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Biomedical subjects

T Yoshimura

Publications and source records attributed to T Yoshimura.

At least 19 recordsLinked to original sources

Partial reactions of bacterial D-amino acid transaminase with asparagine substituted for the lysine that binds coenzyme pyridoxal 5'-phosphate.

In bacterial D-amino acid transaminase (EC 2.6.1.21) replacement of Lys-145, which is covalently linked to the coenzyme pyridoxal 5'-phosphate in the wild-type enzyme, by an Asn residue gave a mutant enzyme (K145N) that slowly performed each half-reaction, as determined by spectral measurements. With the wild-type enzyme, the kinetics of these events were so rapid that pre-steady-state conditions were needed for their determination. The internal aldimine between coenzyme and Lys-145 was rapidly reduced with NaCNBH3 in the wild-type enzyme, whereas in the mutant enzyme the coenzyme, which is not covalently linked to the protein, was more resistant to reduction; the reduced forms of both wild-type and mutant enzymes were inactive. With large amounts of the K145N mutant enzyme and either amino acid or keto acid substrate alone, the formation of some reaction intermediates, i.e., the external aldimine with D-alanine and the ketimine with alpha-ketoglutarate, can be measured by conventional spectroscopy. Suicide substrates also induced slow spectral shifts of the E-PLP form of the enzyme. For the K145N enzyme, exogenous amines affected only the rate of the transaldimination but not the removal of the alpha-proton of the substrate. These results suggest that in the mutant enzyme some amino acid side chain other than Lys-145 performs this function. In order to identify this site, the K145N mutant enzyme was completely inactivated by the radiolabeled suicide substrate D-serine. Peptide mapping of tryptic digests showed that Lys-267 was the modified site.(ABSTRACT TRUNCATED AT 250 WORDS)

Alanine

Flow cytometric analysis of nuclear DNA content of duct cell carcinoma of the pancreas.

BACKGROUND: This study was designed to evaluate the efficacy of nuclear DNA content analysis in determining the prognosis of carcinoma of the pancreas. METHODS: Resected and paraffin-embedded specimens from 72 patients with duct cell carcinoma of the pancreas were examined, and flow cytometry was used to explore the relationship between DNA ploidy and TNM classification or histologic grade. RESULTS: DNA aneuploidy was found histologically in 42.9%, 56.8%, and 71.4% of Grade 1, 2, and 3 tumors, respectively. DNA ploidy showed a statistically significant correlation with T category and retroperitoneal invasion. The cumulative survival rate of patients with retroperitoneal invasion was shorter than that of those without retroperitoneal invasion. Among the patients with retroperitoneal invasion, those with DNA aneuploidy had a significantly shorter survival time than did those with DNA diploidy. CONCLUSIONS: The DNA ploidy pattern, in combination with the presence or absence of retroperitoneal invasion, appears to be useful in predicting the prognosis for duct cell adenocarcinoma of the pancreas.

Adult

In vitro quantitative autoradiography of [125I]alpha-bungarotoxin binding at the motor end-plates of experimental autoimmune myasthenia gravis.

A quantitative evaluation was made of nicotinic acetylcholine receptors (AChR) at the motor end-plates in experimental autoimmune myasthenia gravis (EAMG). Female Lewis rats were immunized with AChR protein purified from electric organs of Narke japonica. The forelimb digit extensor muscle obtained in the chronic stage of the controls and EAMG were studied using [125I]alpha-bungarotoxin, in vitro and autoradiographically. The maximum binding capacity (Bmax) values of the controls and EAMG were calculated to be 237.7 +/- 13.0 fmol/mg (n = 4) and 42.0 +/- 4.1 fmol/mg (n = 4), respectively (P less than 0.001), and the dissociation constant (Kd) values were 11.7 +/- 1.6 nM and 7.6 +/- 0.9 nM, respectively. This in vitro autoradiographic method revealed a quantitative reduction of AChR at the motor end-plates in EAMG.

Animals

Inactivation of dimeric D-amino acid transaminase by a normal substrate through formation of an unproductive coenzyme adduct in one subunit.

