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Biomedical subjects

T Kawasaki

Publications and source records attributed to T Kawasaki.

At least 19 recordsLinked to original sources

Identification, purification and reconstitution of thiamin metabolizing enzymes in human red blood cells.

Thiamin and its mono- (TMP), di- (TDP) and triphosphate (TTP) were assayed in adult human whole blood using high-performance liquid chromatography (HPLC). TDP and TTP were detected in red blood cells (RBC), but not in plasma. After incubation with 20 microM thiamin and 5 mM glucose for 2 h, the TDP and TTP contents of RBC increased from 111 to 222 and 0.6 to 2.2 nmol/l of packed RBC, respectively, suggesting enzymatic conversion of thiamin to TDP and then to TTP. Thiamin pyrophosphokinase (TPK, EC 2.7.6.2) had not been isolated before from human materials, nor had cytosolic adenylate kinase (AK1, EC 2.7.4.3) in human RBC been demonstrated to catalyze the phosphorylation of TDP to TTP, although AK1 from pig and chicken skeletal muscle possess TTP-synthesizing activity. TPK and AK1 in a human RBC lysate were therefore purified by a series of the conventional techniques. The specific activity of the purified TPK, which was obtained as a single protein, was 720 nmol TDP formed/mg protein per h at 37 degrees C. A partially purified AK1 preparation catalyzed the formation of TTP from TDP (specific activity, 170 nmol/mg protein per h at 37 degrees C) in addition to its proper reaction to form ATP from ADP. After incubation of the purified TPK and AK1 with 20 microM thiamin in the presence of ATP, ADP and Mg2+ at 37 degrees C for 48 h, the amounts of TDP and TTP synthesized were 465 and 54.0 pmol/250 microliters reaction mixture, respectively. Neither TDP nor TTP was formed when TPK was omitted from the reaction mixture and an omission of AK1 resulted in the formation of TDP alone. These results indicate that thiamin is converted to TDP by TPK and, subsequently, to TTP by AK1 in human RBC.

Adenylate Kinase

Immunological identification of a Cl- channel protein in electric organs of Narke japonica.

A Cl- channel in electric organs of Narke japonica was reconfirmed, using a polyclonal antibody, to be a 180k protein composed of two identical 90k units. The specific antibody against the 180k protein from electric organs reduced, when added in the cis side solution, the open probability of the Cl- channel in a planar bilayer membrane without affecting the single channel conductance, ion selectivity nor voltage dependency. Furthermore, the antibody added in the trans side also affected the channel to increase the open probability. The eluate of the immuno-affinity chromatography was found to contain only the 180k protein. These results indicate that 180k protein to be an integral membrane protein and to form the Cl- channel.

Animals

Multivalent ligand binding by serum mannose-binding protein.

The serum-type mannose-binding protein (MBP) is a defense molecule that has carbohydrate-dependent bactericidal effects. It shares with mammalian and chicken hepatic lectins similarity in the primary structure of the carbohydrate-recognition domain, as well as the ligand-binding mode: a high affinity (KD approximately nM) is generated by clustering of approximately 30 terminal target sugar residues on a macromolecule, such as bovine serum albumin, although the individual monosaccharides have low affinity (KD 0.1-1 mM). On the other hand, MBP does not manifest any significant affinity enhancement toward small, di- and trivalent ligands, in contrast to the hepatic lectins whose affinity toward divalent ligands of comparable structures increased from 100- to 1000-fold. Such differences may be explained on the basis of different subunit organization between the hepatic lectins and MBP.

Acute-Phase Proteins

A novel glucuronyltransferase in nervous system presumably associated with the biosynthesis of HNK-1 carbohydrate epitope on glycoproteins.

Recently, embryonic chicken brain extract was shown to contain a glucuronyltransferase, which transfers glucuronic acid from UDP-glucuronic acid to glycolipid acceptors (neolactotetraosyl ceramide). The enzyme was also suggested to transfer glucuronic acid to glycoprotein acceptors (asialoorosomucoid) (Das, K. K., Basu, M., Basu, S., Chou, D. K. H., and Jungalwala, F. B. (1991) J. Biol. Chem. 266, 5238-5243). In this study, the glucuronyltransferase activity in rat brain extract was separated into two groups by UDP-glucuronic acid-Sepharose CL-6B column chromatography. The enzyme recovered predominantly in the effluent fraction (GlcAT-L) catalyzed the transfer of glucuronic acid to glycolipid acceptors but not to glycoprotein acceptors, whereas the enzyme recovered in the eluate fraction (GlcAT-P) transferred glucuronic acid most predominantly to glycoprotein acceptors and very little to glycolipid acceptors. GlcAT-P was able to transfer glucuronic acid to oligosaccharide chains on asialoorosomucoid. The enzyme recognized a terminal lactosamine structure, Gal beta 1-4GlcNAc, on glycoproteins. It was localized in the nervous system and was hardly detectable in other tissues, including the thymus, spleen, lung, kidney, and liver. Although GlcAT-L and GlcAT-P shared some properties in common such as tissue distributions and developmental changes, they exhibited marked differences in their phospholipid dependence and in their pH profiles, apart from their respective acceptor preference to glycolipids and glycoproteins. The acceptor specificity and tissue distribution suggest that a novel glucuronyltransferase, GlcAT-P, is involved in the biosynthesis of the sulfoglucuronylgalactose structure in the HNK-1 carbohydrate epitope that is expressed on glycoproteins.

Animals

Adult coronary artery disease probably due to childhood Kawasaki disease.

