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Biomedical subjects

M Asahi

Publications and source records attributed to M Asahi.

At least 55 records · Page 3Linked to original sources

Effects of protein kinase inhibitors on radiation-induced WAF1 accumulation in human cultured melanoma cells.

To examine whether protein kinase C (PKC) and A (PKA) contribute to WAF1 induction by ionizing radiation (IR) in cultured human melanomas, the effect of PK inhibitors 1-(5'-isoquinolinesulphonyl)-2-methylpiperazine dihydrochloride (H7), bisindolylmaleimide (GF) and N-[2(p-dromocinnamylamino)ethyl]-5-isoquinolinesulphonamide (H89) on IR-induced WAF1 accumulation was analysed by Western blot analysis. Gamma-ray-induced accumulation of WAF1 showed a peak at 6 Gy in all the cell lines. After gamma-ray irradiation of 6 Gy, a peak of WAF1 accumulation was observed at 6 h in SK-Mel-26, G361 and HM6KO cells, and at 3 h in MeWo cells. In MeWo and SK-Mel-26 cells, the X-ray-induced WAF1 accumulation was decreased by PK inhibitors, GF (PKC inhibitor) or H89 (PKA inhibitor); this did not occur in G361 and HM6KO. In all the cell lines, accumulation of WAF1 induced by X-ray irradiation was suppressed by H7 (PKC and PKA inhibitor). In addition, polymerase chain reaction-single strand conformational polymorphism analysis detected no aberrations in the p53 gene of the four cell lines used. These results suggest that IR-induced WAF1 expression involves PKC and/or PKA activity depending on cell type.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

A novel hybrid biological embolic material: autologous fibroblast incorporated collagen (FC) beads.

If viable fibroblasts are used as an active ingredient of an embolic material, it is expected that proliferation and extracellular matrix production of fibroblasts incorporated at a vascular lesion will help restore tissues due to endovascular scar formation, resulting in progressive and permanent occlusion. Based on this working principle, we have devised a novel biological embolic material, hybrid fibroblast incorporated collagen (hybrid FC) beads composed of collagen microbeads and autologous fibroblasts harvested from the subcutaneous tissue of the host to be treated. Hybrid FC beads were prepared by culture of fibroblasts harvested from canine subcutaneous tissue on collagen microbeads (diameters ranging from around 100 µm to around 400 µm). Canine kidneys were embolized with either hybrid FC or cell-free collagen beads via a transarterial route. Histological examination up to 6 months after embolization revealed that, although both embolic materials effectively occluded the target vessels at the time of embolization, intravascular scar formation activity at the embolized sites was much more profound in the case of the hybrid FC beads than in that of the cell-free beads. Proliferation of autologous fibroblasts was verified by the expression of alkaline phosphatase activity of gene-transfected fibroblasts at the site of lodgement of the beads. It is expected that, using the novel hybrid biological embolic material, hybrid FC beads used for vascular lesions such as arteriovenous malformations can be treated more effectively to restore tissues, resulting in minimal recanalization which often occurs when synthetic embolic materials are used. Copyright 1999 Harcourt Publishers Ltd.

Journal Article↗

Effects of tissue type plasminogen activator in embolic versus mechanical models of focal cerebral ischemia in rats.

