[Galactosaminyltransferase].
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Biomedical subjects
Publications and source records attributed to M Okubo.
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This study examined the influence of benzodiazepine receptors on amylase release from rat parotid acinar cells. Diazepam (10(-8)-10(-6) M), which is a potent agonist of both central- and peripheral-type benzodiazepine receptors, dose dependently decreased amylase release induced by isoprenaline and carbachol, which are beta-adrenoceptor and muscarinic receptor agonists, respectively. The maximum inhibitory response was obtained with 10(-6) M diazepam: amylase release was decreased to 57% (isoprenaline) and 39% (carbachol) of maximal levels, while these responses were completely inhibited by propranolol and atropine, respectively. Clonazepam and 7-chloro-1,3-dihydro-1-methyl-5-p-chlorophenyl)-2H-1,4-benzodiazepine-2- one (Ro 5-4864), which are selective agonists of central- and peripheral-type benzodiazepine receptors, respectively, also produced a significant and dose-dependent decrease in isoprenaline-induced amylase release. The inhibitory potency was diazepam > clonazepam > Ro 5-4864. Flumazenil and 1-(2-chlorophenyl)-N-methyl-N-(1-methylpropyl)-3-isoquinoline carboxamide (PK 11195), which are selective antagonists of central- and peripheral-type benzodiazepine receptors, respectively, dose dependently blocked the inhibition of isoprenaline-induced amylase release by diazepam. At a concentration of 10(-5) M, flumazenil and PK 11195 restored amylase release to approximately 75% of that in the presence of isoprenaline alone. The combination of both antagonists completely prevented the inhibition by diazepam. Similarly, the inhibitory responses of clonazepam and Ro 5-4864 were completely blocked by flumazenil and PK 11195, respectively. These results suggest that, in rat parotid acinar cells, benzodiazepines inhibit beta-adrenoceptor and muscarinic receptor-stimulated amylase release and that both central- and peripheral-type benzodiazepine receptors contribute to this inhibitory regulation.
Genetic deficiency of the glycogen-debranching enzyme (debrancher) causes glycogen storage disease type III (GSD III), which is divided into two subtypes: IIIa and IIIb. In GSD IIIb, glycogen accumulates only in the liver, whereas both liver and muscles are involved in GSD IIIa. The molecular basis for the differences between the two subtypes has not been fully elucidated. Recently, mutations in exon 3 of the debrancher gene were reported to be specifically associated with GSD IIIb. However, we describe a homozygous GSD IIIb patient without mutations in exon 3. Analysis of the patient's debrancher cDNA revealed an 11-bp insertion in the normal sequence. An A to G transition at position -12 upstream of the 3' splice site of intron 32 (IVS 32 A-12-->G) was identified in the patient's debrancher gene. No mutations were found in exon 3. Mutational analysis of the family showed the patient to be homozygous for this novel mutation as well as three polymorphic markers. Furthermore, the mother was heterozygous and the parents were first cousins. The acceptor splice site mutation created a new 3' splice site and resulted in insertion of an 11-bp intron sequence between exon 32 and exon 33 in the patient's debrancher mRNA. The predicted mutant enzyme was truncated by 112 amino acids as a result of premature termination. These findings suggested that a novel IVS 32 A-12-->G mutation caused GSD IIIb in this patient.
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T cells that infiltrate the synovial lesions of rheumatoid arthritis may play a key role in its pathogenesis. To learn more about their functional nature, we determined the frequency of synovial T cells that harbored the TNF alpha and Fas ligand transcript by a technique, called Fluorescence In-Cell Labeling Polymerase Chain Reaction (FICL-PCR). The mRNA of interest was detected in fixed cells by the incorporation during PCR of a fluorescein-12-dUTP label following an initial reverse transcription PCR step. Using this technique the CD3 transcript was detected in the T leukemic cell line, MOLT-4, with calculated sensitivity and specificity values of 91% and 100%, respectively. The percentage mean (+/-S.D.) of TNF alpha mRNA positive cells and Fas ligand mRNA positive cells in peripheral blood mononuclear cells from 12 rheumatoid arthritis patients were 5.1+/-2.3% and 4.8+/-3.1%, respectively. The percentage mean (+/-S.D.) of TNF alpha mRNA positive cells and Fas ligand mRNA positive cells among synovial mononuclear cells from six rheumatoid arthritis patients was 16.8+/-8.3% and 10.8+/-1.8%, respectively. This result indicates that the cytotoxic T cells expressing TNF alpha accumulate in rheumatoid arthritic lesions where they may play a pathogenic role.
