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Biomedical subjects

M Mukai

Publications and source records attributed to M Mukai.

At least 163 records · Page 9Linked to original sources

Requirement for a noncoding RNA in Drosophila polar granules for germ cell establishment.

In Drosophila embryos, germ cell formation is induced by specialized cytoplasm at the posterior of the egg, the pole plasm. Pole plasm contains polar granules, organelles in which maternally produced molecules required for germ cell formation are assembled. An untranslatable RNA, called Polar granule component (Pgc), was identified and found to be localized in polar granules. Most pole cells in embryos produced by transgenic females expressing antisense Pgc RNA failed to complete migration and to populate the embryonic gonads, and females that developed from these embryos often had agametic ovaries. These results support an essential role for Pgc RNA in germline development.

Animals↗

Identification of the histidine residues involved in substrate recognition by a rat H+/peptide cotransporter, PEPT1.

The LLC-PK1 cells stably transfected with a rat PEPT1 cDNA transported ceftibuten (anion) and cephradine (zwitterion), both oral beta-lactam antibiotics, in a H+-gradient-dependent manner. Diethylpyrocarbonate, a histidine residue modifier, abolished ceftibuten uptake. This inhibition was prevented in the presence of glycylsarcosine or cephradine. When expressed in Xenopus oocytes, replacement of either histidine 57 or histidine 121 of the rat PEPT1 with glutamine by site-directed mutagenesis eliminated ceftibuten and [14C]glycylsarcosine transport activities. Immunostaining of oocyte sections indicated that insertion of the mutant transporters in the plasma membranes was not impaired. These findings suggest that both histidine 57 and histidine 121, which are conserved in the rat, rabbit and human PEPT1, are involved in substrate recognition of this molecule.

Animals↗

rho-Mediated protein tyrosine phosphorylation in lysophosphatidic-acid-induced tumor-cell invasion.

Rat ascites hepatoma cell (MM1) invade a mesothelial cell monolayer in vitro in assay medium containing serum, but not in serum-free medium. Serum could be completely replaced by 1-oleoyl lysophosphatidic acid (LPA) in inducing invasion. LPA-induced invasion was inhibited by genistein, a tyrosine-kinase inhibitor. Protein tyrosine phosphorylation in response to LPA was thus analyzed in order to determine the molecular mechanism of invasion. LPA of invasion-inducible concentrations evoked a transient increase in tyrosine phosphorylation, mainly of 110- to 130-kDa proteins in MM1 cells but not in mesothelial cells. These concentrations of LPA were over 10 times higher (10 to 25 micron) than those necessary to produce a variety of biological actions, such as tyrosine phosphorylation in fibroblasts, neurite retraction and platelet aggregation. Protein tyrosine phosphorylation and invasion by MM1 cells induced by LPA are largely regulated by rho p21, because both were inhibited by Clostridium botulinum C3 exo-enzyme, which is known to specifically inactivate rho p21. Invasion of MCL by MM1 cells induced by serum and that by B16FE7 cells induced by LPA were inhibited by genistein or C3 as well. By immunoprecipitation, we detected p 125 focal adhesion kinase (FAK) as a major protein of 110- to 130-kDa tyrosine phosphorylated in response to LPA. Tyrosine phosphorylation of paxillin by LPA was also detected.

Animals↗

Antibodies to beta 2-glycoprotein I and clinical manifestations in patients with systemic lupus erythematosus.

OBJECTIVE: To investigate whether anticardiolipin antibodies (aCL) in patients with systemic lupus erythematosus (SLE) bind to beta 2-glycoprotein I (beta 2GPI), and to search for a relationship between the presence of IgG and/or IgM anti-beta 2GPI antibody and clinical manifestations in SLE patients. METHODS: IgG and IgM anti-beta 2GPI in 308 Japanese SLE patients were measured using phospholipid-independent enzyme immunoassays. Relationships to clinical histories and to various laboratory data were examined. RESULTS: The values of anti-beta 2GPI and aCL, as measured by conventional enzyme immunoassay, showed a strong correlation, but the anti-beta 2GPI assay was more useful in distinguishing beta 2GPI-dependent aCL from beta 2GPI-independent aCL. The presence of IgG anti-beta 2GPI was associated with an increased frequency of a history of thrombosis. Comparisons of various laboratory data suggested that the titer of anti-beta 2GPI may fluctuate with disease activity. CONCLUSION: The results suggest that pathogenic aCL is directed against structurally altered beta 2GPI and that enzyme immunoassay for anti-beta 2GPI may prove useful in evaluating the risk of thrombosis and monitoring the clinical course in patients with SLE.

