plays an important role in increasing the CRE- and AP-1 DNA-binding activities in cultured cerebellar granule cells.

Activating Transcription Factor 1↗

Phosphatidylserine-specific transbilayer lipid translocation in synaptosomal plasma membranes from Narke japonica.

We measured the translocation of exogenous radiolabeled phospholipid probes from the outer to the inner leaflet in the synaptosomal plasma membranes from the electric organs of Narke japonica, a Japanese marine ray. These radioactive probes can provide a convenient and highly sensitive means of measuring the translocation kinetics of phospholipids between outer and inner leaflets of biomembranes that are available only with low yield [Anzai et al. (1993) Biochim. Biophys. Acta 1151, 69-75]. Translocation kinetics revealed that the behavior of phosphatidylserine (PS), phosphatidylethanolamine (PE), and phosphatidylcholine (PC) differed. PS quickly disappeared from the outer leaflet of the bilayer. The translocation of PE and PC was slow and about 80% of the PE- and PC-probes remained in the outer leaflet at 3 h. These results differ from those of translocation in erythrocyte membranes measured using the same probes, where aminophospholipid translocase translocated both PS and PE from the outer to the inner leaflet of the bilayer, although the rate was faster for PS than for PE. In this study, the translocation was apparently PS-specific, and it was inhibited by SH reagent or intrasynaptosomal ATP-depletion. These findings clearly demonstrate that the translocation is driven by an ATP-dependent protein, which has apparent PS-specificity. We suggest that there is a translocase other than erythrocyte-type aminophospholipid translocase in synaptosomal plasma membranes from N. japonica.

Adenosine Triphosphate↗