Tissue type plasminogen activator (tPA) can be effective therapy for embolic stroke by restoring cerebral perfusion. However, a recent experimental study showed that tPA increased infarct size in a mouse model of transient focal ischemia, suggesting a possible adverse effect of tPA on ischemic tissue per se. In this report, the effects of tPA in two rat models of cerebral ischemia were compared. In experiment 1, rats were subjected to focal ischemia via injection of autologous clots into the middle cerebral artery territory. Two hours after clot injection, rats were treated with 10 mg/kg tPA or normal saline. Perfusion-sensitive computed tomography scanning showed that tPA restored cerebral perfusion in this thromboembolic model. Treatment with tPA significantly reduced ischemic lesion volumes measured at 24 hours by >60%. In experiment 2, three groups of rats were subjected to focal ischemia via a mechanical approach in which a silicon-coated filament was used intraluminally to occlude the origin of the middle cerebral artery. In two groups, the filament was withdrawn after 2 hours to allow for reperfusion, and then rats were randomly treated with 10 mg/kg tPA or normal saline. In the third group, rats were not treated and the filament was not withdrawn so that permanent focal ischemia was present. In this experiment, tPA did not significantly alter lesion volumes after 2 hours of transient focal ischemia. In contrast, permanent ischemia significantly increased lesion volumes by 55% compared with transient ischemia. These results indicate that in these rat models of focal cerebral ischemia, tPA did not have detectable negative effects. Other potentially negative effects of tPA may be dependent on choice of animal species and model systems.

Animals↗

A Laugier-Hunziker syndrome associated with esophageal melanocytosis.

A 62-year-old Japanese woman came to our clinic because of melanotic macules on the lip, palatoglossal arch, lingual margin and palm. Endoscopic examination revealed a melanotic macule on the midesophageal mucosa but no polyposis in the gastrointestinal tract. Histologically, the specimens taken from the labial, esophageal and palmar lesions showed an acanthosis and basal hyperpigmentation in the epithelium. The patient had not taken any medication which could lead to pigmentation. As far as we know, this is the first case report of an esophageal melanocytic macule which occurred in a patient with Laugier-Hunziker syndrome. When confronted with an isolated pigment spot, we emphasize the necessity of systematic examinations for others. Because the pathologic relationship between Laugier-Hunziker syndrome and the esophageal melanocytic lesion is not proven, further studies should clarify this issue.

Biopsy↗

[Evaluation of dermatological symptoms of Yusho patients in the annual examination in 1997-1998].

We analyzed the severity grades of the skin symptoms of Yusho patients who visited the annual examinations in 1997 and 1998. The severity grades of the skin symptoms clearly improved. The patients graded as 0 I-II increased and those graded as II III-III decreased as compared to the data in 1993 and 1994. The skin severity scores did not change much, although the patients who showed 0 or 1 reached more than 60% in both 1997 and 1998. The blood PCB concentration of Yusho patients also clearly decreased, especially in the patients who showed "A" pattern.

Female↗

Outside-In signaling of soluble and solid-phase fibrinogen through integrin alphaIIbbeta3 is different and cooperative with each other in a megakaryoblastic leukemia cell line, CMK.

The function and the outside-in signaling pathways of alphaIIbbeta3 were examined in relation to cell adhesion using a megakaryoblastic leukemia cell line, CMK. After 12-O-tetradecanoylphorbol-13-acetate (TPA) treatment, the cells adhered to the culture plate and underwent megakaryocytic differentiation with expression of alphaIIbbeta3. Binding of soluble fibrinogen to the cells via alphaIIbbeta3 was dependent on cell adhesion. Cell detaching reduced the affinity of this integrin for soluble fibrinogen, although its surface expression was almost unchanged. In contrast, detached cells became tightly adherent to the fibrinogen-coated plate (solid-phase fibrinogen). The same ligand, fibrinogen, present either in soluble or solid-phase form, triggered differential signaling pathways mediated by alphaIIbbeta3. By the stimulation with soluble fibrinogen, Syk was tyrosine-phosphorylated but FAK was dephosphorylated, whereas solid-phase fibrinogen promptly caused tyrosine phosphorylation of FAK followed by delayed phosphorylation of Syk. In addition, the binding of soluble fibrinogen to the cells adherent to fibrinogen-coated plate resulted in tyrosine phosphorylation of integrin beta3 and a complex formation of integrin beta3 with Syk. This implies the cooperation of both soluble and solid-phase fibrinogen-mediated signaling pathways.

