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Biomedical subjects

M Seki

Publications and source records attributed to M Seki.

At least 127 records · Page 7Linked to original sources

Synaptology and ultrastructural characteristics of laryngeal cricothyroid and posterior cricoarytenoid motoneurons in the nucleus ambiguus of the rat.

The laryngeal motoneurons innervating the cricothyroid muscle (CT) are located in the semicompact formation just ventral to the rostral part of the compact formation of the nucleus ambiguus. The motoneurons innervating the posterior cricoarytenoid muscle (PCA) are located in the loose formation. We retrogradely labeled the CT and the PCA motoneurons using cholera toxin subunit B-conjugated horseradish peroxidase, and determined the ultrastructure and synaptic organization of these neurons. The CT and the PCA motoneurons had the appearance of alpha-motoneurons, i.e., large, oval or polygonal cells containing well-developed organelles and a prominent spherical nucleus. Two kinds of neurons were recognized among the PCA motoneurons. The one (PCA-A) was significantly smaller than the other (PCA-B). The average number of axosomatic terminals in a section was significantly largest in the PCA-B (56.6), smaller in the PCA-A (36.0), and smallest in the CT (32.3) neurons. Most of the axosomatic terminals (64.7%) contained pleomorphic vesicles and made symmetric synaptic contacts (Gray's type II) with the PCA-A neurons, while more than 60% contained round vesicles with asymmetric synaptic contacts (Gray's type I) in the CT (69.5%) and the PCA-B (60.6%) neurons. A few terminals associated with subsurface cisterns were present on all laryngeal motoneurons. These results indicated that the CT motoneurons may receive mostly excitatory terminals, whereas the PCA muscle may be regulated by neurons having many inhibitory terminals, and neurons having many excitatory terminals.

Animals↗

Molecular characterization and functional regulation of a novel rat liver-specific organic anion transporter rlst-1.

BACKGROUND & AIMS: Recently, we isolated a new complementary DNA (cDNA) encoding human liver-specific organic anion transporter (LST-1), representing the multispecificity of human liver. The aim of this study was to isolate a rat counterpart of human LST-1 and examine the expression regulation of its messenger RNA (mRNA) to clarify the molecular basis of cholestasis. METHODS: A rat liver cDNA library was screened with human LST-1 cDNA as a probe. Xenopus oocyte expression system was used for functional analysis. Northern blot analyses were performed using the isolated cDNA (termed rlst-1). The bile duct ligation model and the cecum ligation and puncture model were used for expression analyses. RESULTS: rlst-1 encodes 652 amino acids, predicting at least 11 transmembrane regions. The overall homology with human LST-1 was 60.2%, which is the highest among all known organic anion transporters. rlst-1 also belongs to the same new gene family as human LST-1, located between the organic anion transporter family and the prostaglandin transporter. rlst-1 preferably transports taurocholate (K(m), 9.45 micromol/L) in an Na(+)-independent manner. The rlst-1 mRNA is exclusively expressed in the liver. In both the bile duct ligation model and the cecum ligation and puncture model, mRNA expression levels of rlst-1 were down-regulated. CONCLUSIONS: rlst-1 is a counterpart of human LST-1 and is one of the important transporters in rat liver for the clearance of bile acid. The expression of rlst-1 may be under feedback regulation of cholestasis by biliary obstruction and/or sepsis.

Amino Acid Sequence↗

Induction of heme oxygenase produces load-independent cardioprotective effects in hypertensive rats.

Although heme oxygenase (HO) has been suggested to be involved in the regulation of cardiovascular function through production of carbon monoxide (CO), the pathophysiological significance of HO in hypertensive organ damage remains unknown. We examined the effects of inducing HO-1 mRNA by stannous chloride (SnCl2) on cardiac hypertrophy in stroke-prone spontaneously hypertensive rats (SHR-SP/Izm). Chronic administration of SnCl2 resulted in a significant decrease in left ventricular (LV) weight/body weight ratio and LV brain natriuretic peptide (BNP) mRNA levels as a marker of cardiac hypertrophy and a significant increase in LV HO-1 mRNA levels and LV cGMP contents in SHR-SP/Izm, while there was no significant change in systemic blood pressure. These results provide the first evidence that induction of HO in the heart attenuates cardiac hypertrophy in load-independent mechanism in genetically hypertensive rats.

Animals↗

Dependence of power Doppler image on a high pass filter instrumented in ultrasound machine.

