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Bioorg Med Chem ; 23(15): 4324-4332, 2015 Aug 01.
Article in English | MEDLINE | ID: mdl-26142319

ABSTRACT

Unspecific peroxygenases (UPOs, EC 1.11.2.1) have proved to be stable oxygen-transferring biocatalysts for H2O2-dependent transformation of pharmaceuticals. We have applied UPOs in a drug development program and consider the enzymatic approach in parallel to a conventional chemical synthesis of the human metabolites of the bile acid reabsorption inhibitor SAR548304. Chemical preparation of N,N-di-desmethyl metabolite was realized by a seven-step synthesis starting from a late precursor of SAR548304 and included among others palladium catalysis and laborious chromatographic purification with an overall yield of 27%. The enzymatic approach revealed that the UPO of Marasmius rotula is particularly suitable for selective N-dealkylation of the drug and enabled us to prepare both human metabolites via one-pot conversion with an overall yield of 66% N,N-di-desmethyl metabolite and 49% of N-mono-desmethylated compound in two separated kinetic-controlled reactions.


Subject(s)
Glucosamine/analogs & derivatives , Heterocyclic Compounds/chemistry , Marasmius/enzymology , Mixed Function Oxygenases/metabolism , Phenylurea Compounds/chemical synthesis , Catalysis , Glucosamine/chemical synthesis , Glucosamine/chemistry , Glucosamine/metabolism , Heterocyclic Compounds/chemical synthesis , Humans , Hydrogen Peroxide/chemistry , Palladium/chemistry , Phenylurea Compounds/chemistry , Phenylurea Compounds/metabolism
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