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Biomedical subjects

M Masada

Publications and source records attributed to M Masada.

At least 55 records · Page 3Linked to original sources

Dyspropterin, an intermediate formed from dihydroneopterin triphosphate in the biosynthetic pathway of tetrahydrobiopterin.

The structure of dyspropterin, a new name given to an intermediate which is formed from dihydroneopterin triphosphate in the biosynthetic pathway of tetrahydrobiopterin, has been studied. Sepiapterin reductase (EC 1.1.1.153) was found to reduce dyspropterin to tetrahydrobiopterin in the presence of NADPH. Several lines of evidence showing the formation of tetrahydrobiopterin have been presented. Stoichiometric analysis revealed that there is a 1:2 relationship between the production of biopterin and the oxidation of NADPH during the reductase-catalyzed reduction of dyspropterin. The tetrahydrobiopterin production from dyspropterin was enhanced by dihydropteridine reductase (EC 1.6.99.7). Dyspropterin could also serve as a cofactor in phenylalanine hydroxylase (EC 1.14.16.1) system. These results are consistent with the view that dyspropterin is 6-(1,2-dioxopropyl)-5,6,7,8-tetrahydropterin. Based on our findings, the biosynthetic pathway of tetrahydrobiopterin from dihydroneopterin triphosphate has been discussed.

Alcohol Oxidoreductases↗

Characterization of enhanced intestinal permeability; electrophysiological study on the effects of diclofenac and ethylenediaminetetraacetic acid.

The mechanism of the enhancing effects of diclofenac sodium and disodium ethylenediaminetetraacetate (EDTA) on intestinal permeability to sulphanilic acid were investigated in the rat isolated jejunum by an electrophysiological technique. The results suggested that diclofenac sodium increased the mucosal-to-serosal flux rate of sulphanilic acid by enhancing both transcellular and paracellular permeabilities while the effect of EDTA was located only in the paracellular pathway.

Animals↗

Further investigations on the transport mechanism of cephalexin and ampicillin across rat jejunum.

The transport mechanisms of cephalexin (CEX) and ampicillin (AB-PC) across rat jejunum were examined using the electrophysiological technique in vitro. From the experiments under the short-circuit condition, it became evident that the specific transport system participates in the mucosal-to-serosal transport of CEX, while AB-PC is transport only by the simple diffusion. In addition, the transport routes of these drugs were examined using the voltage-clamp technique. Salicylate, a model drug of the weak electrolyte, was transported mainly via a paracellular route, while CEX, in the absence of Na, penetrated the membrane via two routes, i.e. the transcellular route and the paracellular route. Similar result was obtained as to AB-PC. So it seems to be likely that these two drugs diffuse through the intestinal epithelium via the similar pathways in the Na-free condition.

Ampicillin↗

Synthesis of biopterin from dihydroneopterin triphosphate by rat tissues.

High performance liquid chromatography procedure for the analysis of pterins of biopterin synthesis from dihydroneopterin triphosphate via sepiapterin in rat tissues has been described. Sepiapterin-synthesizing enzyme 1, which catalyzes in the presence of Mg2+ the conversion of dihydroneopterin triphosphate to an intermediate designated compound X was assayed by determining pterin which is formed from compound X under acidic conditions. Sepiapterin- and biopterin-synthesizing activity were also assayed by determining sepiapterin and biopterin, respectively. Analytical results revealed the presence of these activities in most rat tissues examined and high levels were found in kidney, pineal gland and liver. Activities were also detectable in peripheral erythrocytes.

Animals↗

Beta-hydroxy-alpha-ketobutyric acid in Drosophila melanogaster, with reference to biosynthesis of drosopterins.

A substance designated as compound D, which reacts spontaneously with 7,8-dihydropterin to give drosopterins, is found in Drosophila melanogaster. The compound was partially purified from the extract of flies by column chromatography and identified as beta-hydroxy-alpha-ketobutyric acid by analysis of its 2,4-dinitrophenylhydrazone, mass spectrometry and reactivity with 7,8-dihydropterin. A highly significant correlation (r=0.969, p less than 0.001) was found between the amounts of the compound and drosopterins in the eye-pigment mutants of Drosophila. Changes of the compound during development of flies were also closely related to those of drosopterins. Based on these observations, a role of the compound in biosynthesis of drosopterins has been discussed.

Animals↗