D-amino acid transaminase, which contains pyridoxal 5'-phosphate (vitamin B6) as coenzyme, catalyzes the formation of D-alanine and D-glutamate from their corresponding alpha-keto acids; these D-amino acids are required for bacterial cell wall biosynthesis. Under conditions usually used for kinetic assay of enzyme activity, i.e., short incubation times with dilute enzyme concentrations, D-alanine behaves as one of the best substrates. However, the enzyme slowly loses activity over a period of hours when exposed to substrates, intermediates, and products at equilibrium. The rate of inactivation is dependent on enzyme concentration but independent of substrate concentration greater than Km values. Continuous removal of the product pyruvate by enzymic reduction precludes the establishment of equilibrium and prevents inactivation. The formation of small but detectable amounts of a quinonoid intermediate absorbing at 493 nm is proportional to inactivation. Studies with [14C]-D-alanine labeled on different carbon atoms indicate that the alpha-carboxyl group of the substrate is absent in the inactive enzyme; such decarboxylation is not a usual function of this enzyme. The inactive transaminase contains 1.1 mol of [14C]-D-alanine-derived adduct per mole of dimeric enzyme; this finding is consistent with the 50% reduction in the fluorescence intensity at 390 nm (due to the PMP form of the coenzyme) for the inactive enzyme. Thus, inactivation of one subunit of the dimeric enzyme renders the entire molecule inactive. Inactivation may occur when a coenzyme intermediate, perhaps the ketimine, is slowly decarboxylated and then undergoes a conformational change from its catalytically competent location.(ABSTRACT TRUNCATED AT 250 WORDS)

Alanine

Fusion of phospholipid vesicles induced by an amphiphilic model peptide: close correlation between fusogenicity and hydrophobicity of the peptide in an alpha-helix.

A model peptide with 51 amino acid residues consisting of tandem repeats of a Lys-Lys-Leu-Leu sequence and a turn sequence of Asn-Pro-Gly at the center of the molecule has a random conformation at neutral pH but adopts an amphiphilic alpha-helical form in the presence of various salts or nucleotides [Goto, Y., & Aimoto, S. (1991) J. Mol. Biol. 218, 387-396; Goto, Y., Okamura, N., & Aimoto, S. (1991) J. Biochem. (Tokyo) 109, 746-750]. The interaction of this model peptide with liposome membranes and the resulting alpha-helical conformational transition and membrane fusion as well as the effect of the nucleotide ATP on these events were examined at neutral pH. The peptide associated stoichiometrically with liposome membranes composed of phosphatidylserine (PS) and phosphatidylcholine (PC) in a molar ratio of 2:1, resulting in formation of an amphiphilic alpha-helix and induction of fusion of the liposomes. However, the final fusion level was not correlated with the amount of binding or the helix content and was found to increase on an increase in hydrophobicity of the peptide in the alpha-helical form by neutralization of its positive charges by the negative charges of PS. In contrast, in the presence of ATP, the peptide bound completely to the PS/PC membranes at a lower concentration of liposome and concomitantly induced membrane fusion, indicating that ATP cooperates with PS to neutralize the charges of the peptide.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate

Determination of conjugated bile acids in human urine by high-performance liquid chromatography with chemiluminescence detection.

A qualitative and quantitative analysis of the conjugated 1 beta- and 6 alpha-hydroxy bile acids, including common bile acids, in human urine using high-performance liquid chromatography with chemiluminescence detection is described. After extraction of urine with C18 silica cartridges, the bile acids were separated into non-conjugated, glycine, taurine and sulphate fractions by ion-exchange chromatography on a lipophilic gel. Solvolysis of the sulphate was carried out by treatment with trifluoroethanol in acetone containing hydrochloric acid, and the liberated amino acid conjugates were fractionated again. The individual bile acids were separated on a reversed-phase C18 column (Bile Pak II), with detection by an immobilized 3 alpha-hydroxysteroid dehydrogenase enzyme reactor and chemiluminescence reaction of the generated NADH using 1-methoxy-5-methylphenazinium methylsulphate-isoluminol-microperoxidase system. The assay method showed the detection limits ranging from 8 to 250 pmol for the bile acids tested. Analysis of urine samples obtained from newborns, non-pregnant women and women in late pregnancy showed a large difference in bile acid composition and conjugation mode, suggesting that bile acid metabolism is different during fetal and neonatal periods.

3-Hydroxysteroid Dehydrogenases

Demonstration that a human 26S proteolytic complex consists of a proteasome and multiple associated protein components and hydrolyzes ATP and ubiquitin-ligated proteins by closely linked mechanisms.

