Proteomics

Dataset Information

0

Proteome analysis of B. bassiana


ABSTRACT: The enzymes involved (P450s) remain mostly hidden when using microbial cell factories. In this respect, we aimed to identify P450s, which are responsible for the oxyfunctionalization of DCF (1) and (R)-2-phenoxypropionic acid (POPS) in B. bassiana using omics studies.

INSTRUMENT(S): LTQ Orbitrap Elite

ORGANISM(S): Beauveria Bassiana (strain Arsef 2860) (white Muscardine Disease Fungus) (tritirachium Shiotae)

SUBMITTER: Jan Klenk  

LAB HEAD: Bernhard Hauer

PROVIDER: PXD009664 | Pride | 2019-06-12

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
BB_Dic (F018288).mzid_BB_Dic_(F018288).pride.mgf.gz Mzid
BB_Dic (F018288).pride.mztab.gz Mztab
BB_DicF018288.mzid.gz Mzid
BB_DicF018288.mzid_BB_Dic_F018288.MGF Mzid
BB_Dic_(F018288).pride.mgf.gz Mgf
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Publications

Oxyfunctionalization of nonsteroidal anti-inflammatory drugs by filamentous-fungi.

Klenk J M JM   Kontny L H LH   Escobedo-Hinojosa W W   Nebel B A BA   Hauer B B  

Journal of applied microbiology 20190703 3


<h4>Aims</h4>We aimed to expand the microbial biocatalyst platform to generate essential oxyfunctionalized standards for pharmaceutical, toxicological and environmental research. In particular, we examined the production of oxyfunctionalized nonsteroidal anti-inflammatory drugs (NSAIDs) by filamentous-fungi.<h4>Methods and results</h4>Four NSAIDs; diclofenac, ibuprofen, naproxen and mefenamic acid were used as substrates for oxyfunctionalization in a biocatalytic process involving three filament  ...[more]

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