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Biomedical subjects

M Noda

Publications and source records attributed to M Noda.

At least 73 records · Page 4Linked to original sources

An inhibitory factor for cell-free protein synthesis from Salmonella enteritidis exhibits cytopathic activity against Chinese hamster ovary cells.

A factor inhibiting cell-free protein synthesis was purified from Salmonella enteritidis cell lysate by sequential ammonium sulfate precipitation, chromatography on anion exchange and hydrophobic interaction columns, and polyacrylamide disc gel electrophoresis. The purified factor, which was named SIPS (Salmonella inhibitor of protein synthesis), inhibited in vitro protein synthesis in rabbit reticulocyte lysate and had a molecular mass of 38 kDa, estimated by PAGE under denaturing conditions. SIPS was also cytopathic for Chinese hamster ovary cells. The N-terminal amino acid sequence (20 residues) of SIPS was found to be identical to that of mature L-asparaginase II of Escherichia coli. Indeed, the purified SIPS exhibited asparaginase activity, E. coli L-asparaginase II had cytopathic activity and inhibited in vitro protein synthesis. The results suggest that at least a part of cytotoxicity and inhibition of cell-free protein synthesis caused by S. enteritidis is a property of the bacterial L-asparaginase.

Animals↗

Construction and expression of an enzymatically active form of PECAM-1 containing the phosphatase domain of the protein tyrosine phosphatase, SHP-2.

Platelet endothelial cell adhesion molecule-1 (PECAM-1; CD31) is a 130-kDa transmembrane glycoprotein that is expressed on the surfaces of platelets, endothelial cells, and certain leukocyte subsets. The extracellular region of PECAM-1 contains six immunoglobulin homology domains, two of which (domains 1 and 2) mediate PECAM-1 homophilic interactions. Recent evidence suggests that a major function of the extracellular region of PECAM-1 is to determine its localization within the plane of the plasma membrane. The cytoplasmic domain of PECAM-1 contains an immunoreceptor tyrosine-based inhibitory motif that, upon tyrosine phosphorylation, supports recruitment of the Src homology 2 domain-containing protein tyrosine phosphatase, SHP-2. However, neither the targets of this PECAM-1/SHP-2 complex nor the significance of localizing SHP-2 to the borders of opposing PECAM-1-expressing cells is yet known. As a first step in addressing these issues, we designed a cDNA encoding a chimeric protein composed of the PECAM-1 extracellular domain fused to the phosphatase domain of SHP-2, which we call PECAM-1/PhD2. When immunopurified from stably transfected HEK293 cell lines expressing this recombinant protein, PECAM-1/PhD2 was found to possess constitutive enzymatic activity and appropriate border localization. This constitutively active chimeric protein will be useful in future studies designed to define the components of signal transduction pathways modulated by PECAM-1/SHP-2 signaling complexes.

Cell Line↗

Activated Ras modifies the proliferative response of rheumatoid synovial cells to TNF-alpha and TGF-alpha.

OBJECTIVE: To study the role of the Ras/mitogen-activated protein kinase (MAPK) pathway in the proliferative response of rheumatoid synovial fibroblast (RSF) to tumor necrosis factor (TNF)-alpha and transforming growth factor (TGF)-alpha. METHODS: V-Ki-ras gene was introduced into RSF using a retrovirus and the proliferative response of these cells to TNF-alpha or TGF-alpha was estimated by measuring the uptake of 3H-thymidine. The effect of a mitogen-activated protein kinase kinase (MEK) inhibitor, PD98059, was also investigated. RESULTS: Consistent with previous reports, TNF-alpha and TGF-alpha stimulated the proliferation of RSF. When the v-Ki-ras gene was expressed, the basal growth rate of these cells was increased, but their growth was suppressed by TNF-alpha or TGF-alpha. The latter effect was abolished when the cells were exposed to a relatively low concentration of PD98059. CONCLUSION: Ras modulates the proliferative response of RSF to TNF-alpha and TGF-alpha.

Apoptosis↗

Transient suppression of core-binding factor alpha 1 expression by basic fibroblast growth factor in rat osteoblast-like osteosarcoma ROS17/2.8 cells.