Cell Adhesion↗

Induction of the N-methyl-D-aspartate receptor subunit 1 in the immortalized neuronal progenitor cell line HC2S2 during differentiation into neurons.

Conditionally immortalized neuronal progenitor cell line HC2S2 differentiates into mature neurons after suppression of the v-myc expression with tetracycline. Reverse transcription-polymerase chain reaction analyses were used to measure expression levels of N-metyl-D-aspartate receptor subunit 1 (NMDAR1) mRNAs encoding splice variants (NMDAR1a, -exon 5; NMDAR1b, +exon 5) in HC2S2 cells during the differentiation. Differential induction of NMDAR1a and NMDAR1b mRNAs was observed during the differentiation. Very low expression of NMDAR1 was observed in undifferentiated HC2S2 cells. NMDAR1a mRNA was induced coincidentally with the emergence of neurites, whereas NMDAR1b mRNA was induced at the time of network formation. Immunohistochemistry also demonstrated induction of NMDAR1 immunoreactivity in differentiated HC2S2 cells. In addition, expression of NMDAR2 mRNA and immunoreactivity was observed in undifferentiated and differentiated HC2S2 cells, suggesting that functional NMDA receptors are present in differentiated HC2S2 cells. While exposure to NMDA resulted in almost no cell death in undifferentiated HC2S2 cells, NMDA induced cell death in differentiated HC2S2 cells in a dose-dependent fashion. These findings suggest that the expression of NMDAR1 mRNA may be regulated by myc or its counterpart during neuronal terminal differentiation and that the splicing choice between NMDAR1a and NMDAR1b may vary according to the formation of neuronal network.

Animals↗

Phospholamban domain Ib mutations influence functional interactions with the Ca2+-ATPase isoform of cardiac sarcoplasmic reticulum.

Alanine-scanning mutagenesis of amino acids 21-30, forming cytoplasmic domain Ib in phospholamban (PLN), revealed that mutation to Ala of Asn27, Gln29, and Asn30 results in gain of inhibitory function. In an earlier study (Kimura, Y., Kurzydlowski, K., Tada, M. , and MacLennan, D. H. (1997) J. Biol. Chem. 272, 15061-15064), gain of function in PLN transmembrane domain II mutants was correlated with pentamer destabilization, leading to proposals that the PLN monomer is the active inhibitory species, that dissociation of the PLN pentamer is one determinant of PLN inhibitory function and that dissociation of the PLN.cardiac sarco(endo)plasmic Ca2+-ATPase isoform (SERCA2a) complex is a second determinant. Because each of the new domain Ib mutants contained a normal ratio of pentamer to monomer in SDS-polyacrylamide gel electrophoresis, gain of function must have resulted from mechanisms other than destabilization of pentameric structure. Evidence that domain Ib and domain II mutants act through different sites and different mechanisms was provided by a monomeric double mutant, N30A/I40A, in which the enhanced inhibitory function of each single mutant was additive. Evidence for an alteration in stability of the PLN/SERCA2a heterodimer was obtained in a study of double mutant N27A/N34A in which inhibitory function was regained by combining a gain of function, domain Ib mutation with a loss of function domain II mutation. These results support the proposal that PLN inhibition of SERCA2a involves, first, depolymerization of PLN and, second, the formation of inhibitory interactions between monomeric PLN and SERCA2a.

Animals↗

Phospholamban domain I/cytochrome b5 transmembrane sequence chimeras do not inhibit SERCA2a.

A series of chimeras between the transmembrane domains of phospholamban (PLN) and cytochrome b5 were coexpressed with the Ca2+-ATPase of cardiac sarcoplasmic reticulum (SERCA2a). The chimeric molecules were not inhibitory, in line with our view that inhibitory PLN/SERCA2a interactions occur in transmembrane sequences, while cytoplasmic interactions regulate the inhibitory interactions in a four-base circuit.

