Bowers Albert, West Nathan, Taunton Jack, Schreiber Stuart L, Bradner James E, Williams Robert M
Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523, USA.
J Am Chem Soc. 2008 Aug 20;130(33):11219-22. doi: 10.1021/ja8033763. Epub 2008 Jul 19.
The efficient total synthesis of the recently described natural substance largazole (1) and its active metabolite largazole thiol (2) is described. The synthesis required eight linear steps and proceeded in 37% overall yield. It is demonstrated that largazole is a pro-drug that is activated by removal of the octanoyl residue from the 3-hydroxy-7-mercaptohept-4-enoic acid moiety to generate the active metabolite 2, which is an extraordinarily potent Class I histone deacetylase inhibitor. Synthetic largazole and 2 have been evaluated side-by-side with FK228 and SAHA for inhibition of HDACs 1, 2, 3, and 6. Largazole and largazole thiol were further assayed for cytotoxic activity against a panel of chemoresistant melanoma cell lines, and it was found that largazole is substantially more cytotoxic than largazole thiol; this difference is attributed to differences in the cell permeability of the two substances.
本文描述了最近报道的天然物质拉加唑(1)及其活性代谢产物拉加唑硫醇(2)的高效全合成。该合成需要八个线性步骤,总收率为37%。结果表明,拉加唑是一种前药,通过从3-羟基-7-巯基庚-4-烯酸部分去除辛酰基残基而被激活,生成活性代谢产物2,它是一种极其有效的I类组蛋白去乙酰化酶抑制剂。已将合成的拉加唑和2与FK228和SAHA一起用于抑制HDACs 1、2、3和6的平行评估。进一步检测了拉加唑和拉加唑硫醇对一组耐化疗黑色素瘤细胞系的细胞毒性活性,发现拉加唑的细胞毒性比拉加唑硫醇大得多;这种差异归因于两种物质细胞通透性的不同。