Core-binding factor alpha 1 (Cbfa1) is considered a prerequisite transcription factor for osteoblastic differentiation, based on experiments performed in knock-out mice. Cbfa1 binding sequences have been located in the promoter regions of various osteoblast phenotype-related genes, which are also known to be regulated by fibroblast growth factor (FGF). To elucidate the molecular mechanisms of FGF regulation of osteoblasts, we investigated the effects of FGF on Cbfa1 expression in osteoblast-like cells. We found that basic FGF, at 10 ng/ml, suppressed Cbfa1 mRNA expression in ROS17/2.8 cells. To detect the two distinct mRNA species that give rise to Pebp2alphaA/Cbfa1 and Osf2/Til-1/Cbfa1, we used semi-quantitative reverse transcription-polymerase chain reaction analysis using specific sets of primers. This analysis indicated that treatment with FGF transiently decreased the abundance of only the Osf2/Til-1/Cbfa1 isoform and not the Pebp2alphaA/Cbfa1 isoform in ROS17/2.8 cells. The suppression of Osf2/Til-1/Cbfa1 was time dependent and was observed up until 48h, and Cbfa1 mRNA levels then returned closer to control levels. Dose-dependent suppression by FGF was observed only with regard to mRNA levels of Osf2/Til-1/Cbfa1 and not for Pebp2alphaA/Cbfa1 mRNA. These data indicate that FGF suppresses Cbfa1 mRNA expression and that the Osf2/Til-1/Cbfa1 isoform is the specific target of FGF regulation in osteoblastic osteosarcoma ROS17/2.8 cells.

Animals↗

The in vitro cytotoxicity of eluates from dentin bonding resins and their effect on tyrosine phosphorylation of L929 cells.

OBJECTIVES: The aim of this study was to examine the relationship between the monomers eluted from dentin-bonding systems and their cytotoxicities, and to investigate the biochemical effect of the monomers on tyrosine phosphorylation, especially relating to the cell growth activity, of L929 cells in vitro. METHODS: The primers, uncured or cured adhesives (3M and Kuraray) were tested to determine the cytotoxicity of confluent L929 cells cultured by Eagle's MEM medium supplemented with 10% FCS. The area of cells affected by the eluted monomers were evaluated with an image analyzer and the concentrations of monomers eluted into the medium were measured with high performance liquid chromatography (HPLC) after 24h incubation. The protein composition of the stimulated cells was compared by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and tyrosine phosphorylation was detected by Western blot. RESULTS: The primer and uncured adhesives revealed variable cytotoxicities. 2-hydroxyethyl-methacrylate (HEMA) was the major component eluted from uncured primers and adhesives. Small amounts of triethylene glycol dimethacrylate (TEGDMA) were also detected from the uncured adhesives. The cytotoxicities of the adhesives decreased as photo activation time increased. The amount of monomers eluted from the cured adhesives was almost undetectable and did not reach a sufficient concentration to suppress cell viability or cell growth. The cytotoxicities of the primers and adhesives correlated well with the amounts of either HEMA or TEGDMA eluted. Moreover, a high concentration of HEMA (4 mg/ml medium) affected intracellular tyrosine phosphorylation, which is related to cellular activities. SIGNIFICANCE: Although the monomers present in dentin bonding resins are cytotoxic to L929 cells, the amount from cured bonding resin is very small and does not provide a cytotoxic dose. This data does however suggest that clinical exposure to the uncured primers and adhesives of dentin bonding resins should be minimized.

Adhesives↗

Importance of standardization of hemoglobin A1c in the analysis of factors that predict hemoglobin A1c levels in non-diabetic residents of three distinct areas of Japan.