Animals↗

Regulated expression of neurogenic basic helix-loop-helix transcription factors during differentiation of the immortalized neuronal progenitor cell line HC2S2 into neurons.

Expression of nine neurogenic basic helix-loop-helix (bHLH) transcription factors was examined in an immortalized neuronal progenitor cell line HC2S2, which differentiates into neurons after suppression of the v-myc expression with tetracycline. Expression of MASH-1, NeuroD, NeuroD-related factor (NDRF) and HES-1 was demonstrated in HC2S2 cells by Northern blot analysis using total RNA. Expression of MASH-1 mRNA was downregulated upon differentiation of HC2S2 cells into mature neurons. In contrast, NeuroD and NDRF mRNA expression was maintained all through the differentiation. The expression of HES-1, a negative regulator of the neuronal differentiation, was upregulated temporarily in accordance with the suppression of the v-myc expression and was downregulated upon the differentiation of HC2S2 cells into neurons. The reduced expression of HES-1 mRNA in undifferentiated HC2S2 cells may be explained by the transcriptional suppression of HES-1 by the myc oncoprotein. The above data imply that both HES-1 and MASH-1 need to be downregulated at the time of accomplishment of the terminal differentiation into mature neurons and that NeuroD and NDRF participate in the regulatory process of the terminal differentiation in combination.

Animals↗

Expression of Nedd2/ICH-1 (caspase-2) in the developing rat retina.

Expression and localization of Nedd2/ICH-1 (caspase-2) were examined in the developing rat retina. The expression of Nedd2 mRNA was conspicuous in the prenatal period and down-regulated in the postnatal period. In contrast, the expression of an alternatively spliced form of Nedd2 encoding a truncated protein, which has been shown to protect against programed cell death (PCD), was faint in the prenatal period but increased gradually in the postnatal period. Nedd2 immunoreactivity was observed in almost all cells of the ganglion cell layer (GCL) during the perinatal period, when some nuclei in the GCL showed pyknosis or fragmentation. Nedd2-positive cells in the neuroblastic layer (NBL) were present in patches at embryonic day 19, and began to assume a stratified arrangement at postnatal day 3, when nuclei showing PCD were observed in places across the NBL. At postnatal day 14, only faint Nedd2 immunoreactivity was observed in the GCL and the inner nuclear layer, and no Nedd2 immunoreactivity was present in the outer nuclear layer. These findings demonstrate the cell type- and differentiation-specific patterns of the Nedd2 expression in the developing retina.

Alternative Splicing↗

Role of transforming growth factor-beta1 in the pathogenesis of moyamoya disease.

OBJECT: Prominent features of moyamoya disease are intimal thickening of the cerebral arterial trunks and abundant angiogenesis for collateral blood supplies, but its pathogenesis is still unknown. The aim of this study was to test the possibility that transforming growth factor-beta1 (TGFbeta1) may play a role in the pathogenesis of moyamoya disease. METHODS: The authors used reverse transcription-polymerase chain reaction to analyze the expression level of TGFbeta1 in smooth-muscle cells cultured from the superficial temporal arteries (STAs) and measured the serum level of TGFbeta1 by using enzyme-linked immunosorbent assay. Although the STA is not predominantly involved with moyamoya disease, it has been used in studies of the pathogenesis of this disease. In this report, the STAs from six patients with moyamoya disease and four with arteriosclerotic cerebrovascular disease, along with sera from 14 patients with moyamoya disease and 10 normal healthy volunteers, were studied. The expression of TGFbeta1 was significantly higher in cultured smooth-muscle cells derived from the STAs of patients with moyamoya disease than in those derived from the STAs of patients with arteriosclerotic cerebrovascular disease (p < 0.05). The serum level of TGFbeta1 was also significantly higher in patients with moyamoya disease than in controls (p < 0.0005). CONCLUSIONS: Taking into account the functional roles of TGFbeta1 in the expression of connective tissue genes and angiogenesis, these investigators suggest that TGFbeta1 is associated with the pathogenesis of moyamoya disease, including abundant neovascularization, although their findings do not necessarily mean that TGFbeta1 is a causative factor in this disease.