We have surveyed adult survivors of childhood Kawasaki disease (KD) who had coronary artery disease that could be ascribed to KD. In response to questionnaires sent to cardiologists throughout Japan, 21 patients (17 men, 4 women, aged 20-63 years) with coronary lesions and a definite (2) or suspected (19) history of KD were reported. 5 patients had presented with acute myocardial infarction, 6 previous myocardial infarction, 9 angina pectoris, and 1 dilated cardiomyopathy. 16 patients had obstructions in two or more coronary arteries. 3 had died and 18 were alive with serious sequelae (mitral regurgitation, arrhythmias, congestive heart failure). Childhood KD should be included in the differential diagnosis of coronary artery disease in young adults.

Adult

Characterization of a glucuronyltransferase: neolactotetraosylceramide glucuronyltransferase from rat brain.

The properties of a rat brain glucuronyltransferase, which is presumed to be associated with the biosynthesis of the HNK-1 epitope on sulfoglucuronyl glycolipids, are described. The enzyme required divalent cations for reaction, with maximal activity at 10 mM Mn2+, and exhibited a dual optimum at pH 4-5 and pH 6 depending upon the buffer used, with the highest activity at pH 4.5 in MES buffer. This enzyme strictly recognized the Gal beta 1-4GlcNAc terminal structure, and was highly specific for neolacto (type 2) glycolipids as acceptor. The enzyme was localized specifically in the brain, and was barely detected in other issues, including the thymus, spleen, liver, kidney, lung, and sciatic nerve fibres. Phosphatidylinositol and phosphatidylserine increased the enzymatic reaction 4.4- and 2.3-fold, respectively, whereas phosphatidylcholine slightly decreased the rate.

Animals

Scammonins VII and VIII, two resin glycosides from Convolvulus scammonia.

Two minor ether-soluble resin glycosides, scammonins VII and VIII, were isolated from Radix Scammoniae, the roots of Convolvulus scammonia. In addition to (2S)-2-methylbutyric acid and tiglic acid, they are composed, respectively, of orizabic acid A and a new glycosidic acid named scammonic acid B, with similar macrocyclic ester structures to those of the scammonic acid A-based scammonins I-VI. Isolation of genuine scammonins III-V, which were previously obtained as peracetates, is also described.

Carbohydrate Sequence

Permeation of neutral molecules through calcium channel in sarcoplasmic reticulum vesicles.

Permeation of neutral molecules as well as Ca2+ through the Ca2+ channel in sarcoplasmic reticulum vesicles has been studied by the tracer and/or by the light scattering methods. In the absence of KCl, the Ca2+ channel was found not to be able to pass neutral molecules such as glucose, xylose, and glycine under the condition that the channel was open, although the channel could pass Ca2+. On the other hand, submolar concentrations of KCl made the channel become permeable to neutral molecules as well as Ca2+. Since the effect of KCl could be replaced by NaCl and KNO3, but not by sucrose and glucose, this effect of KCl is considered to be due to ionic strength and not to osmotic pressure. These results suggest that low ionic strength transforms the Ca2+ channel protein in such a manner as to block the permeation of neutral molecules without modifying the gating mechanism of the channel.

Animals

Thiamin triphosphate does not affect contraction of skinned fibers.

Effects of thiamin triphosphate (TTP) on contraction of chemically skinned fibers prepared from the extensor digitorum longus muscle of guinea pigs were investigated. The addition of TTP at 40 microM concentration affected neither Ca2+ uptake nor Ca(2+)-induced Ca2+ release by sarcoplasmic reticulum. Contraction of myofibril was not affected by TTP either.

Animals

Thiamin triphosphate synthesis in animals.

All the evidence obtained indicates that the synthesis of TTP in vitro and in vivo is catalyzed by cytosolic adenylate kinase. Further studies should explore whether adenylate kinase is the only enzyme involved in TTP synthesis, together with physiological roles of TTP in living organisms.

Adenylate Kinase

Antioxidant function of coenzyme Q.

Evidence for in vivo antioxidative activity of reduced CoQ homologs has been presented. This came from studies with experimental endotoxemia in mice, reoxygenation of rat liver following ischemia, and reoxygenation of canine heart following 24-hour cold preservation. In radical-induced injury of hepatocytes, it has been first shown that reduced CoQ9 acts as a potential antioxidant regardless of its cellular concentration, whereas reduced CoQ10 acts in cells containing CoQ10 as the predominant homolog. The antioxidant activity of reduced CoQ homologs appears to be independent of that of alpha-tocopherol under the conditions employed.

Animals

Species differences in platelet aggregation induced by platelet-activating factor (PAF).

Species differences in platelet aggregation induced by platelet-activating factor (PAF) were investigated by using the same procedure of platelet preparation and biological assay. Washed platelets of six different species (horses, dogs, rats, rabbits, sheep and guinea pigs) were prepared employing the same method and platelet aggregation was induced by C16-PAF. Horse platelets were most sensitive to PAF (8.0 x 10(-12) M) and rabbit platelets activated by 5.0 x 10(-11) M PAF were also sensitive enough to detect PAF in clinical samples.

Animals

The effects of okadaic acid and calyculin A on thrombin induced platelet reaction.

Okadaic acid and calyculin A, specific and cell permeable inhibitors of protein phosphatase 1 and 2A, inhibited aggregation, secretion and delta [Ca++]i in thrombin stimulated platelets. The inhibitory effect of calyculin A (IC50: 3.6-4.8nM) was about two hundred times more potent than that of okadaic acid (IC50: 0.8-1.3 microM), which is consistent with the difference of the reported Ki values for protein phosphatase 1. These phosphatase inhibitors and PGI2 synergistically enhanced the phosphorylation of 50kDa protein (P50), which is solely related to the inhibition of platelet reaction. These results indicate that serine/threonine protein phosphatase 1 might play a role in platelet activation.

Adenosine Triphosphate