Expression, characterization, and site-specific covalent immobilization of an L-amino acid oxidase from the fungus Hebeloma cylindrosporum.

Bloess S, Beuel T, Krüger T, Sewald N, Dierks T, Fischer von Mollard G (2019)
Applied microbiology and biotechnology.

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Zeitschriftenaufsatz | E-Veröff. vor dem Druck | Englisch
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Applied microbiology and biotechnology
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Bloess S, Beuel T, Krüger T, Sewald N, Dierks T, Fischer von Mollard G. Expression, characterization, and site-specific covalent immobilization of an L-amino acid oxidase from the fungus Hebeloma cylindrosporum. Applied microbiology and biotechnology. 2019.
Bloess, S., Beuel, T., Krüger, T., Sewald, N., Dierks, T., & Fischer von Mollard, G. (2019). Expression, characterization, and site-specific covalent immobilization of an L-amino acid oxidase from the fungus Hebeloma cylindrosporum. Applied microbiology and biotechnology. doi:10.1007/s00253-018-09609-7
Bloess, S., Beuel, T., Krüger, T., Sewald, N., Dierks, T., and Fischer von Mollard, G. (2019). Expression, characterization, and site-specific covalent immobilization of an L-amino acid oxidase from the fungus Hebeloma cylindrosporum. Applied microbiology and biotechnology.
Bloess, S., et al., 2019. Expression, characterization, and site-specific covalent immobilization of an L-amino acid oxidase from the fungus Hebeloma cylindrosporum. Applied microbiology and biotechnology.
S. Bloess, et al., “Expression, characterization, and site-specific covalent immobilization of an L-amino acid oxidase from the fungus Hebeloma cylindrosporum.”, Applied microbiology and biotechnology, 2019.
Bloess, S., Beuel, T., Krüger, T., Sewald, N., Dierks, T., Fischer von Mollard, G.: Expression, characterization, and site-specific covalent immobilization of an L-amino acid oxidase from the fungus Hebeloma cylindrosporum. Applied microbiology and biotechnology. (2019).
Bloess, Svenja, Beuel, Tobias, Krüger, Tobias, Sewald, Norbert, Dierks, Thomas, and Fischer von Mollard, Gabriele. “Expression, characterization, and site-specific covalent immobilization of an L-amino acid oxidase from the fungus Hebeloma cylindrosporum.”. Applied microbiology and biotechnology (2019).

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