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1.
Appl Microbiol Biotechnol ; 63(4): 390-7, 2004 Jan.
Article in English | MEDLINE | ID: mdl-12802534

ABSTRACT

Lignolytic enzymes such as laccase have been difficult to over-express in an active form. This paper describes the expression, characterization, and application of a fungal laccase in maize seed. The transgenic seed contains immobilized and extractable laccase. Fifty ppm dry weight of aqueously extractable laccase was obtained, and the remaining solids contained a significant amount of immobilized laccase that was active. Although a portion of the extractable laccase was produced as inactive apoenzyme, laccase activity was recovered by treatment with copper and chloride. In addition to allowing the apoenzyme to regain activity, treatment with copper also provided a partial purification step by precipitating other endogenous corn proteins while leaving >90% of the laccase in solution. The data also demonstrate the application of maize-produced laccase as a polymerization agent. The apparent concentration of laccase in ground, defatted corn germ is approximately 0.20% of dry weight.


Subject(s)
Laccase/genetics , Laccase/isolation & purification , Polyporales/enzymology , Seeds/enzymology , Zea mays/genetics , Apoenzymes/isolation & purification , Apoenzymes/metabolism , Chlorides/metabolism , Copper/metabolism , Fungal Proteins/genetics , Laccase/biosynthesis , Lignin/metabolism , Plants, Genetically Modified/enzymology , Plants, Genetically Modified/genetics , Polyporales/genetics , Recombinant Proteins/biosynthesis , Recombinant Proteins/genetics , Recombinant Proteins/isolation & purification , Zea mays/enzymology
2.
Arch Toxicol ; 61(5): 366-72, 1988 Apr.
Article in English | MEDLINE | ID: mdl-3395248

ABSTRACT

This paper describes the ability of racemic, and enantiomerically pure cis- and trans-methyl epoxycinnamates (methyl 3-phenyl-2,3-epoxy-propanoates) to undergo glutathione conjugation and subsequent excretion as mercapturic acid and on the mutagenicities of these epoxy esters in the Ames assay. In incubation mixtures containing rat liver cytosol (9,000 g), the decrease of glutathione due to the epoxy esters occurred enzymatically. The highest glutathione depletion was found for the cis-epoxy cinnamic esters. Adult male rats administered a single i.p. dose of racemic trans- and cis-epoxy cinnamates (0.7 mmol/kg, n = 4) excreted thioethers in urine. Higher urinary thioether excretion was found after the cis-epoxy ester dosing. The structures of the thioether metabolites isolated from the urinary extracts were identified by TLC and confirmed by synthesis and mass spectrometry (FAB+). The thioethers appeared to be hydroxy mercapturic acids. The N-alkylating potential of the racemic epoxy esters was determined using 4-(p-nitrobenzyl)pyridine (= NBP). The trans-epoxy ester appeared to react much better with NBP than the cis-compound. Mutagenic effects of racemic trans-epoxy cinnamate as well as the enantiomerically pure trans-epoxy cinnamates were observed in the Ames test with S. typhimurium strains TA1535, TA1537, TA1538 and TA100 without metabolic activation. No mutagenic responses were detected using any of the epoxy cinnamates with S9 activation. By comparing the mutagenicity and the enzymatically catalyzed glutathione conjugation it follows that the activity of the respective enantiomeric methyl cinnamates goes in the opposite order. Glutathione conjugation plays a protective role in the detoxication in living organism of the potentially toxic methyl epoxy cinnamates.


Subject(s)
Cinnamates/metabolism , Epoxy Compounds/metabolism , Ethers, Cyclic/metabolism , Glutathione/metabolism , Mutagens , Acetylcysteine/isolation & purification , Alkylation , Animals , Biotransformation , Chromatography, Gas , Chromatography, Thin Layer , Cinnamates/toxicity , Cinnamates/urine , Epoxy Compounds/toxicity , Epoxy Compounds/urine , Liver/metabolism , Male , Mass Spectrometry , Mutagenicity Tests , Rats , Rats, Inbred Strains , Stereoisomerism
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