We investigated the feasibility of an inducible apoptosis system to regulate cells genetically engineered for ectopic cytokine production. In a previous study, cDNA encoding the ligand-binding domain of the rat estrogen receptor was fused to the sequence for murine Fas transmembrane and cytoplasmic regions, and expression of the fusion protein (MfasER) in L929 fibroblasts resulted in estrogen-dependent apoptosis. We applied this MfasER/estrogen strategy to apoptosis-mediated regulation of cytokine production, using the human granulocyte colony-stimulating factor (G-CSF) as a model. Upon estrogen treatment, the G-CSF producers expressing MfasER showed an apoptotic phenotype and died in several hours, with termination of G-CSF production. This estrogen-induced apoptosis was not influenced by whether the target cells were proliferating or resting, unlike a conventional suicide system involving the herpes simplex virus 1 thymidine kinase (HSVtk). That is, estrogen induced prompt and extensive apoptosis in the resting cells which expressed MfasER, while ganciclovir treatment induced only partial reduction of the resting cells which expressed HSVtk. These results imply the feasibility of apoptosis-mediated regulation of cytokine production by genetically modified cells for supplement gene therapy.
The therapeutic effect of probucol on hypercholesterolemia in cyclosporine A (CyA)-treated renal transplant patients was prospectively studied. Twelve posttransplantation patients aged 34.2+/-2.5 years with serum total cholesterol (t-CHL) of 250 mg/dL or greater, whose serum creatinine was 2.9 mg/dL or less, and who had no diabetes mellitus or hypoproteinemia, were treated with probucol, 250 mg twice daily for 3 months. Seventeen age-matched (36.8+/-1.6 years) normal volunteers served as control. Blood was drawn after at least a 12-hour fast to measure lipids in serum and lipoprotein fractions, apoproteins (apo), lipoprotein fractions, lethicin cholesterol acyl transferase (LCAT), free fatty acids (FFA), and CHL-ester. Serum t-CHL, triglycerides (TG), and phospholipids (PL) in posttransplantation patients before treatment were significantly higher compared with normal control subjects. Very-low-density lipoprotein (VLDL) and low-density lipoprotein (LDL) fractions in these patients were significantly expanded. The pretreatment levels of serum apo AII, B, CII, and CIII were significantly increased compared with those of normal controls. After treatment with probucol, serum t-CHL, LDL-CHL, high-density lipoprotein (HDL)-CHL, PL, LDL-PL, and apo AI were significantly decreased, and CHL-ester significantly increased compared with the pretreatment levels. These data suggest that although probucol causes a decrease in HDL-CHL, it may act anti-atherogenically by modulating HDL metabolism and stimulating reverse transfer of CHL from peripheral tissue.
In an attempt to identify autoantigens of synovium in rheumatoid arthritis (RA), we constructed lambda phage expression cDNA libraries from synovium and screened them by IgG purified from synovial fluids, both of which were derived from RA patients. As a result of this unique combination of the libraries and probes, we cloned follistatin-related protein (FRP) as a novel autoantigen in systemic rheumatic diseases. FRP is a secreted protein containing a similar amino acid sequence to follistatin, an inhibitor of activin. FRP was first cloned as a transforming growth factor-beta1-inducible protein (called TSC-36) from a mouse osteoblastic cell line and was suggested to have some roles in the negative regulation of cellular growth. Immunoblotting analyses detected synovial fluid and serum anti-FRP antibodies of IgG class more frequently in RA than any other systemic rheumatic diseases and controls. Synovial fluid anti-FRP antibodies appeared in 44% of RA (n = 18) and none of osteoarthritis (OA) (n = 15) patients. Serum antibodies were detected in 30% of RA (n = 67), 17% of systemic sclerosis (n = 18), 10% of systemic lupus erythematosus (n = 51) and Sjögren's syndrome (n = 10), and none of polymyositis/dermatomyositis (n = 13) patients and healthy subjects (n = 30). These antibodies recognized an EC domain, an extracellular Ca2+ binding module. In anti-FRP antibody-positive RA patients, serum C-reactive protein level and erythrocyte sedimentation rate were more elevated than negative patients (P < 0.05 and P < 0.01, respectively). FRP gene expression was higher in RA than OA synovium (P < 0.05). However, there was no difference between these groups in the amount of synovial FRP, suggesting its elevated turnover in RA. As follistatin inhibits activin, FRP might inhibit some growth factor-like molecule. Detection of anti-FRP antibodies, possibly having disease-promoting effects as the blocking antibodies, could be one of the markers for clinical evaluation of systemic rheumatic diseases.
