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Biomedical subjects

H Ohta

Publications and source records attributed to H Ohta.

At least 19 recordsLinked to original sources

Purification and properties of a novel arylmalonate decarboxylase from Alcaligenes bronchisepticus KU 1201.

A novel decarboxylase which catalyzes an enantioselective decarboxylation of alpha-aryl-alpha-methylmalonates to alpha-arylpropionates has been purified from a soil bacterium Alcaligenes bronchisepticus KU 1201. The enzyme was purified 300-fold to homogeneity, judged from the analysis of N-terminal amino acid sequence, and found to be a monomeric enzyme of apparent 24 kDa. The enzyme catalyzes a decarboxylation giving alpha-arylalkanoates from substituted malonates such as alpha-arylmalonate and alpha-alkyl-alpha-arylmalonates. The decarboxylase is not a biotin containing enzyme because avidin have no influence on the enzyme activity. In addition, the enzyme does not require known co-factors (ATP, ADP and coenzyme A) for maximum activity. The enzyme activity was inhibited by sulfhydryl agents. The electronic effect of the substituents on kcat for the enzymic decarboxylation of arylmalonates has been studied. The logarithm of relative value of kcat gave a linear correlation to Hammett's sigma with a rho value of +1.9, for substituted phenylmalonates. Comparing the relative activities, it is clear that the enzyme prefers alpha-arylmalonates to alpha-aryl-alpha-methylmalonates. Thus, the enzyme was tentatively named as arylmalonate decarboxylase.

Alcaligenes

Quantitative analysis of extracellular-superoxide dismutase in serum and urine by ELISA with monoclonal antibody.

The superoxide anion has been implicated in a wide range of diseases. The major protector against superoxide anion in the extracellular space is extracellular-superoxide dismutase (EC-SOD). EC-SOD is the major SOD isozyme in plasma and forms an equilibrium between the plasma phase and heparan sulfate proteoglycan on the surface of the endothelium. An ELISA method for the measurement of human EC-SOD with monoclonal antibody was established. The proposed method had a high sensitivity (assay range, 0.05-50 ng/ml), good recovery (recovery percentage, 96.9 +/- 5.6%) and reproducibility (within-day assay, C.V. = 8.6-10.2%; between-day assay, C.V. = 6.5-11.7%). EC-SOD levels in sera from healthy persons are clearly divided into two groups: a lower group (Group I, below 120 ng/ml, n = 146) and higher group (Group II, above 400 ng/ml, n = 10). The EC-SOD in Group I were almost normally distributed and the mean level was 55.8 +/- 18.8 ng/ml. The serum EC-SOD level assayed by ELISA correlated well with serum SOD activity. The serum EC-SOD in Group I is heterogeneous with regard to affinity for heparin-Sepharose and could be separated into three approximately equal fractions, whereas the EC-SOD in Group II is mainly one fraction with a high affinity for the column. The apparent molecular weight and carbohydrate structure of serum EC-SOD in Group II are identical to those in Group I. The high EC-SOD level in sera from some individuals may reflect the excessive stimulation of EC-SOD synthesis in vivo or the growth of selected cells in vivo, because EC-SOD is known to be expressed by a few cell types in vivo as a high-heparin-affinity subtype.

Adolescent

The heparin binding site of human extracellular-superoxide dismutase.