The aim of this study was to examine the influence of flow velocity, beam incident angle and a wall motion filter on the intensity of power Doppler image of steady flow in vitro. Power Doppler images of flow were recorded using a 7.5-MHz linear transducer with the fixed repetition frequency, gain and frame rate settings at the velocity levels of 15, 20, 35 and 65 cm/s with the beam incident angles of 30 degrees and 60 degrees. The power (P) of received Doppler signal was digitized to 25 gray values (G) for imaging using a wall motion filter with the transfer function: G = a x log P + b (a, b = constant values). Image intensity was measured at the center of the flow image off-line and compared with the flow velocity measured by conventional pulsed wave Doppler. Below the Nyquist limit, G increased as velocity increased, and G with the incident angle 30 degrees was lower than those with 60 degrees. Overall relationship between the Doppler shift frequency and the image intensity exhibited an excellent correlation when fit to the theoretical curve derived from the filter property (r = 0.97). The signal intensity of power Doppler image of flow depends upon the mean Doppler frequency shift or the flow velocity and was clearly affected by the wall motion filter.

Echocardiography, Doppler↗

Ku in the cytoplasm associates with CD40 in human B cells and translocates into the nucleus following incubation with IL-4 and anti-CD40 mAb.

CD40 plays a critical role in survival, growth, differentiation, and class switching of B lymphocytes. Although Ku is required for immunoglobulin class switching, how CD40 signal transduction is coupled to Ku is still unknown. Here, we show that CD40 directly interacts with Ku through the membrane-proximal region of cytoplasmic CD40. Ku was confined to the cytoplasm in human primary B cells, and the engagement of CD40 on the B cells cultured in the presence of IL-4 resulted in the dissociation of Ku from CD40, translocation of Ku into the nucleus, and increase in the activity of DNA-dependent protein kinase. These findings indicate that Ku is involved in the CD40 signal transduction pathway and may play an important role in the CD40-mediated events.

Antibodies, Monoclonal↗

Expression of CD80 and CD86 on peripheral blood T lymphocytes in patients with systemic lupus erythematosus.

CD80 and CD86 were detected in high amounts on circulating T cells in the peripheral blood of some patients with systemic lupus erythematosus (SLE), using flow cytometry and monoclonal antibodies. Patients with other connective tissue diseases did not have a high percentage of T cells expressing CD80 or CD86 in their peripheral blood. CD80 was expressed mainly on CD4 T cells, whereas CD86 was expressed on CD8 T cells, and these two populations were associated with particular clinical features. These two molecules were expressed on different T-cell populations and might have different roles in the generation and regulation of immune responses. Since high expression of CD86 on T cells was detected much earlier than the appearance of clinical features and a high titer of anti-DNA antibody, it may be a useful parameter for predicting the flare of SLE.

Adult↗

Elevated levels of beta-chemokines in bronchoalveolar lavage fluid (BALF) of individuals infected with human T lymphotropic virus type-1 (HTLV-1).

Pulmonary complications are known to develop in HTLV-1 carriers, including T lymphocytic alveolitis, and increased IL-2 receptor alpha (CD25)-bearing T cells have been found in BALF. Several chemokines may contribute to accumulation of T lymphocytes in the lungs of HTLV-1 carriers. Here, we compared the distribution of T lymphocyte subsets and beta-chemokines, such as macrophage inflammatory peptide-1alpha (MIP-1alpha), regulated on activation normal T expressed and secreted (RANTES), and macrophage chemoattractant protein-1 (MCP-1), in BALF and peripheral blood between HTLV-1 carriers and non-infected healthy normal subjects. Flow cytometric analysis with MoAbs to cell surface antigens was used to identify T lymphocyte subsets in BALF samples from HTLV-1 carriers (n = 13) and non-infected healthy controls (n = 10). The levels of different beta-chemokines were estimated by ELISA. High percentages of CD3+ cells, CD3 expressing HLA-DR antigen and CD3+CD25+ cells were detected in BALF of HTLV-1 carriers compared with non-infected controls. The concentration of MIP-1alpha in BALF of patients was significantly higher than in non-infected healthy controls and correlated well with the percentage of CD3+CD25+ cells. The level of RANTES in BALF was also significantly high in HTLV-1 carriers, but did not correlate with the percentage of CD3+CD25+ cells. On the other hand, the level of MCP-1 in BALF of HTLV-1 carriers was not different from that of controls. Our results suggest a possible interaction between activated T cells bearing CD25 and beta-chemokines, especially MIP-1alpha, which may contribute to the pulmonary involvement in HTLV-1 carriers.

Adult↗

Regional insertional mutagenesis of genes on Arabidopsis thaliana chromosome V using the Ac/Ds transposon in combination with a cDNA scanning method.

