Artola Marta, Wouters Shirley, Schröder Sybrin P, de Boer Casper, Chen Yurong, Petracca Rita, van den Nieuwendijk Adrianus M C H, Aerts Johannes M F G, van der Marel Gijsbert A, Codée Jeroen D C, Overkleeft Herman S
Department of Bio-organic Synthesis Leiden Institute of Chemistry Leiden University Einsteinweg 55 2333 CC Leiden The Netherlands.
Department of Medical Biochemistry Leiden Institute of Chemistry Leiden University Einsteinweg 55 2333 CC Leiden The Netherlands.
European J Org Chem. 2019 Feb 14;2019(6):1397-1404. doi: 10.1002/ejoc.201801703. Epub 2019 Jan 11.
Cyclophellitol aziridine and its configurational and functional isomers are powerful covalent inhibitors of retaining glycosidases, and find application in fundamental studies on glycosidases, amongst others in relation to inherited lysosomal storage disorders caused by glycosidase malfunctioning. Few direct and stereoselective aziridination methodologies are known for the synthesis of cyclophellitol aziridines. Herein, we present our studies on the scope of direct 3-amino-2-(trifluoromethyl)quinazolin-4(3)-one-mediated aziridination on a variety of configurational and functional cyclohexenol isosters. We demonstrate that the aziridination can be directed by an allylic or homoallylic hydroxyl through H-bonding and that steric hindrance plays a key role in the diastereoselectivity of the reaction.
环吡醇氮丙啶及其构型和官能团异构体是保留型糖苷酶的强效共价抑制剂,可应用于糖苷酶的基础研究,尤其是与糖苷酶功能异常引起的遗传性溶酶体贮积症相关的研究。用于合成环吡醇氮丙啶的直接且立体选择性的氮丙啶化方法很少见。在此,我们展示了关于直接3-氨基-2-(三氟甲基)喹唑啉-4(3)-酮介导的氮丙啶化反应在多种构型和官能团环己烯醇电子等排体上的适用范围的研究。我们证明,氮丙啶化反应可通过氢键由烯丙基或高烯丙基羟基导向,并且空间位阻在反应的非对映选择性中起关键作用。