We performed a statistical analysis to elucidate effects of standardized measurement of hemoglobin A1c (HbA1c) on analysis of factors that affect HbA1c values. Subjects were participants in the Japan Public Health Center-based Prospective Study on Cancer and Cardiovascular Diseases, and a total of 1789 men and 3150 women in three distinct areas who did not have overt diabetes (HbA1c> or =6.1% or prior diagnosis) were analyzed. A different method of HbA1c assay was used in each area: high-performance liquid chromatography in one area and a different immunochemical method in each of the other two areas. Then, calibration of HbA1c was performed using two HbA1c standards (5.5 and 10.5%) provided by the Japan Diabetes Society. Analysis of co-variance was performed separately in men and women. When raw HbA1c data were used as the outcome, 'area', which represents differences in assay systems, lifestyles, etc. had a significant effect on HbA1c levels. When calibrated HbA1c data were used, however, 'area' was no longer a significant factor. In the latter analysis, age and BMI were the principal contributors to HbA1c, and parental history of diabetes had a weak effect in women. Thus, standardization of HbA1c reduced the difference between assay systems, and uncovered two common factors to determine HbA1c levels.

Adult↗

Diphtheria toxin receptor-mediated conditional and targeted cell ablation in transgenic mice.

Specific cell ablation is a useful method for analyzing the in vivo function of cells. We have developed a simple and sensitive method for conditional cell ablation in transgenic mice, called "toxin receptor-mediated cell knockout." We expressed the diphtheria toxin (DT) receptor in transgenic mice using a hepatocyte-specific promoter and found that injection of DT caused fulminant hepatitis. Three independently established transgenic lines demonstrated a good correlation between the sensitivity of hepatocytes to DT and the expression level of the DT receptors. Moreover, the degree of hepatocyte damage was easily controlled over a wide range of doses of injected DT without any obvious abnormalities in other cells or tissues. This system is useful for generating mouse models of disease and for studying the recovery or regeneration of tissues from cell damage or loss. As DT is a potent inhibitor of protein synthesis in both growing and non-growing cells, the method is applicable to a wide range of cells and tissues in mice or in other DT-insensitive animals.

Albumins↗

Borg proteins control septin organization and are negatively regulated by Cdc42.

The Cdc42 GTPase binds to numerous effector proteins that control cell polarity, cytoskeletal remodelling and vesicle transport. In many cases the signalling pathways downstream of these effectors are not known. Here we show that the Cdc42 effectors Borg1 to Borg3 bind to septin GTPases. Endogenous septin Cdc10 and Borg3 proteins can be immunoprecipitated together by an anti-Borg3 antibody. The ectopic expression of Borgs disrupts normal septin organization. Cdc42 negatively regulates this effect and inhibits the binding of Borg3 to septins. Borgs are therefore the first known regulators of mammalian septin organization and provide an unexpected link between the septin and Cdc42 GTPases.

Amino Acid Sequence↗

In vivo determination of muscle viscoelasticity in the human leg.

The purpose of this study was to examine the methodological validity of the free vibration technique for determining individual viscoelastic characteristics of the human triceps surae muscle-tendon complex (MTC) in vivo. Six subjects sat with first phalangeal joint of the forefoot on the edge of a force-plate. The special frame on the knee was loaded with weight (0-40 kg) for testing. Oscillations of the triceps surae MTC system were initiated with a hand-held hammer by tapping the weight. In order to keep the same posture, the output of the force plate was displayed on the oscilloscope and subjects were asked to maintain the beam on the oscilloscope at a particular location in relation to a reference line. The damped oscillations in conjunction with the equation of motion of a damped mass-spring model were used to calculate the viscosity of muscle (b) and the elasticity of muscle fibres and tendon (k) in each subject, considering moment arm of the ankle joint. With this arrangement, we have obtained high reproducibility in this method. The coefficient of variations (CVs) of b and k in five trials at each weight were quite small (range: 0.5-18.7% in b and 1.0-15.1% in k). There were no significant differences in viscoelastic coefficients between right and left legs. Therefore, it appears that free vibration technique, used here, is adequate in describing the viscoelastic characteristics of the triceps surae in vivo in humans.

Adult↗

Enhanced polyadenosine diphosphate-ribosylation in cirrhotic liver and carcinoma tissues in patients with hepatocellular carcinoma.