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Feline immunodeficiency virus (FIV) is more readily isolated from CD8+ T cell-depleted peripheral blood mononuclear cells (PBMC) of FIV-infected cats than from unfractionated PBMC cultures. However, it is not known whether feline CD8+ T cells down-regulate FIV expression by direct interaction with FIV-infected cells or via a soluble mediator. Furthermore, it is not known whether this anti-FIV activity involves a lytic or non-lytic mechanism. In the present study, we demonstrated that autologous and allogeneic CD8+ T cells from asymptomatic FIV-infected cats inhibited the replication of FIV in CD8+ T cell-depleted PBMC cultures in a dose-dependent manner. The inhibitory effect was mediated by a non-lytic mechanism, and was not dependent on direct cell-to-cell contact: an inhibitory effect was exerted by CD8+ T cells across a semi-permeable membrane, and an inhibitory activity was also present in cell-free supernatants from CD8+ T cells. These results suggest that this suppressive effect is mediated, at least in part, by soluble factors produced by CD8+ T cells.
Glycogen storage disease type III, or Cori's disease, is caused by a deficiency of amylo-1,6-glucosidase (debranching enzyme), which leads to the storage of an abnormal glycogen in the liver and in skeletal and heart muscle. Glycogen storage disease type III is usually characterized by hepatic symptoms, growth failure and myopathy. Even though liver cirrhosis is reported, portal hypertension is a rare complication of this disease. We describe the case of a glycogen storage disease type III patient who was diagnosed at 3 years of age and developed complications (liver cirrhosis and rupture of a gastric varix) at 31 years of age. We discuss the histological progression to cirrhosis of the liver and describe the liver enzyme profile at 3 and 31 years of age.
A 5 year old girl underwent recanalisation after coil embolisation of a persistent ductus arteriosus. Recanalisation is uncommon after coil embolisation and may be related to shrinkage of the coil, a change in its position, and ductal shape.
AIMS: To present the short and intermediate term results of coil occlusion of persistent ductus arteriosus and the results of radiographic measurements of spring coils implanted to treat patent ducts. PATIENTS: 22 children underwent coil occlusion. Their ages ranged from 2 years 9 months to 12 years 10 months (mean (SD) age, 6.5 (3.6) years). The duct diameter ranged from 1.0 to 3.5 mm at the narrowest point (mean 2.6 (0.7) mm). In 11 of the children regular coils were implanted using the non-attached system, while in the other 11 the detachable coil embolisation system was used. RESULTS: 12 children (55%) had no significant residual leaks immediately after procedures involving a single coil delivery. The remaining 10 (45%) had residual leaks immediately after the procedure, although no patient with a large duct showed residual leakage 18 months after the procedure. Radiographic measurement of the coils showed that all implanted coils retracted to 65-85% of their original size immediately after occlusion. This retraction was more evident in patients showing spontaneous closure of the residual shunt or having a coil 8 mm in diameter. CONCLUSIONS: Coil embolisation is an acceptable method for occluding persistent ductus arteriosus. Retraction of implanted coils is common in the follow up period. Such retraction may be related to spontaneous closure of residual shunt after embolisation.
