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T Emery

Publications and source records attributed to T Emery.

29 records · Page 2Linked to original sources

Siderophore-mediated mechanism of gallium uptake demonstrated in the microorganism Ustilago sphaerogena.

The radioactive gallium analog of ferrichrome, Ga-67 deferriferrichrome, has been prepared and compared with ferrichrome in the specific siderophore-transport system of Ustilago sphaerogena. The gallium analog is taken up by the cells in an active transport process indistinguishable from that of ferrichrome. Ga(III) effectively competes with Fe(III) for siderophore ligands both in vitro and in vivo at a rate that is highly dependent upon the chemical nature of the ligand. The findings may explain how Ga(III) mimics Fe(III) in clinical use.

Basidiomycota↗

The role of ferrichrome reductase in iron metabolism of Ustilago sphaerogena.

Ferrichrome, the ferric ionophore for Ustilago sphaerogena, can serve as a source of iron for the enzyme ferrochelatase (protoheme ferrolyase, EC 4.99.1.1) in this organism, but only after enzymatic removal of the iron from its carrier. U. sphaerogena contains a specific ferrichrome reductase (NADH:ferrichrome oxidoreductase) which catalyzes cellular dissociation of the complex by reduction of the metal to the ferrous state. A spectrophotometric assay was developed based on trapping of the ferrous ion produced by ferrozine. There is an apparent inhibition by oxygen which is thought to be due to re-oxidation of the metal under the assay conditions. The close structural analogue, ferrichrome A, is not a substrate, nor is the ester type siderochrome ferric hexahydro-N,N',N"-triacetylfusarinine C. Aluminum desferriferrichrome is inhibitory. The importance of this enzyme for the metabolism of iron in this organism is discussed.

Basidiomycota↗

Nalpha-acetylfusarinines: isolation, characterization, and properties.

The isolation, purification, and structural elucidation of a new group of naturally occurring hydroxamic acids are described. These compounds are produced by an unidentified species of Penicillium when grown on iron deficient medium. They are closely related structurally to the fusarinines, whose basic structure contains Ndelta-(cis-5-hydroxy-3-methylpent-2-enoyl)-Ndelta-hydroxy-L-ornithine, but the alpha-amino groups in the new compounds are protected by Nalpha acetyl groups. The most complex of the compounds is N,N',N"-triacetylfusarinine C, or N,N'N"-triacetylfusigen, a cyclic triester composed of three molecules on Nalpha-acetylfusarinine. The trimer has growth factor activity for Arthrobacter JG-9 about equal to fusarinine C itself. The monohydroxamate, Nalpha-acetylfusarinine, is more active than the trimer. The greater chemical stability of these compounds compared to the unacetylated fusarinines reconciles the utilization of otherwise unstable amino acid esters as iron transport agents.

Drug Stability↗

Fungal ornithine esterases: relationship to iron transport.

Extracts of Fusarium roseum (ATCC 12822) contain an enzyme which hydrolyzes the ornithine ester bonds of fusarinine C, a cyclic trihydroxamic acid produced by this organism. The methyl ester of Ndelta-dinitrophenyl-L-ornithine is also a substrate for the enzyme, and an assay was devised using this substrate. The enzyme exhibits a sharp maximum of activity at pH 7.5 and is extremely temperature sensitive. It is strongly inhibited by HgCl2 and p-chloromercuribenzoate, and it is competitively inhibited by Ndelta-dinitrophenyl-D-ornithine methyl ester (Ki = 0.3mM). Methyl esters of glycine, L-alanine, dinitrophenyl-L-alanine, dinitrophenyl-beta-alanine, and Ndelta-dinitrophenyl-Nalpha-acetyl-L-ornithine are not substrates, although Nepsilon-dinitrophenyl-L-lysine methyl ester is as effective as the ornithine derivative. Nonspecific lipases do not hydrolyze ornithine esters, nor does trypsin. The three ester bonds of fusarinine C are progressively hydrolyzed by the enzyme to eventually yield the monomer, fusarinine. The ferric chelate of fusarinine C is not hydrolyzed. An enzyme from Penicillium sp. was isolated with identical properties toward Nbeta-dinitro-phenyl-L-ornithine methyl ester as substrate. It also hydrolyzes N,N',N"-triacetylfusarinine C, a cyclic trihydroxamate containing Nalpha-acetylornithine ester bonds, which is produced by this organism. This substrate is hydrolyzed to Nalpha-acetylfusarine. In contrast to the Fusarium enzyme, this enzyme is fully active toward the ferric trihydroxamate chelate. However, replacement of iron by aluminum leads to a completely inactive substrate. Production of the enzyme is severely suppressed by iron in the growth medium. It is proposed that these specific ornithylesterases provide a mechanism of cellular iron release by hydrolysis of the ferric ionophores, and that an iron-exchange step occurs prior to, and is a prerequisite for, hydrolysis of the ester bonds.

Biological Transport, Active↗