Enzymatic Fluoromethylation Enabled by the S‑Adenosylmethionine Analog Te-Adenosyl‑L‑(fluoromethyl)homotellurocysteine

Fluoromethyl, difluoromethyl, and trifluoromethyl groups are present in numerous pharmaceuticals and agrochemicals, where they play critical roles in the efficacy and metabolic stability of these molecules. Strategies for late-stage incorporation of fluorine-containing atoms in molecules have become...

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Veröffentlicht in:ACS central science 2023-05, Vol.9 (5), p.905-914
Hauptverfasser: Neti, Syam Sundar, Wang, Bo, Iwig, David F., Onderko, Elizabeth L., Booker, Squire J.
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Sprache:eng
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Zusammenfassung:Fluoromethyl, difluoromethyl, and trifluoromethyl groups are present in numerous pharmaceuticals and agrochemicals, where they play critical roles in the efficacy and metabolic stability of these molecules. Strategies for late-stage incorporation of fluorine-containing atoms in molecules have become an important area of organic and medicinal chemistry as well as synthetic biology. Herein, we describe the synthesis and use of Te-adenosyl-L-(fluoromethyl)­homotellurocysteine (FMeTeSAM), a novel and biologically relevant fluoromethylating agent. FMeTeSAM is structurally and chemically related to the universal cellular methyl donor S-adenosyl-L-methionine (SAM) and supports the robust transfer of fluoromethyl groups to oxygen, nitrogen, sulfur, and some carbon nucleophiles. FMeTeSAM is also used to fluoromethylate precursors to oxaline and daunorubicin, two complex natural products that exhibit antitumor properties.
ISSN:2374-7943
2374-7951
DOI:10.1021/acscentsci.2c01385