Extracellular-superoxide dismutase (EC-SOD) is a secretory glycoprotein that is major SOD isozyme in extracellular fluids. We revealed the possible structure of the carbohydrate chain of serum EC-SOD with the serial lectin affinity technique. The structure is a biantennary complex type with an internal fucose residue attached to asparagine-linked N-acetyl-D-glucosamine and with terminal sialic acid linked to N-acetyllactosamine. EC-SOD in plasma is heterogeneous with regard to heparin affinity and can be divided into three fractions: A, without affinity; B, with intermediate affinity; and C, with high affinity. It appeared that this heterogeneity is not dependent on the carbohydrate structure upon comparison of EC-SOD A, B, and C. No effect of the glycopeptidase F treatment of EC-SOD C on its heparin affinity supported the results. A previous report showed that both lysine and arginine residues probably at the C-terminal end, contribute to heparin binding. Recombinant EC-SOD C treated with trypsin or endoproteinase Lys C, which lost three lysine residues (Lys-211, Lys-212, and Lys-220) or one lysine residue (Lys-220) at the C-terminal end, had no or weak affinity for the heparin HPLC column, respectively. The proteinase-treated r-EC-SOD C also lost triple arginine residues which are adjacent to double lysine residues. These results suggest that the heparin-binding site may occur on a "cluster" of basic amino acids at the C-terminal end of EC-SOD C. EC-SOD is speculated to be primarily synthesized as type C, and types A and B are probably the result of secondary modifications. It appeared that the proteolytic cleavage of the exteriorized lysine- and arginine-rich C-terminal end in vivo is a more important contributory factor to the formation of EC-SOD B and/or EC-SOD A.

Amino Acid Sequence

Serum immunoreactive beta-glucuronidase determined by an enzyme-linked immunosorbent assay in patients with hepatic diseases.

An enzyme-linked immunosorbent assay (ELISA) was developed for human beta-glucuronidase, using a specific polyclonal antibody raised against the purified enzyme. beta-Glucuronidase from human liver consisted of three subunits with molecular mass of 76, 64 and 18 kDa. The assay offered a specific, sensitive and convenient means of measuring immunoreactive beta-glucuronidase in human sera. beta-Glucuronidase activity determined by the conventional method appeared to be extremely low, indicating that in human sera beta-glucuronidase exists in an enzymatically inactive form. The sensitivity of the assay permitted the detection of 1-100 ng of purified beta-glucuronidase. A mean serum level in normal subjects was 108 +/- 25 ng/ml (mean +/- S.D.). A high level of beta-glucuronidase was found in sera of patients with severe hepatocellular necrosis, including liver cirrhosis (152 +/- 130 ng/ml) and chronic active hepatitis (220 +/- 99 ng/ml), whereas no significant increase of the enzyme protein was observed in chronic persistent hepatitis (102 +/- 42 ng/ml). beta-Glucuronidase was also increased in sera of patients with primary hepatoma (156 +/- 125 ng/ml). The immunoreactive beta-glucuronidase determined in this assay was thought to be a supplementary serological indicator for hepatocellular necrosis.

Alanine Transaminase

cDNA cloning of rice lipoxygenase L-2 and characterization using an active enzyme expressed from the cDNA in Escherichia coli.

A full-length cDNA of rice lipoxygenase L-2 was cloned from 3-day-old seedlings. The identity of the clone was determined by amino acid sequencing of selected peptides of the purified enzyme and immunological characterization of an active enzyme that was produced from the cDNA in Escherichia coli by cultivation at 15 degrees C. The nucleotide sequence showed a strong bias toward G and C in the selection of nucleotides, especially at the third position of the codons (93% G/C). The complete amino acid sequence of the enzyme was deduced from the nucleotide sequence. The molecular mass of the enzyme was calculated to be 96,657 Da based on 865 amino acids. The amino acid sequence shares similarity with those of dicot lipoxygenases throughout the enzyme at a level of 50%. A hydropathy profile calculated from the amino acid sequence resembled those of dicot lipoxygenases, suggesting conservation of the secondary structure of these enzymes. The active enzyme, expressed in Escherichia coli, was characterized for pH dependence of the enzyme activity, intramolecular specificity, heat stability and Km. The enzyme had the same properties as the L-2 enzyme that was isolated from seedlings, but differed from the lipoxygenase L-3 isolated from mature plants.

Amino Acid Sequence

Vasoactive intestinal polypeptide presynaptically enhances the synaptic transmission in cultured sympathetic neurons.

We studied the effects of vasoactive intestinal polypeptide (VIP) on the cholinergic synaptic transmission that was developed between rat sympathetic neurons in culture. Electrophysiological examinations revealed that the amplitude of fast excitatory postsynaptic potential (fast EPSP) was increased by VIP (0.2-0.8 microM) reversibly and dose-dependently, whereas transient nicotinic depolarization evoked by pressure application of acetylcholine (ACh) was not affected by VIP. In most of the cells examined, VIP depolarized membrane potential by a few millivolts with concomitant increases in membrane conductance. Furthermore, the VIP-induced depolarization was suppressed by Co2+ but not by hexamethonium or atropine. Hence it is highly likely that the peptide augmented the amplitude of fast EPSPs by increasing ACh release from the presynaptic cell. These results demonstrate that VIP influences the presynaptic phase of cholinergic synaptic transmission between sympathetic neurons.

Acetylcholine

Characterization of EGTA-washed synaptosomal membrane with emphasis on its calmodulin-binding proteins. Demonstration of possible reconstitution with added calcium/calmodulin.

Endogenous calmodulin (CaM) in the EGTA-washed cerebral-cortical synaptosomal membrane (SM) preparation was estimated below 3 micrograms/ml protein by the semiquantitative immunoblot analysis (Natsukari, N., Ohta, H. and Fujita, M. (1989) J. Immunol. Methods 125, 159-166). Membrane-bound CaM was immunoelectron-microscopically demonstrated in EGTA-washed, non-treated (control), and Ca(2+)-treated cerebral-cortical synaptosomal membranes (SM) as well as for the SM enriched with added CaM. The density of CaM increased in the above order. CaM-dependent adenylate cyclase and CaM-dependent protein kinase II (CaM-kinase II) activities were restored, whereas the phosphodiesterase (PDE) activity was not affected by exogenous CaM over all the Ca2+ concentrations tested. Adenylate cyclase at pCa 6.2 was synergistically activated either by GTP and CaM or by CaM and beta-adrenergic agonist, (+/-)-isoproterenol, reflecting the intactness of signal transduction pathway in the SM. Also demonstrated were the presence of protein kinase A, CaM-kinase II, and their endogenous substrates in the SM. Based on 32P-autoradiography and 125I-CaM overlay data certain CaM-binding proteins such as CaM-kinase II and synapsin I were identified on SDS-PAGE. Ca(2+)-dependent and -independent CaMBPs were distinguished by 125I-CaM gel overlay with and without Ca2+. The former had bigger molecular size (greater than or equal to 49 kDa) than the latter (less than or equal to 34 kDa). Yield of Ca(2+)-dependent CaMBPs was not affected by Ca2+ concentration during preparation of the SM while that of Ca(2+)-independent CaMBPs was reduced by exposure to 100 microM Ca2+. In contrast with the CaMBPs of brain SM, those of enterocyte and eyrthrocyte plasma membranes especially, microvillous membrane of the enterocyte, showed quite distinct CaMBP profiles. The present findings suggested that the EGTA-washed SM preparation made a useful system for studying the role of CaM in the brain SM.

Adenylyl Cyclases

Influence of oophorectomy on serum levels of sex steroids and bone metabolism and assessment of bone mineral density in lumbar trabecular bone by QCT-C value.

The present cross-sectional study was carried out to determine the influence of oophorectomy (OPX) on serum levels of sex steroids and bone metabolism, as well as bone mineral density (BMD), in OPX subjects in comparison with age- and body size-matched controls. Quantitative computed tomography (QCT) and dual-photon absorptiometry (DPA) demonstrated a remarkable reduction in BMD in OPX subjects. In particular, the QCT of the centrum of vertebral bone (QCT-C) in these subjects was no more than 69.33 +/- 3.40% (X +/- SEM) of the control value, and this parameter was much lower than the QCT integral (QCT-I) value of total lumbar vertebrae. This means that BMD decreases specifically in spongy portions after OPX. The serum level of estrone (E1) was significantly lower in OPX subjects than in controls. The hormonal action of E1 on target organs has been thought to be only one-third of that of estradiol (E2), but the marked reduction in serum E1 level seemed to be a significant cause of the reduction in BMD. The serum level of androstenedione (delta 4) significantly decreased in OPX subjects and appeared to affect bone metabolism negatively. Both bone formation and bone resorption were found to be stimulated following OPX, but the rate of bone resorption was found to be higher than that of bone formation: there was an imbalance between bone formation and bone resorption in OPX subjects. However, it was not possible to prove a relationship between Ca regulating hormone and this phenomenon. In conclusion, the QCT-C value reflects the changes in spongy vertebral BMD more sensitively than the QCT-I value or DPA.(ABSTRACT TRUNCATED AT 250 WORDS)

