Sawayama Andrew M, Tanaka Hiroko, Wandless Thomas J
Department of Chemistry, Stanford University, Stanford, CA 94305, USA.
J Org Chem. 2004 Dec 10;69(25):8810-20. doi: 10.1021/jo048854f.
As part of investigations into cell cycle checkpoint inhibitors, an asymmetric synthesis of the antimitotic natural product, ustiloxin D, has been completed. A salen-Al-catalyzed aldol reaction was employed to construct a chiral oxazoline 9 (99% yield, 98% ee) that served the dual purpose of installing the necessary 1,2-amino alcohol functionality as well as providing an efficient synthon for the requisite methylamino group at C9. The chiral aryl-alkyl ether was assembled using a Pd-catalyzed asymmetric allylic alkylation that notably delivered a product with stereochemistry opposite to that predicted by precedent. The linear tetrapeptide was subsequently cyclized to produce ustiloxin D. The mechanistic origin of the allylic alkylation selectivity was further investigated, and a working hypothesis for the origin of the observed stereoselectivity has been proposed.
作为细胞周期检查点抑制剂研究的一部分,抗有丝分裂天然产物乌司他丁D的不对称合成已完成。采用salen-Al催化的羟醛反应构建了手性恶唑啉9(产率99%,对映体过量98%),该恶唑啉兼具安装必要的1,2-氨基醇官能团以及为C9处所需甲基氨基提供有效合成子的双重目的。手性芳基-烷基醚通过钯催化的不对称烯丙基烷基化反应组装而成,该反应得到的产物立体化学与先例预测的相反。随后将线性四肽环化以生成乌司他丁D。进一步研究了烯丙基烷基化选择性的机理起源,并提出了观察到的立体选择性起源的工作假设。