An efficient synthetic process for chiral tetraamine base (R,R)-5
is reported that leverages mechanistic understanding to enable
control over key transformations. Specifically, a configurationally stable and observable aziridinium ion intermediate was
found to undergo counterion exchange impacting the feasibility
of the process. Mechanistic investigations revealed that both
counterion exchange and trapping of the aziridinium ion were
biphasic events and that the former could be suppressed at
lower temperatures, facilitating the reaction on both small and
large scales. The mechanistic insights gained have led to the
development of an efficient one-pot process that enables
preparation of multiple kilograms of (R,R)-5 as a crystalline
solid without chromatography in excellent chemical and chiral
purity.
[reaction: see text] A new synthesis of enantiopure 3,3-disubstituted oxindoles by stereoselective Mukaiyama aldol reaction of 3-substituted 2-siloxyindoles and chiral, enantiopure aldehydes having nitrogen or oxygen substituents at the alpha carbon is described. When the C3 substituent of the prochiral nucleophile is aryl or heteroaryl, stereoselectivity is high (10-80:1).
A formal total synthesis of the sesterterpenoid (+/-)-dysidiolide (1), a structurally novel sponge metabolite that inhibits the cdc25A protein phosphatase, and approaches to the syntheses of (+/-)-15-epi- (34), (+/-)-6-epi- (36), and (+/-)-6, 15-bisepidysidiolide (39) are described.
A simple, scalable, and efficient one-pot methodology for the synthesis of 4,4-disubstituted cyclohexane beta-keto esters from benzylic nitriles or esters and methyl acrylate promoted by potassium tert-butoxide is described. The process relies on a tandem double Michael addition-Dieckmann condensation reaction, which results in the formation of three discrete carbon-carbon bonds in a single pot, including a quaternary center. The method allows for the convenient and rapid synthesis of a variety of 4-aryl-4-cyano-2-carbomethoxycyclohexanone and 4-aryl-2,4-biscarbomethoxycyclohexanone building blocks for use in natural products synthesis and medicinal chemistry.
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