Adolescent↗

Interleukin-3 activates Syk in a human myeloblastic leukemia cell line, AML193.

Protein-tyrosine kinases and phosphatases play an important role in cytokine-mediated cell growth. The proliferation of a human myeloid leukemia cell line, AML193, is dependent on interleukin-3 (IL-3) or granulocyte colony-stimulating factor. In the current study, we demonstrated that a non-receptor-type protein-tyrosine kinase, Syk, was immediately activated by the stimulation with IL-3 or granulocyte colony-stimulating factor in AML193 cells. We further investigated the relation of Syk with IL-3-mediated signaling and found that the IL-3 receptor beta subunit was immunoprecipitated with Syk. Since the IL-3 receptor beta subunit is known to mediate growth signaling, our results indicate that Syk may be involved in the proliferation of myeloid cells.

Blotting, Western↗

The oxidation of selenocysteine is involved in the inactivation of glutathione peroxidase by nitric oxide donor.

Glutathione peroxidase (GPx) was inactivated by S-nitroso-N-acetyl-D, L-penicillamine (SNAP), a nitric oxide donor (Asahi, M., Fujii, J., Suzuki, K., Seo, H. G., Kuzuya, T., Hori, M., Tada, M., Fujii, S., and Taniguchi, N. (1995) J. Biol. Chem. 270, 21035-21039). The structural basis of the inactivation was studied. We also show that 3-morpholinosydnonimine N-ethylcarbamide, a peroxynitrite precursor, as well as synthetic peroxynitrite also inactivated bovine GPx. The degree of incorporation of a sulfhydryl reagent, n-octyldithionitrobenzoic acid, into GPx decreased after pretreatment with SNAP as evidenced by mass spectrometry. To identify the modification site of this enzyme by SNAP, both SNAP-pretreated and untreated GPxs were reacted with n-octyldithionitrobenzoic acid and digested with lysylendopeptidase, and the resulting peptides were subjected to mass spectrometry. This technique identified a bridge between two peptides, one of which contains Sec45 at the catalytic center and Cys74, and the other contains Cys91. Although there are two possible combinations, selenocysteine 45 (Sec45) and Cys91 or Cys74 and Cys91, the tertiary structure of GPx indicates that a cross-link between Sec45 and Cys91 is more feasible. This is consistent with the experimental evidence that SNAP specifically inactivates GPx, in which Sec45 forms the catalytic center. Thus, we conclude that SNAP mainly oxidized Sec45 to form a selenenyl sulfide (Se-S) with a free thiol, leading to the inactivation of the enzyme. These data suggest that nitric oxide and its derivatives directly inactivate GPx in a specific manner via the production of a selenenyl sulfide, resulting in an increase in intracellular peroxides that are responsible for cellular damage.

Amino Acid Sequence↗

Selective induction of heparin-binding epidermal growth factor-like growth factor by methylglyoxal and 3-deoxyglucosone in rat aortic smooth muscle cells. The involvement of reactive oxygen species formation and a possible implication for atherogenesis in diabetes.

