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Dive into the research topics where Claus Bollschweiler is active.

Publication


Featured researches published by Claus Bollschweiler.


Applied and Environmental Microbiology | 2006

Use of Laccase as a Novel, Versatile Reporter System in Filamentous Fungi

Gerd J. Mander; Huaming Wang; Elizabeth A. Bodie; Jens Wagner; Kay Vienken; Claudia Vinuesa; Caroline Foster; Abigail C. Leeder; Gethin Allen; Valerie Hamill; Giselle G. Janssen; Nigel Dunn-Coleman; Marvin Karos; Hans Georg Lemaire; Thomas Subkowski; Claus Bollschweiler; Geoffrey Turner; Bernhard Nüsslein; Reinhard Fischer

ABSTRACT Laccases are copper-containing enzymes which oxidize phenolic substrates and transfer the electrons to oxygen. Many filamentous fungi contain several laccase-encoding genes, but their biological roles are mostly not well understood. The main interest in laccases in biotechnology is their potential to be used to detoxify phenolic substances. We report here on a novel application of laccases as a reporter system in fungi. We purified a laccase enzyme from the ligno-cellulolytic ascomycete Stachybotrys chartarum. It oxidized the artificial substrate 2,2′-azino-di-(3-ethylbenzthiazolinsulfonate) (ABTS). The corresponding gene was isolated and expressed in Aspergillus nidulans, Aspergillus niger, and Trichoderma reesei. Heterologously expressed laccase activity was monitored in colorimetric enzyme assays and on agar plates with ABTS as a substrate. The use of laccase as a reporter was shown in a genetic screen for the isolation of improved T. reesei cellulase production strains. In addition to the laccase from S. charatarum, we tested the application of three laccases from A. nidulans (LccB, LccC, and LccD) as reporters. Whereas LccC oxidized ABTS (Km = 0.3 mM), LccD did not react with ABTS but with DMA/ADBP (3,5-dimethylaniline/4-amino-2,6-dibromophenol). LccB reacted with DMA/ADBP and showed weak activity with ABTS. The different catalytic properties of LccC and LccD allow simultaneous use of these two laccases as reporters in one fungal strain.


European Biophysics Journal | 2010

Recombinantly produced hydrophobins from fungal analogues as highly surface-active performance proteins

Wendel Wohlleben; Thomas Subkowski; Claus Bollschweiler; Bernhard von Vacano; Yaqian Liu; Wolfgang Schrepp; Ulf Baus


Archive | 2006

Use of hydrophobin-polypeptides and conjugates from hydrophobin-polypeptides having active and effect agents and the production thereof and use thereof in the cosmetic industry

Thomas Subkowski; Marvin Karos; Hans-Georg Lemaire; Heiko Barg; Claus Bollschweiler


Archive | 2006

Novel hydrophobin fusion products, production and use thereof

Thomas Subkowski; Marvin Karos; Hans-Georg Lemaire; Heiko Barg; Claus Bollschweiler


Archive | 2005

Keratin-binding polypeptides

Heiko Barg; Thomas Subkowski; Hans-Georg Lemaire; Claus Bollschweiler; Arne Ptock


Archive | 2006

Use of proteins as demulsifying agents

Dietmar Posselt; Werner Schmitt; Marcus Guzmann; Claudius Kormann; Matthias Kiefer; Claus Bollschweiler; Thomas Subkowski; Hans-Georg Lemaire; Marvin Karos; Ulf Baus


Archive | 2006

Use of Surface-Active Non-Enzymatic Proteins for Washing Textiles

Dieter Boeckh; Volker Schwendemann; Ulf Baus; Thorsten Montag; Marvin Karos; Thomas Subkowski; Claus Bollschweiler; Hans-Georg Lemaire


Archive | 2006

Method for Coating Surfaces with Hydrophobins

Thomas Subkowski; Marvin Karos; Claus Bollschweiler; Ulf Baus; Patrick Rüdiger; Michael Lang; Thorsten Montag; Alexandra Kasprzyk


Archive | 2006

Novel cysteine-depleted hydrophobin fusion proteins, their production and use thereof

Thomas Subkowski; Marvin Karos; Hans-Georg Lemaire; Heiko Barg; Claus Bollschweiler


Archive | 2006

Use of hydrophobin for hard surface soil-repellent treatment

Heike Becker; Claus Bollschweiler; Thomas Subkowski; Ulf Baus; Hans-Georg Lemaire; Marvin Karos

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