It is known that two types of high-molecular-mass protease complexes are present in the cytosol of mammalian cells; a 20S latent multicatalytic proteinase named the proteasome, and a large proteolytic complex with an apparent sedimentation coefficient of 26S that catalyzes ATP-dependent breakdown of proteins conjugated with ubiquitin. In this work, we first demonstrated that a low concentration of SDS was required for activation of the latent proteasome, whereas the 26S complex degraded substrates for proteasomes in the absence of SDS. Moreover, the 26S complex was greatly stabilized in the presence of 2 mM ATP and 20% glycerol. Based on these characteristics, we next devised a novel procedure for purification of the 26S proteolytic complexes from human kidney. In this procedure, the proteolytic complexes were precipitated from cytoplasmic extracts by ultracentrifugation for 5 h at 105000 x g, and the large 26S complexes were clearly separated from the 20S proteasomes by molecular-sieve chromatography on a Biogel A-1.5 m column. The 26S enzyme was then purified to apparent homogeneity by successive chromatographies on hydroxyapatite and Q Sepharose, then by glycerol density-gradient centrifugation. Electrophoretic and immunochemical analyses showed that the purified human 26S complex consisted of multiple subunits of proteasomes with molecular masses of 21-31 kDa and 13-15 protein components ranging in molecular mass over 35-110 kDa, which were directly associated with the proteasome. The purified 26S proteolytic complex degraded 125I-labeled lysozyme-ubiquitin conjugates in an ATP-dependent manner. The 26S enzyme also showed high ATPase activity, which was copurified with the complex. Vanadate and hemin strongly inhibited not only ATP cleavage, but also ATP-dependent breakdown of ubiquitinligated proteins, suggesting that the 26S complex hydrolyzes ATP and ubiquitinated proteins by closely linked mechanisms. These findings indicate that the 26S complex consists of a proteasome with proteolytic function and multiple other components including an ATPase that regulates energy-dependent, ubiquitin-mediated protein degradation.

Adenosine Triphosphatases

The influence of labor on thrombotic and fibrinolytic systems.

Plasma fibrinopeptide A, thrombin-antithrombin III complexes, tissue-plasminogen activator and alpha 2-plasmin inhibitor-plasmin complexes were measured early in the first stage of labor, in the second stage of labor and at 15 min after placental separation. Fibrinopeptide A and thrombin-antithrombin III complex levels did not change from the first to the second stage of labor but increased significantly after placental separation. There was a significant increase of the tissue-plasminogen activator level between the early first stage of labor and the second stage of labor, and it remained high after placental separation. A significant increase in the level of plasma alpha 2-plasmin inhibitor-plasmin complexes was observed after placental separation. These findings suggest that activation of the thrombotic system occurs at the time of placental separation and that activation of the fibrinolytic system begins during labor before placental separation to compensate for the hypercoagulable state which develops at the time of delivery.

Adult

Immunoelectron microscopic localization of antigens which react with islet cell cytoplasmic antibodies within human pancreatic beta cells.

The presence of circulating autoantibody to islet cell cytoplasm is considered to be an important marker of Type 1 (insulin-dependent) diabetes mellitus. In the present study using islet cell cytoplasmic antibody positive patient sera as the first antibody, we studied the intracellular distribution of its antigen at the electron microscopic level using the pre-embedding immunoperoxidase method. Specific immunoreactivity was found in the membranes of beta cell-secretory granules and cytoplasmic membranes. This result is compatible with the interpretation that the antigen(s) on the membranes of beta cell secretory granules is (are) the target of islet cell cytoplasmic antibody.

Autoantibodies

Myasthenogenicity of a human acetylcholine receptor alpha-subunit peptide: morphology and immunology.

Each of 10 rats inoculated with a synthetic peptide comprising residues 125-147 (without a disulfide bond) of human acetylcholine receptor (AChR) alpha-subunit (H alpha) had deposits of IgG and C3 (immune complexes) and showed morphological changes in the fine structure at the motor end-plates 5 weeks after a single immunization. Antibody to the H alpha peptides was elevated 1 week after immunization, but, antibody levels to solubilized human or rat AChR were very low in 8 of the 10 rats. These results suggest that the immune response to peptide H alpha is the myasthenogenic site, which induces morphological change at the end-plates.

Animals

Protein kinase C in rat brain myelin.