Abortion, Habitual↗

Differential induction of helper and killer T cells from isolated CD4+CD8+ thymocytes in suspension culture.

Thymocytes of T cell receptor transgenic mice with nonselecting and RAG-2 -/- backgrounds were developmentally arrested at the CD4+CD8+ stage before positive selection. These thymocytes underwent lineage commitment upon transient stimulation with a combination of ionomycin, a calcium ionophore, and phorbol 12-myristate 13-acetate (PMA), a protein kinase C activator, in suspension culture. The effective drug doses were limited within narrow ranges and much lower than those which induce proliferation of mature T cells. The doses corresponded to those which inhibit glucocorticoid-induced apoptosis in these thymocytes. CD4 lineage commitment required longer duration, higher intensity of the stimulation, or both, than CD8 lineage commitment. Functional helper T cells (Th1 and Th2) were induced from the CD4 lineage-committed cells upon secondary stimulation with a combination of ionomycin and PMA followed by lymphokine treatment. Cytotoxic T cells were induced from the CD8 lineage-committed cells upon incubation with concanavalin A and irradiated splenic dendritic cells, but not with the combination of ionomycin and PMA. These results indicate that positive selection is mimicked by the pharmacological stimulation in the absence of other cell types, but that final maturation of CD8 T cells may require a different signal.

Animals↗

In vitro differentiation and commitment of CD4+ CD8+ thymocytes to the CD4 lineage, without TCR engagement.

Thymocyte positive selection is based on protection of immature CD4/CD8 double-positive (DP) thymocytes from apoptosis and their differentiation into CD4 or CD8 single-positive (SP) cells. Intracellular signals essential for positive selection appear to be induced through the TCR and some of the accessory molecules including LFA-1, CD4 and CD8 upon interaction with thymic stromal cells. The signals, however, still remain to be identified. Since physiological levels of glucocorticoids potentially induce or enhance thymocyte apoptosis even in vivo, the signals are likely to inhibit the apoptotic effect of glucocorticoids. We have previously shown that proper cross-linking of TCR-CD3 with LFA-1, CD4 or CD8 inhibited glucocorticoid-induced thymocyte apoptosis in vitro, and that a proper combination of the calcium ionophore, ionomycin and the protein kinase C (PKC) activator, phorbol 12-myristate 13-acetate (PMA), mimicked the inhibitory effect. Here we determined whether this combination of ionomycin and PMA induces differentiation of isolated DP thymocytes from normal and TCR transgenic mice. We found that pretreatment of DP thymocytes with ionomycin and PMA followed by 1 day culture of the cells without the reagents resulted in the differentiation of the cells into CD4 SP and CD4+ CD8lo T cells that have mostly committed to the CD4 lineage. The changes in expression of other differentiation markers were also in good accordance with those associated with positive selection, except the final maturation. The results indicate that moderate and transient increases in intracellular Ca2+ level and PKC activity induce differentiation and commitment of DP thymocytes to the CD4 lineage, and suggested that the biochemical pathway leading to positive selection is based on a similar mechanism.

Animals↗

Inhibition of in vitro tumor cell invasion by ginsenoside Rg3.

The effect of plant glycosides on tumor cell invasion was examined. Among the glycosides tested, ginsenoside Rg3 was found to be a potent inhibitor of invasion by rat ascites hepatoma cells (MM1), B16FE7 melanoma cells, human small cell lung carcinoma (OC10), and human pancreatic adenocarcinoma (PSN-1) cells, when examined in a cell monolayer invasion model. Structurally analogous ginsenosides, Rb2, 20(R)-ginsenoside Rg2 and 20(S)-ginsenoside Rg3 (a stereoisomer of Rg3), showed little inhibitory activity. Neither Rh1, Rh2, 20(R)-ginsenosides Rh1, Rb1, Rc nor Re had any effect. The effective ginsenoside, Rg3, tended to inhibit experimental pulmonary metastasis by highly metastatic mouse melanoma B16FE7 cells as well. Taking account of our previous finding that 1-oleoyl-lysophosphatidic add (LPA) induced invasion by MM1 cells in the monolayer invasion model, the effect of Rg3 on molecular events associated with the invasion induced by LPA was analyzed in order to understand the mechanism of the inhibition. Rg3, which suppressed the invasion induced by LPA, dose-dependently inhibited the LPA-triggered rise of intracellular Ca2+. Protein tyrosine phosphorylation triggered by LPA was not inhibited by Rg3.

Adenocarcinoma↗

Adenocarcinoma arising within a colonic diverticulum.

A case of cancer arising in a diverticulum of the ascending colon in a 67-year-old male is reported. The 1.5 x 1.0 cm well-differentiated adenocarcinoma protruded from the base of the inverted mucosa of the diverticulum. The surrounding flat colonic mucosa was not involved by the cancerous process. Focal stromal invasion was seen in the subserosal tissue, without association of lymph nodal involvement. This is the third reported case of adenocarcinoma arising in the colonic diverticulum.

Adenocarcinoma↗

Modulation of mitochondrion-mediated oxidative stress by nitric oxide in human placental trophoblastic cells.

Intracellular hydroperoxide generation in cultured human placental trophoblastic cells (HPTCs) was quantitatively monitored in the presence or absence of an NO synthase inhibitor, NG-nitro-L-arginine methyl ester (L-NAME, 1 mM), by digital microfluorography with use of carboxydichlorofluorescein, a hydroperoxide-sensitive fluorogenic probe. In the absence of L-NAME, HPTCs displayed a time-dependent gradual elevation of the fluorescence, suggesting the ability to produce oxidants spontaneously. In the presence of L-NAME, however, the fluorescent response in these cells increased further; the oxidative impact elicited by L-NAME treatment for 30 min was equivalent to that induced by application of 230 microM tert-butyl hydroperoxide for 5 min. This oxidative process was completely blocked by rotenone, a reagent that interferes with electron entry into complex I of the mitochondrial respiratory chain. On the other hand, antimycin A, which blocks mitochondria at the distal site of the ubiquinone pool, potentiated the L-NAME-induced oxidative change. These findings suggest that constitutive levels of nitric oxide production contribute to regulation of mitochondrion-derived intracellular oxidant generation in HPTCs.

Cell Separation↗

Clinical significance of pressor responses to laboratory stressor testing in hypertension.

We investigated the relation between pressor responses to laboratory stressors and 24-hour blood pressure (BP) variability or left ventricular mass. Mental arithmetic tests, isometric hand grip exercise, and bicycle ergometer exercise were carried out in middle-aged normotensive subjects (n=10) and in age-matched WHO stage I (n=23) and stage II (n=11) patients with essential hypertension. Mental arithmetic was associated with a greater rate of increase in plasma epinephrine than in norepinephrine, and handgrip exercise was associated with a greater rate of increase in plasma norepinephrine than in epinephrine in all three groups. Bicycle ergometer exercise caused a remarkable increase in plasma norepinephrine and a mild increase in plasma epinephrine in all three groups. In mental arithmetic tests, pressor responses of hypertensive patients were significantly greater than those of normotensives. The pressor response during mental tests was significantly correlated with the value of 24-hour BP variability in all subjects (r=0.56, p< 0.01). The pressor response to handgrip increased with the stage of hypertension. A good correlation existed between the pressor response to handgrip and the left ventricular mass index in the subjects (r=0.73, p < 0.001). There was no difference in the pressor response to ergometer exercise between any of the groups. The findings suggest that the pressor response to mental stress reflects BP variability and that the response to handgrip is correlated with target-organ disease associated with hypertension, especially the degree of cardiac hypertrophy.

Adult↗

[A case of idiopathic orthostatic hypotension manifesting sick sinus syndrome due to sympathetic nervous dysfunction].

A 67-year-old woman with idiopathic orthostatic hypotension was presented. The patient started to experience faintness on standing since 1993. During a physical examination, her systolic blood pressure fell from 148 to 50 mmHg on standing. Blood pressure responses to the mental arithmetic test and hyperventilation stress were normal. However, cold pressor test failed to increase blood pressure. These observations, with the finding that phase IV response on Valsalva's maneuver was absent, indicate afferent sympathetic nervous dysfunction. Peripheral neuropathy including diabetes mellitus and involvement of central nervous system such as multiple system atrophy were excluded. Holter ECG examination revealed a 3.9 second sinus arrest and bradycardia (total beats 88901/day). the blunted responses of the heart rate to atropine as well as isoproterenol further suggested the presence of sick sinus syndrome. Amezinium administration significantly improved her orthostatic hypotension and eliminated sinus arrest. These findings indicate that sympathetic nervous dysfunction could account for at least a part of the sick sinus syndrome in this patient.

