Cheung Chi-Ming, Goldberg Frederick W, Magnus Philip, Russell Claire J, Turnbull Rachel, Lynch Vince
Department of Chemistry and Biochemistry, University of Texas at Austin, 1 University Station A5300, Austin, Texas 78712-1167, USA.
J Am Chem Soc. 2007 Oct 10;129(40):12320-7. doi: 10.1021/ja0744448. Epub 2007 Sep 19.
During the course of studies on the synthesis of diazonamide A 1, an unusual O-aryl into C-aryl rearrangement was discovered that allows partial control of the absolute stereochemistry of the C-10 quaternary stereogenic center. Treatment of 30 with TBAF/THF gave the O-tyrosine ethers 31 and 32 (1:1), which on heating each separately in chloroform at reflux rearranged to 33 and 34 in ratios of 84:16 and 56:44, respectively. This corresponds to a 70% yield of the correct C-10 stereoisomer 33 and a 30% yield of the wrong C-10 stereoisomer 34. Attempts to convert 34 into 33 by ipso-protonation and equilibration were unsuccessful. Confirmation of the stereochemical outcome of the rearrangement was obtained by converting 33 into 37, an advanced intermediate in the first synthesis of diazonamide A by Nicolaou et al. It was also found that the success of the above rearrangement is sensitive to the protecting group on both the tryptophan nitrogen atom and the tyrosine nitrogen atom.
在对重氮酰胺A 1的合成研究过程中,发现了一种不寻常的从O -芳基到C -芳基的重排反应,该反应能够部分控制C - 10季碳立体中心的绝对立体化学。用四丁基氟化铵/四氢呋喃处理30得到O -酪氨酸醚31和32(1:1),将它们分别在氯仿中加热回流时,分别以84:16和56:44的比例重排为33和34。这相当于正确的C - 10立体异构体33的产率为70%,错误的C - 10立体异构体34的产率为30%。通过原位质子化和平衡将34转化为33的尝试未成功。通过将33转化为37(Nicolaou等人首次合成重氮酰胺A中的一个高级中间体),证实了重排反应的立体化学结果。还发现上述重排反应的成功对色氨酸氮原子和酪氨酸氮原子上的保护基敏感。