For regional insertional mutagenesis of Arabidopsis thaliana genes, we combined a cDNA scanning method (Hayashida et al. Gene 1995; 165:155-161) and an Ac/Ds transposon designed for local mutagenesis, and evaluated this approach with two overlapping yeast artificial chromosome (YAC) clones, CIC7E11 and CIC8B11, on A. thaliana chromosome 5. We applied a previously developed novel cDNA selection method using DNA latex particles (cDNA scanning method) to the two YAC clones and constructed two sub-libraries in which cDNAs for genes on each YAC DNA were concentrated. From each sub-library we isolated cDNAs for genes on each YAC DNA, partially sequenced them, and produced expressed sequence tags (ESTs). In total, 113 non-redundant groups of cDNAs were obtained. Forty-four per cent of these EST clones were novel, and 34% had significant homology to functional proteins from various organisms. In parallel, we transposed Ds from a donor Ds-GUS-T-DNA line, Ds4391-20, already mapped to the CIC7E11/8B11 region. We obtained Ds-transposed lines and recovered their Ds-flanking genomic DNAs by thermal asymmetric interlaced (TAIL) polymerase chain reaction (PCR). Dot-blot analysis indicated that 20% of the lines contained transposed Ds in the CIC7E11/8B11 region, suggesting that this Ac/Ds transposon system is effective for regional insertional mutagenesis. To isolate Ds insertion mutants in the genes identified from the CIC7E11/8B11 region, we carried out PCR screening from 800 Ds-containing lines using Ds-specific and gene-specific primers that were designed from the 113 cDNA sequences identified by the cDNA scanning method. We found that 49 lines contain Ds insertion mutations, and that five lines contain Ds mutations in genes that are mapped to the sequenced CIC7E11/8B11 genomic DNA region. These results indicate that combining the cDNA scanning method and the Ac/Ds transposon gives a powerful tool for regional insertional mutagenesis not only in Arabidopsis but also in other plants or crops whose genomes are not sequenced.

Arabidopsis↗

Mapping of 25 drought-inducible genes, RD and ERD, in Arabidopsis thaliana.

We mapped 25 Arabidopsis thaliana drought-inducible genes. Responsive to Dehydration (RD) and Early Responsive to Dehydration (ERD), to the Arabidopsis genome and compared map positions with those of mutants that show environmental stress response. We hybridized CIC yeast artificial chromosome (YAC) library filters with the cDNAs and determined the map positions of 18 corresponding genes. We screened the P1 library with 7 other clones and analyzed segregation of their restriction fragment length polymorphisms (RFLP) in recombinant inbred (RI) lines. One cDNA could be mapped because it had been sequenced by the Arabidopsis genome sequencing program.

Adaptation, Biological↗

Regional insertional mutagenesis of specific genes on the CIC5F11/CIC2B9 locus of Arabidopsis thaliana chromosome 5 using the Ac/Ds transposon in combination with the cDNA scanning method.

We have recently developed a novel cDNA selection method (the cDNA scanning method) to select cDNAs for expressed genes in specific regions of the genome [Hayashida et al. (1995) Gene 165: 155, Seki et al. (1997) Plant J. 12: 481]. The gene Ds is known to transpose mainly in its neighborhood. By combining the cDNA scanning method with this trait of Ds, we started functional analysis of region-specific expressed genes on the Arabidopsis thaliana genome. DNA fragments of yeast artificial chromosome (YAC) clones CIC5F11 and CIC2B9 on A. thaliana chromosome 5 were used for the selection of region-specific cDNAs. In total, 50 and 68 cDNA clones were selected from CIC5F11 and CIC2B9, respectively. In parallel, we transposed Ds from a donor T-DNA line, which was mapped on the CIC5F11/CIC2B9 locus of chromosome 5, and obtained Ds-transposed lines. To isolate Ds insertion mutants in the 10 specific genes identified by the cDNA scanning method, we carried out PCR-based screening of 100 Ds-transposed lines and found that 2 lines contain Ds mutations in the genes isolated. We also isolated Ds-flanking genomic DNAs by thermal asymmetric interlaced PCR (TAIL-PCR) in 153 Ds transposon-tagged lines. Southern blot analysis showed that 14% of the lines contained the transposed Ds in the CIC5F11/2B9 region. This suggests that this Ac/Ds transposon system is effective for region-specific insertional mutagenesis.

Arabidopsis↗

Plastidic RNA polymerase sigma factors in Arabidopsis.