Methylglyoxal (MG) and 3-deoxyglucosone (3-DG), reactive dicarbonyl metabolites in the glyoxalase system and glycation reaction, respectively, selectively induced heparin-binding epidermal growth factor (HB-EGF)-like growth factor mRNA in a dose- and time-dependent manner in rat aortic smooth muscle cells (RASMC). A nuclear run-on assay revealed that the dicarbonyl may regulate expression of HB-EGF at the transcription level. The dicarbonyl also increased the secretion of HB-EGF from RASMC. However, platelet-derived growth factor, another known growth factor of smooth muscle cells (SMC), was not induced by both dicarbonyls. The dicarbonyl augmented intracellular peroxides prior to the induction of HB-EGF mRNA as judged by flow cytometric analysis using 2',7'-dichlorofluorescin diacetate. N-Acetyl-L-cysteine and aminoguanidine suppressed both dicarbonyl-increased HB-EGF mRNA and intracellular peroxide levels in RASMC. DL-Buthionine-(S, R)-sulfoximine increased the levels of 3-DG-induced HB-EGF mRNA. Furthermore, hydrogen peroxide alone also induced HB-EGF mRNA in RASMC. These results indicate that MG and 3-DG induce HB-EGF by increasing the intracellular peroxide levels. In addition, the pretreatment with 12-O-tetra-decanoylphorbol-13-acetate failed to alter dicarbonyl-induced HB-EGF mRNA expression in RASMC, suggesting that the signal transducing mechanism is not mediated by protein kinase C. Since HB-EGF is known as a potent mitogen for smooth muscle cells and is abundant in atherosclerotic plaques, the induction of HB-EGF by MG and 3-DG, as well as the concomitant increment of intracellular peroxides, may trigger atherogenesis during diabetes.

Acetylcysteine↗

Suppression of mouse contact hypersensitivity after treatment with antibodies to leukocyte function-associated antigen-1 and intracellular adhesion molecules-1.

We investigated the effects of the antibodies against the adhesion molecules leucocyte function associated antigen-1 (LFA-1) and intercellular adhesion molecule-1 (ICAM-1) on mouse allergic contact hypersensitivity. Mice were injected intraperitoneally with both antibodies before sensitization by an epicutaneous application of dinitrofluorobenzene (DNFB). Simultaneous administration of the antibodies induced suppression of ear swelling in the effector phase of contact hypersensitivity. To show the effect of antibodies in vitro, lymph node cells (LNC) of mice treated with antibodies or with phosphate-buffered saline (PBS) were cultured in the presence of dinitrobenzene sulphonic sodium salts (DNBS), and the production of interleukin-2, interleukin-4 and interleukin-10 in the culture supernatants was measured using an enzyme-linked immunosorbent assay (ELISA). It was found that the production of interleukin-2 in the cells of mice treated with the antibodies was significantly lower than in the cells of PBS-treated mice. On the other hand, no difference was noted in the production of interleukin-4 or interleukin-10. Our results indicate that in vivo simultaneous administration of antibodies to cell adhesion molecules before hapten sensitization induces the suppression of contact hypersensitivity in mice and that the suppression may be due to the inhibition of the production of interleukin-2.

Animals↗

TGF-beta1 triggers oxidative modifications and enhances apoptosis in HIT cells through accumulation of reactive oxygen species by suppression of catalase and glutathione peroxidase.

Transforming growth factor-beta1 (TGF-beta1) is a multifunctional polypeptide that is related to the progression of chronic pancreatitis. However, the mechanism of beta-cell damage by TGF-beta1 is unknown. Treatment with TGF-beta1 enhanced internucleosomal DNA cleavage caused by exogenous hydrogen peroxide in a hamster pancreatic beta-cell line (HIT). TGF-beta1 also induced protein oxidation, assessed by measuring carbonyl groups in proteins, and was involved in reactions that lead to lipid peroxidation. This eventually destructs membrane lipids and forms malondialdehyde. We have investigated its effects on two major antioxidative enzymes, catalase and glutathione peroxidase (GPx). TGF-beta1 suppressed mRNA expression as well as reduced the activities of catalase and GPx. The decrease in the catalase and GPx activities in TGF-beta1-treated cells resulted in an increase in intracellular peroxides as judged by flow cytometric analysis using a peroxide-sensitive dye, 2',7'-dichlorofluorescin diacetate. These data suggest that the augmented production of reactive oxygen species by TGF-beta1 through suppression of antioxidative enzymes may cause cellular damage and consequent apoptosis and induce pancreatitis or diabetes.

Adenoma, Islet Cell↗