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Biomedical subjects

K Matsui

Publications and source records attributed to K Matsui.

At least 775 records · Page 43Linked to original sources

Formation of roseoflavin from guanine through riboflavin.

A synthesis of roseoflavin by Streptomyces davawensis from guanine through riboflavin was demonstrated. The lines of evidence are (1)incorporations of 14C of [2-and U-14C] guanine and [2-14C] riboflavin into roseoflavin, (2) no incorporation of 14C of [8-14C] guanine into roseoflavin, (3) localizations of 14C in roseoflavin, and (4) a decrease of specific radioactivity of roseoflavin formed from [2-14C]guanine on addition of riboflavin to the culture. The 14C atoms in roseoflavin formed were localized by radioactivity analysis of the NaOH-hydrolysis products, i.e., urea and 1,2-dihydro-6-methyl-7-dimethylamino-2-keto-1-D-ribityl-3-quinox-alinecarboxylic acid (QC), a new substance. These hydrolysis products were identified by the isolation of dixanthylures, decomposition with urease, and from the properties of QC and QC tetraacetate isolated. These finding suggest that the pyrimidine ring of guanine is conserved in the formation of roseoflavin from guanine through riboflavin.

Anti-Bacterial Agents↗

Lung uptake to technetium-99m microaggregated human albumin in the rat after treatment with microaggregated human albumin or macroaggregated human albumin.

Marked accumulation in lung and liver of intravenously--injected 99mTc-microaggregated human serum albumin (liver imaging agent) was observed in rats pretreated with the subcutaneous injection of microaggregated or macroaggregated human serum albumin, whereas accumulation of 99mTc-microaggregated human serum albumin was observed only in the liver of rats pretreated with plain human serum albumin or in non-treated control rats. The activity of the intravenously-administered 99mTc-sulfur colloid was concentrated in the liver and spleen only and not in the lung, of rats previously treated with human serum albumin, microaggregated human serum albumin, or macroaggregated human serum albumin. These observations suggest that the specific accumulation of microaggregated human serum albumin in the lung of rats pretreated with aggregated albumin is due to rapid in vivo clumping of injected particles, possibly due to antigen-antibody reaction.

Animals↗

Studies on luciferase from Photobacterium phosphoreum. XI. Interaction of 8-substituted FMNH2 with luciferase.

The interaction of bacterial luciferase from Photobacterium phosphoreum with reduced flavin was investigated using various 8-substituted FMNH2 analogs. Flavins tested were FMNH2 and FMNH2 substituted at the 8 position with HO-, CH3O-, C2H5O-, Cl-, Br-, I-, H2N-, (CH3)HN-, and (ch3)2n. 8-ch30-, c2h5o-, cl-, and Br-FMNH2 showed luminescent activity in the luciferase reaction with emission peaks at various wavelengths. 8-HO- and I-FMNH2 were competitive inhibitors toward FMNH2 in the luminescent reaction. 8-Amino analogs of FMNH2 showed no luminescent or inhibitor activity. The dissociation constant of the luciferase-FMNH2 analog complex was determined kinetically as a substrate or inhibitor constant. A contribution of the imino group at position 5 in the isoalloxazine ring to the FMNH2 binding to luciferase was suggested by a Hammett plot of the dissociation constants.

Flavin Mononucleotide↗

Microautoradiographic studies on the cellular localization of radiothallium.

201Tl-chloride and 204Tl-nitrate were similarly distributed in organs of mice 10 min and 60 min after intravenous injection. Autoradiographic studies were carried out with 204Tl-nitrate in rats (injected intraperitoneally) as well as in mice and dogs (injected intravenously). Thallium localized in the cells of proximal and distal convoluted tubules and collecting tubules of the kidney. In the intestines, it was distributed mostly in the cells of the smooth musculature and surface epithelium of the villi. Some silver grains were seen in the goblet cells and in the lumen as well. It localized in the sarcoplasm of the myocardium and the skeletal muscle cells. In thyroid, most of the thallium was seen in the colloidal part of the follicle. In testes, silver grains were seen in and around the cells of Sertoli and in the lumen of the seminiferous tubules. Some localized concentration in the interstitial cells of the testes was also observed.

Animals↗