In plant cells, plastid DNA is transcribed by at least two types of RNA polymerase, plastid-encoded RNA polymerase (PEP) and nuclear-encoded RNA polymerase (NEP). PEP is homologous to eubacterial transcription machinery, but its regulatory subunit, sigma (sigma) factor, is not encoded on the plastid DNA. We previously cloned the three nuclear-encoded sigma factor genes from Arabidopsis thaliana and designated them as sigA, sigB, and sigC. By means of RFLP mapping, sigA and sigB were mapped on chromosome I and sigC on the chromosome III. Based on comparison of the genomic structure of the three sig genes, intron sites in the 3' half of the genes were shown to be identical between sigB and sigC but divergent in sigA, consistent with the phylogenetic relevance of the three gene products. A transient expression assay of GFP fusions in Arabidopsis protoplasts showed that the N-termini of all three sig gene products functioned as chloroplast-targeting signals. We also constructed transgenic Arabidopsis lines harboring the sigA-promoter or the sigB-promoter uidA fusion. Both the sigA- and sigB-promoters were similarly activated at cotyledons, hypocotyls, rosette leaves, cauline leaves, sepals, and siliques but not at roots, seeds, or other flower organs. In addition, the two promoters were repeatedly activated in young seedlings under continuous light, possibly in an oscillated fashion.

Amino Acid Sequence↗

A transmembrane hybrid-type histidine kinase in Arabidopsis functions as an osmosensor.

Water deficit and the resulting osmotic stress affect plant growth. To understand how plant cells monitor and respond to osmotic change from water stress, we isolated a cDNA from dehydrated Arabidopsis plants. This cDNA encodes a novel hybrid-type histidine kinase, ATHK1. Restriction fragment length polymorphism mapping showed that the ATHK1 gene is on chromosome 2. The predicted ATHK1 protein has two putative transmembrane regions in the N-terminal half and has structural similarity to the yeast osmosensor synthetic lethal of N-end rule 1 (SLN1). The ATHK1 transcript was more abundant in roots than other tissues under normal growth conditions and accumulated under conditions of high or low osmolarity. Histochemical analysis of beta-glucuronidase activities driven by the ATHK1 promoter further indicates that the ATHK1 gene is transcriptionally upregulated in response to changes in external osmolarity. Overexpression of the ATHK1 cDNA suppressed the lethality of the temperature-sensitive osmosensing-defective yeast mutant sln1-ts. By contrast, ATHK1 cDNAs in which conserved His or Asp residues had been substituted failed to complement the sln1-ts mutant, indicating that ATHK1 functions as a histidine kinase. Introduction of the ATHK1 cDNA into the yeast double mutant sln1Delta sho1Delta, which lacks two osmosensors, suppressed lethality in high-salinity media and activated the high-osmolarity glycerol response 1 (HOG1) mitogen-activated protein kinase (MAPK). These results imply that ATHK1 functions as an osmosensor and transmits the stress signal to a downstream MAPK cascade.

Amino Acid Sequence↗

Mutagenicity of potassium alkanediazotates in Chinese hamster V79 cells and their alkylating activity.

Alkanediazohydroxides are the key intermediates of carcinogenic N-nitroso compounds, and exist as geometrical isomers. In this paper, the mutagenicity and cytotoxicity of (E)- and (Z)-potassium alkanediazotates, precursors of alkanediazohydroxides, in Chinese hamster V79 cells were investigated. Mutagenic and cytotoxic activities of (E)-diazotates were dose-dependent, and activity decreased with an increase in the alkyl chain length; methyl>ethyl>propyl, butyl. On the other hand, (Z)-diazotates were less mutagenic and cytotoxic than (E)-diazotates, however (Z)-potassium methanediazotate did show weak mutagenicity. To compare chemical reactivity with biological activity, alkylating activity towards nicotinamide in an aqueous phosphate buffer system was evaluated as an index of the chemical reactivity of diazotates. Using a fluorometric HPLC method, alkylated nicotinamides were detected with high sensitivity in the reaction with all diazotates tested. The alkylating activity of (Z)-methanediazotate was higher than that of the corresponding (E)-diazotate, but the other isomers with ethyl, propyl and butyl groups had similar reactivity under the conditions used. The activity decreased by increasing the alkyl chain-length, which correlated well with the mutagenicity in V79 cells and also with that in Salmonella typhimurium, which we reported earlier. The results for (E)-diazotates were similar to the corresponding N-nitroso-N-(hydroxymethyl)alkylamines, further supporting the notion that alpha-hydroxy nitrosamines decompose through alkanediazohydroxide and alkylate DNA, and suggests that geometrical isomerism influences the carcinogenicity of -nitroso compounds in mammals.