It has been suggested that phosphorylation of myelin basic protein (MBP) in CNS is catalyzed by protein kinase C (PKC). In order to demonstrate that PKC in the myelin phosphorylates MBP, PKC was partially purified from rat CNS myelin by solubilization with Triton X-100 followed by a DEAE-cellulose column. MBP and histone III-S were phosphorylated in the presence of Ca2+ and phospholipid by rat myelin PKC. High voltage electrophoresis revealed that the phosphoamino acids in MBP by this kinase was serine residue, which is known to be the amino acid phosphorylated by PKC. The activity of PKC extracted from myelin was inhibited by the addition of psychosine to the incubation mixture. To confirm the presence of PKC molecule and to identify the isoform of PKC in the myelin, the solubilized myelin fraction was applied on SDS-PAGE, transferred to a nitrocellulose sheet and stained with anti-PKC monoclonal antibodies. Rat CNS myelin contained the PKC of about 80 kDa (intact PKC), and no proteolytic fragments were observed. PKC isozymes in myelin were type II and III. A developmental study from 14 to 42 postnatal days showed that PKC activity in CNS myelin seemed to parallel the deposition of myelin protein.

Animals

Usefulness of the urinary microalbumin/creatinine ratio in predicting pregnancy-induced hypertension.

In 199 normotensive pregnant women at 20 and 30 weeks of gestation, a fasting urinary albumin/creatinine ratio (FU Alb/Cr) was evaluated to predict pregnancy-induced hypertension (PIH). FU Alb/Cr in patients destined to develop PIH was significantly high compared to that in normotensive women. When FU Alb/Cr of more than 16 was considered to represent a positive test result, the negative predictive value was 94% and 96%, respectively. FU Alb/Cr is a useful screening tool for PIH.

Adult

The blood pressure response to infusions of angiotensin II during normal pregnancy: relation to plasma angiotensin II concentration, serum progesterone level, and mean platelet volume.

OBJECTIVE: This study is a survey of the determinants of refractoriness to the pressor effects of angiotensin II during normal pregnancy. STUDY DESIGN: In 25 normal pregnant women, the effective angiotensin II pressor dose was determined 88 times from the twenty-fifth to the thirty-second week of gestation. Immediately before the angiotensin II infusion, blood samples were collected and measured for plasma angiotensin II concentration, serum progesterone level, platelet count, and mean platelet volume. RESULTS: The effective pressor dose had a significantly positive correlation with plasma angiotensin II concentration and serum progesterone level and a negative correlation with mean platelet volume. CONCLUSION: The pregnancy-associated refractoriness to angiotensin II is physiologically determined, at least in part, by the elevated circulating levels of endogenously produced angiotensin II and by the progesterone produced by the placenta, whereas platelet activation attenuates the relative refractoriness during normal pregnancy.

Angiotensin II

Reaction mechanism of glutamate racemase, a pyridoxal phosphate-independent amino acid racemase.

Glutamate racemase of Pediococcus pentosaceus contained no cofactor, and was completely inactivated by a thiol reagent. The role of a cysteine residue in the enzyme reaction was studied by chemical modification. The modification of this cysteine residue resulted in a concomitant loss of activity. DL-Glutamate protected the enzyme from inactivation. The inactivated enzyme was reactivated by addition of dithiothreitol. The racemization in 2H2O showed an overshoot in the optical rotation of glutamate before the substrate was completely racemized. This indicates that the removal of alpha-hydrogen is the rate determining step. During the racemization of D- or L-glutamate in 3H2O, tritium was incorporated preferentially into the product. Glutamate is racemized by the enzyme probably through a two base mechanism.

Amino Acid Isomerases

N-methyl-D-aspartate increases cytosolic Ca2+ via G proteins in cultured hippocampal neurons.

The changes of the cytosolic Ca2+ concentrations ([Ca2+]i) induced by N-methyl-D-aspartate (NMDA) in fura-2-loaded cultured hippocampal neurons from rat embryos were investigated by the fast application method, using a fine pipe under extracellular Mg(2+)-free conditions. In the presence of Ca2+, NMDA, at concentrations in excess of 3 microM, induced a biphasic increase of [Ca2+]i, which consisted of an initial increase with a second rise that occurred after cessation of drug application. Under Ca(2+)-free conditions, NMDA (greater than 100 microM) in the absence of glycine or NMDA (greater than 50 microM) in the presence of glycine (greater than 10 microM) induced intracellular Ca2+ mobilization, which was blocked by 30 microM 2-amino-5-phosphonovaleric acid (APV) and reduced by islet-activating protein. When the neurons were superfused with Ca(2+)-free solution, the application of 3-10 microM NMDA, which had been dissolved in Ca(2+)-containing solution, induced the second phase [Ca2+]i increase, whereas application of kainate, quisqualate, or stimulation by 50 mM K+ did not. Islet-activating protein, 1-(5-isoquinolinesulfonyl)-2-methylpiperazine dihydrochloride (H-7), and D-sphingosine reduced the second phase [Ca2+]i increase. These results suggest that NMDA-induced intracellular Ca2+ mobilization is potentiated by the initial entry of Ca2+ into the cells and is regulated in an islet-activating protein-sensitive manner.