NK-104, an inhibitor of 3-hydroxy-3-methylglutaryl-CoA reductase, was administered orally to Wistar rats at a dose of 2, 10, 50 or 100 mg/kg for 28 days consecutively, and the toxicity of NK-104 and its recovery with 2 weeks cessation of drug treatment were examined. As major clinical signs, loose stool, diarrhea, crouching and emaciation were observed in both sexes at 50 or 100 mg/kg, and all females at 100 mg/kg died or became moribund due to severe emaciation before the completion of treatment. The suppression of body weight gain or decrease in body weight was observed in the female dose group at 50 mg/kg and both sexes at 100 mg/kg. Decreased food intake was observed in both sexes at 100 mg/kg. Moreover, an increase in cholinesterase (Ch.E) in the male dose groups at 50 and 100 mg/kg and an increase in glutamic oxaloacetic transaminase (GOT) and glutamic pyruvic transaminase (GPT) in the female dose group at 50 mg/kg were observed in blood chemistry testing. Macroscopic examination showed thickening of the forestomach mucosa in the groups of 10 mg/kg or more. Microscopic examination revealed hyperkeratosis and hypertrophy of the spinous layer associated with both cell infiltration of the mucosal propria and submucosal edema. In addition, skeletal muscle lesions including atrophy, vacuolation and focal necrosis were observed in the female dose groups at 50 and 100 mg/kg. The above-mentioned microscopic changes were not observed on cessation of drug treatment. The non-toxic dose level of NK-104 in the 28-day repeated oral toxicity study using rats was determined to be 2 mg/kg.
NK-104 is a novel potent inhibitor of the rate-limiting enzyme in cholesterol biosynthesis, 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase, and has been shown to be a highly effective agent in lowering blood cholesterol. In the present study, NK-104 was orally administered to Wistar rats at a dose of 0.3, 1, 3 or 010 mg/kg for 6 months for examination of toxicity. Additional recovery groups of 8 rats each of both sexes receiving 0 and 10 mg/kg were maintained without treatment for 1 month in order to assess recovery. As a result, no toxicological changes were observed in general signs, body weight, food intake, ophthalmological examination, urinalysis, hematological and blood chemical examinations for organ weights. An autopsy revealed thickening of the forestomach mucosa in both sexes at a dose of 1 mg/kg or more. This change was microscopically recognized as hyperkeratosis and hypertrophy of the spinous layer associated with both cell infiltration of the mucosal propria and edema of sub-mucosa in the forestomach in both sexes at doses of 3 and 10 mg/kg. Forestomach changes were not observed in any cases after 1 month cessation of drug treatment. The non-toxic dose of NK-104 in the 6-month repeated oral toxicity study in rats is estimated to be 1 mg/kg/day.
OBJECTIVE: Although persistent hyperglycemia contributes greatly to the progression of diabetic micro- and macroangiopathy, microangiopathy progresses more rapidly than macroangiopathy in some type 2 diabetic patients, with the opposite being true in others. This study was conducted to identify factors responsible for such dissociation. RESEARCH DESIGN AND METHODS: Patients with proliferative diabetic retinopathy and a carotid intima-media thickness (IMT) level < or =1.0 mm were classified as the microangiopathy group (MIG); those with an IMT level >1.1 mm and without retinopathy or with background retinopathy were assigned to the macroangiopathy group (MAG). Only middle-aged patients, 50-69 years old, were included in this study. There were 54 patients in the MIG and 68 patients in the MAG. RESULTS: Patients in the MIG were significantly younger at the onset of diabetes, and those in the MAG had a significantly higher mean ratio of apoprotein (apo) B to apoAI. The percentage of patients with a family history of diabetes was significantly higher in the MIG. Maternal inheritance was common among these patients. Those with obesity, a family history of diabetes, and younger onset of hypertension were more common in the MAG. In the multiple logistic regression analyses, maternal inheritance and early onset of diabetes were independent risk factors for the acceleration of microangiopathy. A personal history of obesity and a family history of hypertension were independently related to the development of macroangiopathy. CONCLUSIONS: Our results suggest that patients with early onset and maternal inheritance of diabetes may have a high risk for the progression of diabetic microangiopathy, while patients with hyperlipidemia, a history of obesity, and a family history of hypertension seem prone to the development of atherosclerosis.