Alkylating Agents↗

Inhibition of xanthine oxidase by flavonoids.

Various dietary flavonoids were evaluated in vitro for their inhibitory effect on xanthine oxidase, which has been implicated in oxidative injury to tissue by ischemia-reperfusion. Xanthine oxidase activity was determined by directly measuring uric acid formation by HPLC. The structure-activity relationship revealed that the planar flavones and flavonols with a 7-hydroxyl group such as chrysin, luteolin, kaempferol, quercetin, myricetin, and isorhamnetin inhibited xanthine oxidase activity at low concentrations (IC50 values from 0.40 to 5.02 microM) in a mixed-type mode, while the nonplanar flavonoids, isoflavones and anthocyanidins were less inhibitory. These results suggest that certain flavonoids might suppress in vivo the formation of active oxygen species and urate by xanthine oxidase.

Enzyme Inhibitors↗

A parasympathetic ganglion innervating the harderian gland and lacrimal gland of the musk shrew (Suncus murinus): fluorescent tracing and immunohistochemical studies.

A small ganglion, named the peri-trigeminal ganglion (PTG), was found in the ventromedial border of the rostral half of the trigeminal ganglion (TG) in the musk shrew (Suncus murinus). In frontal sections, the PTG was semicircular or elliptical in shape. Most of the neurons constituting this ganglion were round in shape and much smaller than those of the TG. The retrograde fluorescent tracer fluoro-gold was injected into various regions of the face in order to investigate innervation by the PTG neurons. When the tracer was injected subcutaneously around the external acoustic meatus and around the circumference of the orbit, a number of labeled neurons were seen not only in the TG but also in the PTG. After applying the tracer to the lacrimal gland (LG) and the harderian gland (HG), numerous labeled neurons were detected only in the PTG. A few labeled neurons were found in the PTG after injection into the palatoglossal arch. Immunohistochemically, most of the neurons constituting the PTG were positive for vasoactive intestinal polypeptide (VIP) antiserum. And a moderate number of somatostatin (SOM)-immunoreactive neurons and a small number of leucine-enkephalin (L-ENK)-immunoreactive neurons were detected. Numerous substance P-immunoreactive nerve fibers and varicosities were found in the PTG, and fewer L-ENK-, SOM- and VIP-immunoreactive fibers were observed. The present results suggest that the PTG is an autonomic ganglion that resembles in part the pterygopalatine ganglion in other species, and mainly innervates the HG and LG.

Animals↗

Changes in neoplastic cell features and sensitivity to mitotane during mitotane-induced remission in a patient with recurrent, metastatic adrenocortical carcinoma.

A 58-year-old man had adrenocortical carcinoma in the right adrenal gland. The tumour secreted excessive cortisol and dehydroepiandrosterone-sulphate (DHEA-S), and had invaded the right hepatic lobe and vena cava. Eleven months after surgical tumour resection, the serum DHEA-S levels again increased. Local tumour recurrence and a metastasis was found in the lung. Eleven months after surgery chemotherapy with mitotane (o,p'-DDD) was initiated. Twelve weeks of mitotane reduced serum DHEA-S levels and caused these tumours to disappear. The patient was then treated with low-dose mitotane (1.5-2.0 g/day) for 2 years. Serum levels of mitotane remained at less than 10 microg/ml. Although such low serum levels of mitotane and delayed initiation of mitotane after surgery have been proposed to weaken the antineoplastic effect of mitotane, the patient had a remission for 2 years. However, there was then local re-recurrence with an increase in serum DHEA-S and death 4 months later. The histological features of neoplastic cells were quite different comparing tumour resected at surgery and tumour at autopsy. The latter had more frequent mitotic nuclei. This tumour was initially sensitive to mitotane, but later became insensitive.

Adrenal Cortex Neoplasms↗

[Antimicrobial resistance testing of H. pylori epsilometer test and disk diffusion test].

The resistance of Helicobacter pylori to antibiotics leaves great influence on treatment outcome. Routine antimicrobial susceptibility testing of H. pylori should be a simple, inexpensive and standardized method to be adopted. Agar and broth dilution techniques are difficult to perform and not practical. E-test and disk diffusion methods have the advantage of allowing the visualization of resistant subpopulations of bacteria within zones of inhibitions. We studied the susceptibility results of 246 H. pylori isolates against metronidazole and clarithromycin using E-test and disk diffusion test. The results of disk diffusion test were well correlated with these of E-test. Our results showed that disk method is cost effective and simple for the screening for antimicrobial resistance of H. pylori.

Clarithromycin↗