Animals

Menkes' disease: report of a case and determination of eumelanin and pheomelanin in hypopigmented hair.

We report a male infant with Menkes' disease who showed, at the age of 3 months, slow growth, hair abnormalities such as pili torti and white hair, and low levels of serum copper and ceruloplasmin. The exceptionally bright portions of his hair contained eumelanin and pheomelanin at levels only half those of normal Japanese controls. After subcutaneous administration of copper-histidinate for 2 months, his scalp hair changed to dark brown.

Ceruloplasmin

Neutrophil attractant protein-1-immunoglobulin G immune complexes and free anti-NAP-1 antibody in normal human serum.

After obtaining data indicating the presence of a neutrophil attractant protein-1 (NAP-1)-IgG complex in normal human serum, we developed sandwich ELISAs that could quantify NAP-1 and NAP-1-IgG in mixtures of the two moieties. The ELISA for free NAP-1 used a monoclonal capture antibody that did not bind NAP-1-IgG. The ELISA for NAP-1-IgG was based on omission of the anti-NAP-1 detection antibody (required for the free NAP-1 ELISA) and on interaction of phosphatase-conjugated anti-human IgG with the human NAP-1-IgG complex. Gel filtration of immunoaffinity-purified NAP-1-IgG showed that the bulk of the complex comprised a single IgG. Binding between NAP-1 and antibody is strong, since 8 M urea at neutral or alkaline pH did not release NAP-1. However, at pH 2.0 in 9 M urea approximately 15% of the total NAP-1 could be dissociated from the complex. NAP-1-IgG was detected in 18 of 26 sera from normal humans. The mean serum concentration was 58 ng of IgG-bound NAP-1/ml, with an SEM of 16 and a range from undetectable to 247 ng/ml. NAP-1-IgG concentrations in paired sera drawn at a 1-mo interval were remarkably constant. Using an ELISA for free NAP-1 with a detection limit of 200 pg/ml, we found no free NAP-1 in the 26 sera. Free anti-NAP-1-IgG autoantibody was found in 9 of 26 sera by direct ELISA. IgG anti-NAP-1 of all nine sera was polyclonal, comprising both kappa and lambda isotypes; predominant subclasses were IgG2 and IgG3. NAP-1-IgG did not compete with 125I-NAP-1 for binding to neutrophils, which suggests that IgG anti-NAP-1 is a molecular trap that prevents binding of NAP-1 to neutrophils after it diffuses from production sites into the circulation.

Antibodies, Monoclonal

Species difference and tissue distribution of uridine diphosphate-glucuronyltransferase activities toward E6080, 1-naphthol and 4-hydroxybiphenyl.

The apparent in vitro kinetic constants of uridine diphosphate-glucuronyltransferase (UDP-GT) activities towards E6080, 1-naphthol (1-N) and 4-hydroxybiphenyl (4-HB) were determined using microsomes, to assess the effect of inducing agents and evaluate species and tissue differences. In rats, the 3-methylcholanthrene and beta-naphthoflavone treatments increased the Vmax app/KM app values for E6080, 13- and 8-fold, and those for 1-N, 1.9- and 1.7-fold, respectively, but did not affect those for 4-HB. Phenobarbital was ineffective on the UDP-GT activity toward E6080. In rats and rhesus monkeys, the intestinal mucosa had higher specific UDP-GT activity toward E6080 than did the liver, and the rank order of the Vmax app/KM app value for E6080 in the intestinal mucosa was rhesus monkey > rat > guinea pig > beagle. In guinea pig, the Vmax app/KM app value for E6080 in the liver was 4 times higher than that in the intestinal mucosa. Both the Vmax app/KM app values for 1-N and 4-HB in the liver of all species studied were higher than those in the intestinal mucosa, and guinea pig liver showed the highest values, while, about the Vmax app for 1-N and 4-HB, beagle liver had the highest values. In the beagle intestinal mucosa, the Vmax app/KM app values for all 3 substrates studied were extremely low.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals