Bioinspired Total Synthesis and Human Proteasome Inhibitory Activity of (−)-Salinosporamide A, (−)-Homosalinosporamide A, and Derivatives Obtained via Organonucleophile Promoted Bis-cyclizations
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https://figshare.com/articles/dataset/Bioinspired_Total_Synthesis_and_Human_Proteasome_Inhibitory_Activity_of_Salinosporamide_A_Homosalinosporamide_A_and_Derivatives_Obtained_via_Organonucleophile_Promoted_Bis_cyclizations/2699869
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A full account of concise, enantioselective syntheses of the anticancer agent (−)-salinosporamide A and derivatives, including (−)-homosalinosporamide, that was inspired by biosynthetic considerations is described. The brevity of the synthetic strategy stems from a key bis-cyclization of a β-keto tertiary amide, which retains optical purity enabled by A1,3-strain rendering slow epimerization relative to the rate of bis-cyclization. Optimization studies of the key bis-cyclization, enabled through byproduct isolation and characterization, are described that ultimately allowed for a gram scale synthesis of a versatile bicyclic core structure with a high degree of stereoretention. An optimized procedure for zincate generation by the method of Knochel, generally useful for the synthesis of salino A derivatives, led to dramatic improvements in side-chain attachment and a novel diastereomer of salino A. The versatility of the described strategy is demonstrated by the synthesis of designed derivatives including (−)-homosalinosporamide A. Inhibition of the human 20S and 26S proteasome by these derivatives using an enzymatic assay are also reported. The described total synthesis of salino A raises interesting questions regarding how biosynthetic enzymes leading to the salinosporamides proceeding via optically active β-keto secondary amides, are able to maintain the stereochemical integrity at the labile C2 stereocenter or if a dynamic kinetic resolution is operative.
创建时间:
2016-02-24