Aged↗

The inhibition of ganglionic transmission via presynaptic dopamine DA1 and postsynaptic DA2 receptor activation in the canine cardiac sympathetic ganglia.

The involvement of dopaminergic mechanisms in modulating ganglionic transmission of the dog cardiac sympathetic ganglia were investigated in both in vivo and in vitro experiments. The positive chronotropic responses to preganglionic stellate stimulation were inhibited by R(+)SK&F38393 and talipexole administered directly to the ganglia through the artery, and the inhibitory effects were antagonized by pretreatment with R(+)SCH23390 and S(-)sulpiride, respectively. McN-A-343 and 1,1-dimethyl-4-phenylpiperazinium iodide given through the artery to reach the ganglia displayed dose-dependent positive chronotropic effects. The positive chronotropic effects were inhibited by (-)quinpirole and talipexole, but not by R(+)SK&F38393. The inhibitions were antagonized by S(-)sulpiride and tended to be antagonized by yohimbine. The acetylcholine output from the isolated stellate ganglia by preganglionic stimulation (5 Hz) was unaffected in the presence of (-)quinpirole and talipexole, but was concentration-dependently reduced in the presence of R(+)SK&F38393, and the reduction was antagonized by R(+)SCH23390. The results thus suggest that the dopamine receptor agonists inhibit the ganglionic transmission by reducting acetylcholine release via preganglionic DA1 receptor stimulation and by inhibiting postganglionic nicotinic and muscarinic activation via postganglionic DA2 receptor stimulation.

(4-(m-Chlorophenylcarbamoyloxy)-2-butynyl)trimethy↗

Cell-cycle-dependent invasion in vitro by rat ascites hepatoma cells.

The relationship between cell cycle and experimental metastasis of tumor cells in vivo has been investigated, but it remains to be elucidate which step of metastasis, or whether tumor-cell invasion in particular, depends on cell cycle. We previously reported an in vitro cell-monolayer invasion (transcellular migration) assay system, in which the invasive capacity of tumor cells is measured by counting tumor cells penetrating beneath a cultured mesothelial cell monolayer after tumor-cell seeding. Using our invasion assay system, the relationship between invasive capacity and cell-cycle distribution of MMI cells, a highly invasive clone of rat ascites hepatoma AHI30, was investigated. Invasive capacity of aphidicolin- or hydroxyurea-synchronized tumor cells enriched in G1/S-early S-phase cells was about 2 to 6 times higher than that of asynchronous cells. According to time-course experiments to examine the relationship between invasive capacity and the size of fraction of cells in each phase after release from an aphidicolin or a nocodazole block, it was suggested that MMI cells are most invasive in G1/S-S phase. Phagokinetic assay using colloidal gold particles showed that one possible reason for the enhanced invasiveness might be the increased cell motility in such phases, as suggested by the in vitro invasion assay.

Animals↗

Enhancement of in vitro tumor-cell transcellular migration by tumor-cell-secreted endothelial-cell-retraction factor.

To investigate the factors affecting endothelial-cell retraction, we have studied the interaction of tumor cells with endothelial cells in 2 human pancreatic cancer cell lines, PSN-1 and MiaPaca-2. The extent of endothelial-cell retraction measured by the amount of intercellular junctional transport of FITC-dextran through an endothelial monolayer was increased by the addition of a conditioned medium (CM) from both cell lines, while CM from PSN-1 cells was 2 to 3 times more potent than that from MiaPaca-2 cells. After the treatment of endothelial monolayer with CM of PSN-1 cells, the ability of both PSN-1 cells and MiaPaca cells to adhere to or invade the monolayer increased. The addition of CM from PSN-1 cells did not affect the growth rate of either the endothelial or the tumor cells. The activity in the CM was heat-stable and bound to heparin-Sepharose, but was inactivated when treated by 0.5% trypsin. Protease inhibitors did not influence the activity. Pre-treatment of PSN-1 cells by an inhibitor of protein synthesis, cycloheximide, or of protein processing, benzyl-N-acetyl-alpha-D-galactosaminide, reduced endothelial-cell-retraction activity in the CM. The active substance in the CM fractionated in the molecular-weight range of 10,000 to 50,000. These results suggest that PSN-1 cells produce and secrete (a) soluble factor(s) that can induce endothelial-cell retraction, thus facilitating tumor-cell invasion.

Animals↗