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Y Ashihara

Publications and source records attributed to Y Ashihara.

27 records · Page 2Linked to original sources

Studies on the initial reactive sites for platelet activation. Cationized ferritin- and wheat germ agglutinin-binding sites on the cells.

The binding sites for cationized ferritin or ferritin-conjugated wheat germ agglutinin on the cell surface were studied on platelets before or after fixation in glutaraldehyde. The effects of neuraminidase on the binding sites were also demonstrated after fixation of the platelets. Changes in the binding sites and distribution pattern due to exposure to these ligands were further investigated in the unfixed platelets under a variety of conditions such as incubation time and medium. The fixed platelets incubated with either ligand showed an even and continuous distribution of particles on the cell surface. In the unfixed platelets, the ligands were rapidly moved and aggregated probably by lateral migration after binding to the cell surface. The ligands were also bound to the membrane surface and simultaneously appeared in the interior of the open canalicular system. As the binding sites were moved on the cell surface as well as into the open canalicular system, morphological changes suggestive of platelet secretion occurred. The binding sites of either ligand were redistributed on the platelet cell surface. Glycoprotein Ib, thought to be the receptor site for wheat germ agglutinin on the cell surface, contains sialic acids that contribute to the negative charge of platelets. Therefore, glycoprotein Ib may play an important role as the initial reactive site for thrombotic stimuli.

Adult↗

Rate assay for determination of serum pseudo-cholinesterase activity.

A simple and reproducible method for the determination of serum pseudo-cholinesterase activity was developed by making use of a stable substrate, p-hydroxybenzoylcholine, with p-hydroxybenzoate hydroxylase as a linked enzyme. The method is based on spectrophotometric measurement of the decrease of NADPH. p-Hydroxybenzoate released from p-hydroxybenzoylcholine is hydroxylated by the action of p-hydroxybenzoate hydroxylase in the presence of NADPH and O2 to produce 3,4-dihydroxybenzoate and NADP+. This method is superior to the conventional methods in that this substrate is extremely stable up to pH 9.0, which is close to the optimum pH for the assay (pH 8.0). Serum interference was resolved by the use of p-hydroxybenzoate hydroxylase as a linked enzyme. The Km value of pseudocholinesterase for p-hydroxybenzoylcholine is 1 X 10(-5) M. The results of our method and Garry's method (Clin. Chem. 11, 91-96, 1965) correlated well (r = 0.962). The within-run and between-run C.V. values were 2.1 and 2.7, respectively.

4-Hydroxybenzoate-3-Monooxygenase↗

Colorimetry of angiotensin-I converting enzyme activity in serum.

This simple, accurate, and reproducible colorimetric method for determining the activity of angiotensin-I converting enzyme is based upon colorimetry of the quinoneimine dye produced from the substrate p-hydroxyhippuryl-L-histidyl-L-leucine by action of this enzyme through the following series of reactions. The enzyme acts on the substrate to yield p-hydroxyhippuric acid and L-histidyl-L-leucine. The former is then hydrolyzed in the presence of hippuricase to produce p-hydroxybenzoic acid and glycine. Finally, oxidative coupling of p-hydroxybenzoic acid with 4-aminoantipyrine is catalyzed by peroxidase in the presence of hydrogen peroxide, producing a quinoneimine dye, the concentration of which is measured at its absorbance maximum at 505 nm to evaluate the activity of ACE. The Km value for the above-mentioned substrate is 0.32 mmol/L, the optimum pH is 8.3. Results by the present method and Cushman and Cheung's method (Biochem. Pharmacol. 20: 1637, 1971) correlate closely (r = 0.986). The within-run CV is 2.93%.

Colorimetry↗

Modification of yeast uricase with polyethylene glycol: disappearance of binding ability towards anti-uricase serum.

Uricase from Candida utilis was modified with activated polyethylene glycol (2-O-methoxypolyethylene glycol-4,6-dichloro-s-triazine) of molecular weight of 5,000 daltons. The modification of 43% of the total amino groups in the uricase molecule gave rise to a complete loss of the binding ability towards anti-uricase serum from rabbit. This modified uricase retained 15% of the enzymic activity of non-modified uricase.

Animals↗