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Biomedical subjects

T Kumano

Publications and source records attributed to T Kumano.

27 records · Page 2Linked to original sources

Molecular cloning and characterization of a chemotactic transducer gene in Pseudomonas aeruginosa.

A Pseudomonas aeruginosa mutant, defective in taxis toward L-serine but responsive to peptone, was selected by the swarm plate method after N-methyl-N'-nitrosoguanidine mutagenesis. The mutant, designated PCT1, was fully motile but failed to show chemotactic responses to glycine, L-serine, L-threonine, and L-valine. PCT1 also showed weaker responses to some other commonly occurring L-amino acids than did the wild-type strain PAO1. A chemotactic transducer gene, denoted pctA (Pseudomonas chemotactic transducer A), was cloned by phenotypic complementation of PCT1. Nucleotide sequence analysis showed that the pctA gene encodes a putative polypeptide of 629 amino acids with a calculated mass of 68,042. A hydropathy plot of the predicted polypeptide suggested that PctA may be an integral membrane protein with two potential membrane-spanning regions. The C-terminal domain of PctA showed high homology with the enteric methyl-accepting chemotaxis proteins (MCPs). The most significant amino acid sequence similarity was found in the region of MCPs referred to as the highly conserved domain. The pctA gene was inactivated by insertion of a kanamycin resistance gene cassette into the wild-type gene, resulting in the same observed deficiency in taxis toward L-amino acids as PCT1. In vivo methyl labeling experiments with L-[methyl-3H]methionine showed that this knockout mutant lacked an MCP with a molecular weight of approximately 68,000.

Amino Acid Sequence↗

Herpes simplex encephalitis with transient global amnesia as an early sign.

Cerebral ischemia has been proposed as the etiology of transient global amnesia. Recently, however, migranous and epileptic etiologies have attracted attention. A 56-year-old man had transient global amnesia and the next day began to display symptoms of meningoencephalitis. Herpes simplex encephalitis was diagnosed based on the titer of herpes simplex virus antibodies. The transient global amnesia appears to have occurred as an early sign of herpes simplex encephalitis and may have been provoked by an epileptic mechanism.

Amnesia↗

Comparative effect of chemical structure of chlorinated N-hydroxy-N-acyl-aminobiphenyl ethers and their related compounds on rat liver cytosol-catalyzed transacylation.

Studies of structure-transacylation relationships for a series of acylhydroxamic acids of chlorinated biphenyl ethers and their related compounds by rat liver N-arylacylhydroxamic acid-dependent N-acyltransferase (AHNAT) are described. In the transacylation of 4-aminoazobenzene catalyzed by AHNAT, 4-substituents (chloro, phenoxy, and mono-, di-, and trichlorophenoxy groups) of N-phenylacetohydroxamic acid enhanced the ability of the unsubstituted hydroxamic acid to serve as acetyl donors. As to the number of chlorines in the phenoxy group, the activity increased with decreasing number from three to zero. Of the monochlorophenoxy compounds, the 4'-chloro compound was the most effective acetyl donor. In 3-substituents (chloro and phenoxy groups) of N-phenylacetohydroxamic acid, the 3-chloro compound was an effective acetyl donor similarly to the 4-chloro compound, whereas the 3-phenoxy compound was 48% as active as the 4-phenoxy compound. None of 2-substituted N-phenylacetohydroxamic acids examined showed transacetylation activity. As to the effect of acyl group structure on the activity, N-propionyl, N-glycoloyl, and N-formyl derivatives of the 4-(4'-chlorophenoxy) compound were only 4, 2, and 0% as active as the corresponding acetyl compound, respectively. Esterification of the N-arylacetohydroxamic acid decreased the activity; O-acetyl, O-methyl, O-glucosyl, and O-glucuronosyl derivatives of the 4-(4'-chlorophenoxy) compound were 35, 7, 0, and 0% as active as the corresponding N-hydroxy compound, respectively.

Acetyltransferases↗