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M Staszczak

Publications and source records attributed to M Staszczak.

6 recordsLinked to original sources

Inhibition of the proteasome strongly affects cadmium stimulated laccase activity in Trametes versicolor.

Most proteins in eukaryotic cells are degraded by a highly selective non-lysosomal pathway that requires ATP and a large multicatalytic proteinase complex known as the 26S proteasome. In the present study, we evaluated the possibility that the proteasome-mediated pathway is involved in the regulation of laccase production by the efficient lignin-degrading basidiomycete Trametes versicolor in response to cadmium. These studies were performed using MG132 and lactacystin beta-lactone as specific proteasome inhibitors separately added to the culture medium of 7-day-old mycelia of T. versicolor at the start of incubation with 10-200 muM CdCl(2). We found that Cd(2+) stimulated laccase activity at all concentrations tested. The highest increase was observed at 100 muM Cd(2+), where laccase activity was three to fivefold higher than in Cd(2+)-free cultures. Blocking of proteasome function in Cd(2+)-supplemented cultures resulted in the considerably lower laccase activity in comparison to controls with no proteasomal inhibitor added. The decline of extracellular laccase activity triggered by the proteasome inhibitors was especially significant in the case of cultures with 100 muM Cd(2+), where around seven and threefold lost of laccase activity was observed for MG132 and lactacystin beta-lactone, respectively. Similar findings were obtained for intracellular laccase. In contrast to Cd(2+)-supplemented cultures, no significant change in laccase activity could be detected for Cd(2+)-free cultures after exposure to the proteasome inhibitors. Effects observed with chloroquine, the inhibitor of lysosomal proteolysis, added to T. versicolor cultures were markedly different from those found in the case of the proteasome inhibitors. We also showed that addition of Cd(2+) to growing cultures of T. versicolor did not significantly affect proteasome activities detected in high molecular (above 500 kDa) fractions of mycelial extracts. Our results strongly support the interpretation that the proteasome-mediated proteolytic pathway plays an important role in the regulation of T. versicolor laccase activity in response to Cd(2+).

Acetylcysteine↗

Studies on the role of proteases in the white-rot fungus Trametes versicolor: effect of PMSF and chloroquine on ligninolytic enzymes activity.

In the present study we investigated the possibility of proteinases, intracellular and extracellular, being involved in the regulation of ligninolytic activities in cultures of Trametes versicolor during the shift from primary growth (i.e. trophophase) to idiophase triggered by nitrogen or carbon starvation. These studies were performed using specific inhibitors added to the cultures of T. versicolor. Addition of PMSF (irreversible inhibitor of serine proteinases) or chloroquine (the lysosomotropic agent inhibiting intralysosomal degradation of proteins) revealed distinct differences in the activity of ligninolytic enzymes between nutrient-deprived and non-starved cultures. The addition of PMSF during the transfer of mycelia to the nutrient limited media significantly enhanced the activities of laccase (2-7-fold) and of unspecified peroxidases (2-4-fold). The activity of lignin peroxidase decreased with PMSF, both in tropho- and in idiophasic cultures. The enhanced activities of laccase and general peroxidases (horseradish peroxidase-like, HRP-like) were accompanied by markedly altered patterns of both intracellular and extracellular proteolytic activities revealed by electrophoretic analysis with polyacrylamide gels containing the copolymerized substrate (haemoglobin or gelatin, respectively). The experiments with chloroquine added to nutrient-deprived cultures showed that inhibition of vacuolar proteolysis resulted in lowered activities of laccase and peroxidase. Electrophoretic analysis revealed altered patterns of intracellular proteinases upon chloroquine addition to nutrient-starved cultures. Moreover, chloroquine was found to enhance the activity of proteases secreted in carbon-starved cultures. From the results it is concluded that both intracellular (including vacuolar) and extracellular proteases are involved in the regulation of laccase and peroxidase activity in cultures of T. versicolor under nutrient limitation.

Chloroquine↗

Feather keratin as a ligand in an affinity chromatographic technique for isolation of protease from Trichophyton verrucosum.

A technique of affinity chromatography was developed and optimized for proteases from the postculture fluid of Trichophyton verrucosum. The technique employs porous glass with adsorbed feather keratin or keratin covalently bound to the glass. Modifications of the amounts of proteases introduced into the columns and the manner of elution (pH gradient, buffer concentration, EDTA) made it possible to achieve yields of the isolated enzymes of the order of 80%. The degree of purification of four fractions isolated by the proposed technique was about 6-fold and allowed electrophoretically almost homogeneous enzymatic forms to be isolated. Substrate and inhibition tests on the four chromatographically purified proteolytic enzymes indicated a specifically keratinolytic nature of the enzymes studied.

Animals↗

Procedure for determination of participation of aminoacyl-tRNA in label distribution in studies on protein degradation in vivo.

The determination of radioactive amino acid incorporation into proteins is important in measurements of protein degradation. Aminoacyl-tRNAs participating in label distribution may interfere during these measurements. To check this possibility, a separate procedure with ion-exchange paper DE 81 allowing the percentage of radioactivity in aminoacyl-tRNA to be determined was developed. After application of microliter amounts of Trametes versicolor mycelium extracts on DE 81 paper circles, stepwise elution with buffers of different pH's and ionic strengths was carried out. This enabled labelled proteins to be separated from labelled aminoacyl-tRNAs and unbound amino acids.

Chromatography, Ion Exchange↗

Proteinase pattern in Trametes versicolor in response to carbon and nitrogen starvation.

In stationary cultures of Trametes versicolor seven proteinase bands were revealed by electrophoresis in mycelium and five in the medium. Under conditions of nitrogen starvation the number of bands in mycelium was unchanged whereas one extracellular proteinase was missing. In the case of carbon starvation one new intracellular proteinase activity appeared and one extracellular activity disappeared. Moreover, in all starved cultures distinct differences in the intensity of particular bands were observed.

Basidiomycota↗