College of Chemistry, Henan Key Laboratory of Chemical Biology and Organic Chemistry, Green Catalysis Center, Zhengzhou University, Zhengzhou 450001, People's Republic of China.
J Org Chem. 2020 Aug 7;85(15):9525-9537. doi: 10.1021/acs.joc.0c00336. Epub 2020 Jul 16.
Bis(3-indolyl)methanes are well-known natural products with a broad range of important biological functions including cancer cell growth inhibition and antimicrobial activity. Incorporation of a trifluoromethyl group is known to have a profound effect on the parent compound's biological activities. Here, an efficient method for the synthesis of chiral trifluoromethylated bis(3-indolyl)methanes via a catalytic asymmetric Friedel-Crafts (F-C) alkylation reaction has been established. Both enantiomers of the catalysis products can be obtained by tuning the chiral substituents of the catalyst. With 5 mol % of the Ni(II)/(imidazoline-oxazoline) complex as the catalyst, the F-C reaction of indoles with β-CF-β-(3-indolyl)nitroalkenes proceeded well to afford a series of chiral bis(3-indolyl)methanes bearing a trifluoromethylated all-carbon quaternary stereocenter in generally good yields with excellent enantioselectivities (up to 98% yield and 94% ee). Furthermore, by interchanging the indole moieties of the two reactants, indole vs β-CF-β-(3-indolyl)nitroalkene in the F-C reaction, both enantiomers of a given trifluoromethylated bis(3-indolyl)methane were obtained with high enantioselectivities (89-94% ee) upon removal of the indole -protecting group in the F-C products. The current work represents the first general catalytic enantioselective approach to the important class of trifluoromethylated bis(3-indolyl)methanes.
双(3-吲哚基)甲烷是一类具有广泛重要生物学功能的天然产物,包括抑制癌细胞生长和抗菌活性。在母体化合物中引入三氟甲基被认为会对其生物学活性产生深远影响。在此,我们建立了一种通过催化不对称傅克烷基化反应合成手性三氟甲基化双(3-吲哚基)甲烷的有效方法。通过调节催化剂的手性取代基,可以获得催化产物的两种对映异构体。以 5 mol%的 Ni(II)/(咪唑啉-噁唑啉)络合物作为催化剂,吲哚与β-CF-β-(3-吲哚基)硝基烯的傅克反应可以很好地进行,以较高的收率(高达 98%)和优异的对映选择性(高达 94%ee)得到一系列手性三氟甲基化全碳季碳中心的双(3-吲哚基)甲烷。此外,通过交换反应物中吲哚部分的位置,即傅克反应中吲哚与β-CF-β-(3-吲哚基)硝基烯的位置,在傅克产物中脱保护后,均可以获得给定的三氟甲基化双(3-吲哚基)甲烷的两种对映异构体,对映选择性很高(89-94%ee)。本工作代表了首例通用的催化对映选择性方法合成重要的三氟甲基化双(3-吲哚基)甲烷类化合物。