AIM: The aim of this study is to assess the poly ADP-ribosylation activity in human hepatocellular carcinoma (HCC) and in liver cirrhosis (LC) as compared to the activity in normal livers (NL). METHODS: Hepatocellular carcinoma and LC tissues were sampled from 19 patients with HCC. Normal liver tissue was obtained from 19 patients with metastatic liver cancer. Poly ADP-ribosylation activity of these tissues was measured by using [32P]-adenylate nicotinamide adenine dinucleotide (NAD)-incorporation into the 116-kDa protein. Nicotinamide adenine dinucleotide glycohydrolase activity of these tissues was determined with thin layer chromatography. The immunohistochemical expression of Ki-67 was also assessed as a parameter of cell proliferative activity. RESULTS: The poly ADP-ribosylation of the 116 kDa protein was significantly increased in patients with HCC and LC as compared with NL (P<0.0001, P<0.05, respectively) and was inhibited by poly (ADP-ribose) polymerase inhibitors in a dose-dependent manner. There was no significant difference in NAD glycohydrolase activity among the three groups. A significant correlation was found between the Ki-67 positive cell rate and the relative radioactivity of poly ADP-ribosylation in HCC patients (r=0.794, P<0.0001). The poly ADP-ribosylation of the 116 kDa protein of LC was significantly higher in patients who had recurrences of HCC after hepatic resection than in patients without recurrence (P<0.05). CONCLUSION: Poly ADP-ribosylation of the 116 kDa protein in HCC patients might be enhanced with its proliferative activity, and poly ADP-ribosylation of the same protein in LC patients might be a useful parameter of carcinogenic potential for predicting HCC recurrence after hepatectomy in patients who have had HCC.

Adult↗

High prevalence of eosinophilia in growth hormone-deficient children.

BACKGROUND: To determine the clinical significance of eosinophilia in growth-hormone (GH)-deficient children, a clinical study consisting of 72 children and adolescents (mean age 9 years and 6 months at diagnosis) with GH deficiency (GHD) was undertaken. Patients were treated with GH, along with supplementation for the combined deficiency in patients with multiple hormone deficiency. METHODS: A complete blood count and hemogram with microscopic examination of a peripheral blood smear was performed. RESULTS: Before treatment, differential eosinophil counts exceeded 5% in 30 subjects (41.7%) and absolute eosinophil counts were >350 /microL in 27 subjects (37.5%). Growth hormone therapy did not significantly affect eosinophil counts. There was an inverse relationship between absolute eosinophil count and peak GH value in response to the L-dopa stimulation test (n=65; Rs=-0.252; P=0.044). CONCLUSIONS: For the diagnosis of GHD, one should take into account that GH response to L-dopa stimulation can be selectively blunted in patients with eosinophilia.

Adolescent↗

Spontaneous regression over a 16-year period of tachyarrhythmias to sick sinus syndrome and complete atrioventricular block in a young patient with Ebstein's anomaly.

A 25-year-old man with Ebstein's anomaly showed spontaneous regression of tachyarrhythmias to sick sinus syndrome and complete atrioventricular block over a 16-year period. This is the first clinical report supporting the hypothesis that abnormal cell death might contribute to the disturbance of the heart conduction system in Ebstein's anomaly.

Adult↗

Soluble forms of NCAM and F3 neuronal cell adhesion molecules promote Schwann cell migration: identification of protein tyrosine phosphatases zeta/beta as the putative F3 receptors on Schwann cells.

Neural cell adhesion molecule (NCAM) and F3 are both axonal adhesion molecules which display homophilic (NCAM) or heterophilic (NCAM, F3) binding activities and participate in bidirectional exchange of information between neurones and glial cells. Engineered Fc chimeric molecules are fusion proteins that contain the extracellular part of NCAM or F3 and the Fc region of human IgG1. Here, we investigated the effect of NCAM-Fc and F3-Fc chimeras on Schwann cell (SC) migration. Binding sites were identified at the surface of cultured SCs by chimera coated fluorospheres. The functional effect of NCAM-Fc and F3-Fc binding was studied in two different SC migration models. In the first, migration is monitored at specific time intervals inside a 1-mm gap produced in a monolayer culture of SCs. In the second, SCs from a dorsal root ganglion explant migrate on a sciatic nerve cryosection. In both systems addition of the chimeras significantly increased the extent of SC migration and this effect could be prevented by the corresponding anti-NCAM or anti-F3 blocking antibodies. Furthermore, antiproteoglycan-type protein tyrosine phosphatase zeta/beta (RPTPzeta/beta) antibodies identified the presence of RPTPzeta/beta on SCs and prevented the enhancing effect of soluble F3 on SC motility by 95%. The F3-Fc coated Sepharose beads precipitated RPTPzeta/beta from SC lysates. Altogether these data point to RPTPzeta/beta is the putative F3 receptor on SCs. These results identify F3 and NCAM receptors on SC as potential mediators of signalling occurring between axons and glial cells during peripheral nerve development and regeneration.

