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Laccase-catalyzed cross-linking of amino acids and peptides with dihydroxylated aromatic compounds
Authors:Annett Mikolasch  Veronika Hahn  Katrin Manda  Judith Pump  Nicole Illas  Dirk Gördes  Michael Lalk  Manuela Gesell Salazar  Elke Hammer  Wolf-Dieter Jülich  Stephan Rawer  Kerstin Thurow  Ulrike Lindequist  Frieder Schauer
Institution:1. Institute of Microbiology, Ernst-Moritz-Arndt-University Greifswald, Friedrich-Ludwig-Jahn Stra?e 15, 17487, Greifswald, Germany
2. Department of Radiotherapy, University Rostock, Südring 75, 18059, Rostock, Germany
3. Institute of Automation, University Rostock, R.-Wagner-Str. 31, 18119, Rostock, Germany
4. Institute of Pharmacy, Ernst-Moritz-Arndt-University Greifswald, Friedrich-Ludwig-Jahn Stra?e 17, 17487, Greifswald, Germany
5. Interfaculty Institute for Genetics and Functional Genomics, Ernst-Moritz-Arndt-University Greifswald, Friedrich-Ludwig-Jahn Stra?e 17, 17487, Greifswald, Germany
6. Applied Biosystems, a part of Life Technologies, Frankfurter Stra?e 129 B, 64293, Darmstadt, Germany
7. Center for Life Science Automation, F.-Barnewitz-Str. 8, 18119, Rostock, Germany
Abstract:In order to design potential biomaterials, we investigated the laccase-catalyzed cross-linking between l-lysine or lysine-containing peptides and dihydroxylated aromatics. l-Lysine is one of the major components of naturally occurring mussel adhesive proteins (MAPs). Dihydroxylated aromatics are structurally related to 3,4-dihydroxyphenyl-l-alanine, another main component of MAPs. Mass spectrometry and nuclear magnetic resonance analyses show that the ε-amino group of l-lysine is able to cross-link dihydroxylated aromatics. Additional oligomer and polymer cross-linked products were obtained from di- and oligopeptides containing l-lysine. Potential applications in medicine or industry for biomaterials synthesised via the three component system consisting of the oligopeptide Tyr-Lys]10, dihydroxylated aromatics and laccase are discussed.
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