| Literature DB >> 26923572 |
Anna Gliszczyńska1, Witold Gładkowski1, Marta Świtalska2, Joanna Wietrzyk2, Antoni Szumny1, Elżbieta Gębarowska3, Czesław Wawrzeńczyk1.
Abstract
Time-course of biotransformation of racemic trans-4-((E)-4',8'-dimethylnona-3',7'-dien-1-yl)-5-iodomethyl-4-methyldihydrofuran-2-one (1) in fungal and yeast cultures was investigated. In these conditions, the substrate 1 was enantioselectively dehalogenated yielding 4-((E)-4',8'-dimethylnona-3',7'-dien-1-yl)-4-methyl-5-methylenedihydrofuran-2-one (2) and its structure was established based on the spectroscopic data. The most effective biocatalyst used was Didymosphaeria igniaria, which catalyzed the process with highest rate and enantioselectivity (ee of product = 76%). The antiproliferative activity of δ-iodo-γ-lactone 1, product of its biotransformation 2, and starting substrate (farnesol) were evaluated toward two cancer cell lines: A549 (human lung adenocarcinoma) and HL-60 (human promyelocytic leukemia).Entities:
Keywords: Antiproliferative activity; Biotransformation; Dehalogenation; Fungi; Lactones
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Year: 2016 PMID: 26923572 DOI: 10.1002/cbdv.201500127
Source DB: PubMed Journal: Chem Biodivers ISSN: 1612-1872 Impact factor: 2.408