Animals↗

RECK gene expression in hepatocellular carcinoma: correlation with invasion-related clinicopathological factors and its clinical significance. Reverse-inducing--cysteine-rich protein with Kazal motifs.

The RECK (reversion-inducing-cysteine-rich protein with Kazal motifs) gene was initially isolated as a transformation suppressor gene. It encodes a membrane-anchored glycoprotein with multiple serine protease inhibitor-like domains. The RECK gene is expressed widely in normal organs but is undetectable in many tumor-derived cell lines. When artificially expressed in such cell lines, RECK suppresses their invasive and metastatic activities. Clinical implications of these findings, however, remained undefined because of the lack of studies using fresh human tumor samples. In the present study, we have addressed this issue by analyzing the levels of RECK gene expression in hepatocellular carcinoma (HCC). RECK mRNA was detectable by RNA blot hybridization in all the tumorous and contiguous nontumorous tissues obtained from 64 patients with HCC. In 26 cases, the RECK expression in tumorous tissues was higher than that in nontumorous tissues. The expression of RECK protein in these tissues could also be demonstrated by immunohistochemistry. Patients with high RECK mRNA expression in tumorous tissues tended to show better survival (P =.02), and such tumors had a tendency to be less invasive. Univariate and multivariate analysis revealed that the RECK mRNA expression is a novel and independent variable affecting overall survival (P =.01). These findings support the hypothesis that RECK has negative effects on the invasiveness of HCC cells and suggest the feasibility of RECK mRNA as a promising prognostic molecular marker for HCC.

Adult↗

Effects of chronic alcohol consumption on hepatic poly-ADP-ribosylation in the rat.

BACKGROUND: Poly-adenosine diphosphate (ADP)-ribosylation is involved in a variety of biological processes, which include DNA repair, malignant transformation, and apoptosis. It is of interest how this reaction is altered after long-term alcohol intake. Therefore, we determined long-term alcohol effects on hepatic poly-ADP-ribosylation in the rat. METHODS: Male Sprague Dawley(R) rats (four pairs) were pair-fed a nutritionally adequate liquid diet that contained ethanol as 36% of total energy and an isocaloric control diets for 4 weeks. Liver tissue homogenates and nuclear fractions were subjected to ADP-ribosylation with [32P]nicotinamide adenine dinucleotide. The ADP-ribosylated proteins were separated by SDS-PAGE, followed by autoradiography. Expression of poly-ADP-ribose polymerase (PARP) also was evaluated by Western blotting. RESULTS: Incubation of rat liver homogenates in ADP-ribosylation reaction mixture resulted in a radiolabeling of a 116 kDa protein, most likely auto-ribosylation of PARP. This poly-ADP-ribosylation was increased significantly (p < 0.025) after long-term alcohol intake. This alcohol effect was reproducible in nuclear fractions as well. Expression levels of PARP, however, were comparable between alcohol-fed rats and their pair-fed controls. CONCLUSION: Poly-ADP-ribosylation, an important posttranslational modification of nuclear proteins, was increased significantly after chronic alcohol consumption in the rat.

Alcoholism↗

Chronic cerebral hypoperfusion induces MMP-2 but not MMP-9 expression in the microglia and vascular endothelium of white matter.