Androgens

Cloning and heterologous expression of a novel arylmalonate decarboxylase gene from Alcaligenes bronchisepticus KU 1201.

We have cloned and sequenced a DNA fragment that encodes the arylmalonate decarboxylase (AM-Dase) gene from Alcaligenes bronchisepticus KU 1201. The AMDase gene consists of an open reading frame of 720 nucleotides, which specifies a 240-amino-acid protein of relative molecular mass (M(r)) 24734. The M(r) deduced from the AMDase gene is in good agreement with that of the AMDase isolated from A. bronchisepticus. No TATA or TTGA sequence was observed within the cloned DNA fragment, but the fragment was expressed in Escherichia coli by the lac promoter of pUC19. The enzyme produced in E. coli has the same M(r) and the same enzyme activity as that purified from A. bronchisepticus. Comparison of the DNA sequence and the deduced amino acid sequence of AMDase with available DNA and amino acid sequence data bases revealed that there are no significant sequence homologies.

Alcaligenes

The effect of IL-6 on the des-gamma-carboxy prothrombin synthesis in human hepatoma cells.

Effects of several cytokines on des-gamma-carboxy prothrombin (PIVKA II) synthesis in human hepatoma cells were investigated to know the process of PIVKA II production during a liver allograft rejection. Human recombinant interleukin-6 (IL-6) significantly stimulated the PIVKA II synthesis without any influence on the cell proliferation. The effect was almost completely neutralized by the specific anti-IL-6 antibody. Neither tumor necrosis factor (TNF), interleukin-1 (IL-1) nor interferon-gamma (IFN-gamma) had such a stimulative effect. IL-6 appears to stimulate PIVKA II production, and would be a candidate of factors that enhance the production of PIVKA II during a liver allograft rejection.

Biomarkers

Bilateral multiple renal adenocarcinomas in a patient with acquired renal cystic disease: correlation of imaging with pathological study.

The findings of computed tomography (CT), magnetic resonance imaging (MRI), and angiography were correlated with the histopathological findings in a patient with acquired renal cystic disease (ARCD) and bilateral multiple renal adenocarcinomas. Hemodialysis patients, especially with ARCD, should have a follow-up imaging study for an early detection of renal adenocarcinomas because multiple renal adenocarcinomas would arise frequently and simultaneously from ARCD.

Carcinoma, Renal Cell

Positive imaging of cardiomyopathy with 99mTc(V)-DMSA.

A case of histologically proven dilated cardiomyopathy and a case of clinically diagnosed cardiomyopathy (cardiac amyloidosis was strongly suspected but was not confirmed) were examined with 99mTc(V)-dimercaptosuccinic acid (DMSA). 99mTc(V)-DMSA accumulation in the damaged myocardium was clearly demonstrated. These results suggested the possibility that 99mTc(V)-DMSA could be used as a positive agent for cardiomyopathy.

Aged

Brain perfusion abnormalities in a thinner and amphetamine abuser detected by I-123 IMP scintigraphy.

MR images and three dimensional surface images (3-D images) using N-isopropyl-p-[I-123] iodoamphetamine (I-123 IMP) were obtained in a patient who acknowledged using thinner and amphetamine. While MR images could not find any definite abnormality, 3-D images with I-123 IMP demonstrated multifocal defects. 3-D images with I-123 IMP might be able to detect an early abnormality in brain perfusion in a drug abuser.

Adult

99mTc(V)-DMSA and 99mTc-MDP uptake and no 67Ga-citrate uptake in a case of primary pulmonary leiomyosarcoma.