White matter lesions are closely associated with cognitive impairment and motor dysfunction in the aged. To explore the pathophysiology of these lesions, the authors examined the expression of matrix metalloproteinase-2 (MMP-2) and MMP-9 in the white matter in a rat model of chronic cerebral hypoperfusion. After bilateral clipping of the common carotid arteries, myelin staining revealed demyelinating changes in the optic tract and the corpus callosum on day 7. Zymographic analyses indicated an increase in the level of MMP-2, but not MMP-9, after the hypoperfusion. Immunohistochemical analyses revealed the presence (most abundantly on day 3) of MMP-2-expressing activated microglia in the optic tract and corpus callosum. In contrast, the capillary endothelial cells expressed MMP-2 later. IgM-immunoreactive glial cells were absent in the sham-operated animals, but were present in the hypoperfused animals by day 3, reflecting the disrupted blood-brain barrier. These findings suggest that the main sources of the elevated MMP-2 were the microglia and the endothelium, and that these cells may contribute to the remodeling of the white matter myelin and microvascular beds in chronic cerebral hypoperfusion.

Animals↗

Generation of oxidative stress contributes to the development of pulmonary hypertension induced by hypoxia.

Chronic hypoxia causes pulmonary hypertension and right ventricular hypertrophy associated with pulmonary vascular remodeling. Because hypoxia might promote generation of oxidative stress in vivo, we hypothesized that oxidative stress may play a role in the hypoxia-induced cardiopulmonary changes and examined the effect of treatment with the antioxidant N-acetylcysteine (NAC) in rats. NAC reduced hypoxia-induced cardiopulmonary alterations at 3 wk of hypoxia. Lung phosphatidylcholine hydroperoxide (PCOOH) increased at days 1 and 7 of the hypoxic exposure, and NAC attenuated the increase in lung PCOOH. Lung xanthine oxidase (XO) activity was elevated from day 1 through day 21, especially during the initial 3 days of the hypoxic exposure. The XO inhibitor allopurinol significantly inhibited the hypoxia-induced increase in lung PCOOH and pulmonary hypertension, and allopurinol treatment only for the initial 3 days also reduced the hypoxia-induced right ventricular hypertrophy and pulmonary vascular thickening. These results suggest that oxidative stress produced by activated XO in the induction phase of hypoxic exposure contributes to the development of chronic hypoxic pulmonary hypertension.

Acetylcysteine↗

Receptor-like protein tyrosine phosphatase gamma (RPTPgamma), but not PTPzeta/RPTPbeta, inhibits nerve-growth-factor-induced neurite outgrowth in PC12D cells.

Receptor-like protein tyrosine phosphatase gamma (RPTPgamma) and PTPzeta/RPTPbeta are RPTPs which structurally resemble each other and form a distinct RPTP family. Both molecules are highly expressed in the central nervous system (CNS), though RPTPgamma is distributed also in several peripheral tissues. To date, the functional differences between RPTPgamma and PTPzeta in neuronal cells have not been made clear because their substrate and ligand molecules have not been fully elucidated. To address this issue, we established PC12D cell transfectants stably expressing rat RPTPgamma or PTPzeta and analyzed the effects on cellular response to nerve growth factor (NGF). Compared with the parent PC12D cells which extend neurites vigorously in response to NGF, the transfectants expressing RPTPgamma showed almost no neurite outgrowth. In contrast, neurite extension in PTPzeta-expressing clones on NGF treatment was the same as in parent cells. We investigated differences in tyrosine phosphorylation levels in the cellular proteins in these cells after the NGF treatment before morphological charges appeared. Despite the lack of a response, major proteins and MAP kinase in RPTPgamma-expressing PC12D cells displayed normal tyrosine phosphorylation changes on NGF treatment. However, tyrosine phosphorylation levels in the protein components purified with p13(suc1) agarose (p13(suc1) complex) from RPTPgamma-expressing cells were different from those of the control cells. (1) Tyrosine-phosphorylation levels of 140- and 117-kD proteins were significantly reduced. (2) Rapid tyrosine phosphorylation of 58-kD protein induced by NGF was absent. (3) Activities of tyrosine kinases and protein kinase C in the p13(suc1) complex were markedly reduced. We found that the p13(suc1) complex also contained cytoskeletal proteins such as MAP2 and neurofilaments, but their phosphorylation levels were not different. These results indicate that RPTPgamma and PTPzeta have different substrate specificities, and RPTPgamma inhibits NGF-induced neurite outgrowth of PC12D cells through modulation of the p13(suc1) complex.

Amino Acid Sequence↗