Tumor scintigraphy with 67Ga-citrate, 99mTc(V)-DMSA and 99mTc-MDP were performed on a patient with rare primary pulmonary leiomyosarcoma. While 67Ga-citrate accumulation to the tumor was not recognized, 99mTc(V)-DMSA and 99mTc-MDP scintigraphy showed relatively intense localization of the tracers in the lesion, and were very useful in suggesting the characteristics of the tumor.

Citrates

Development of a degradable composite for orthopaedic use: in vivo biomechanical and histological evaluation of two bioactive degradable composites based on the polyhydroxybutyrate polymer.

As a direct method for the evaluation of tissue bonding to two polyhydroxybutyrate (PHB) based composites, a mechanical push-out test was performed on implants in the femur of mature Japanese White rabbits. Three composites were tested. The first, a hydroxyapatite/PHB (HA/PHB) composite showed an increase in interfacial shear strength (ISS) up to 8 wk, after which the ISS decreased due to degradation of the implant. The second composite was an HA/glass/PHB (HGP) composite and this gave lower values for the ISS attributed to ion release from the glass causing a soft tissue reaction at the interface. The third composite was a carbon fibre reinforced polysulfone (CFRP) and this showed high interfacial shear strength values, which continued to increase with time. These conclusions were supported by contact microradiography (CMR) and histology which showed enhanced endosteal bone growth for the HA/PHB but for the HGP, no periosteal or endosteal activity was detected. Interposed soft tissue for the HGP composite was difficult to discern, histologically, but it was proposed that this was the reason for the low ISS values. It was concluded that the high ISS values for the carbon fibre control were due to surface morphology allowing deep ingrowth of soft tissue and this was confirmed by SEM.

Animals

Which is more osteoporosis-inducing, menopause or oophorectomy?

The present study was designed to investigate in a comparative manner whether menopause or oophorectomy (OPX) would be a more osteoporosis-inducing factor with regard to sex steroids, bone metabolism and bone mineral density (BMD), including postmenopausal subjects, OPX subjects and age- and body-size-matched premenopausal controls. Serum levels of estradiol (E2), testosterone (TS) and dehydroepiandrosterone (DHEA) were found to decrease in both the postmenopausal and OPX subjects without any significant difference between them, while serum levels of estrone (E1) and androstenedione (delta 4), which have been reported to be related to bone metabolism, were significantly lower in the OPX subjects than in the postmenopausal subjects. According to the indices representing bone formation and bone resorption, as well as the changes in serum levels of Ca-regulating hormones, bone metabolic balance seemed to be slightly more negative in the former than in the latter. However, there was no difference between these two groups of subjects with regard to BMD in lumbar vertebral spongy portion which sensitively reflects the changes in total lumbar BMD and bone metabolism and in which compressive fracture is apt to occur. This fact suggests that these two groups of subjects may be managed in the same way in clinical practice. In other terms, the menopause, a natural event in women, influences BMD as much as OPX, which is the greatest risk factor in osteoporosis, does.

Androgens

REM sleep deprivation decreases apomorphine-induced stimulation of locomotor activity but not stereotyped behavior in mice.

1. Effects of rapid eye movement (REM) sleep deprivation on central dopaminergic system were investigated by testing the behavioral responses to apomorphine and brain dopamine metabolism in mice. 2. REM sleep deprivation for 48 hr significantly suppressed apomorphine.HCl (3.0 and 6.0 mg/kg, i.p.)-stimulated spontaneous locomotor activity without affecting the intensity of stereotyped behavior. 3. Neither the latency of nociceptive response in a hot-plate test nor the duration of pentobarbital-induced sleep was changed by REM sleep deprivation. 4. Dopamine turnover in the striatum and the nucleus accumbens of REM sleep-deprived mice was significantly higher than that of control animals. 5. These results suggest that REM sleep deprivation may decrease the function of postsynaptic dopamine receptor in the mesolimbic but not nigrostriatal dopaminergic system.

3,4-Dihydroxyphenylacetic Acid