Organ Michael G, Bilokin Yaroslav V, Bratovanov Svetoslav
Department of Chemistry, York University, 4700 Keele Street, Toronto, Ontario, Canada M3J 1P3.
J Org Chem. 2002 Jul 26;67(15):5176-83. doi: 10.1021/jo0201777.
The synthesis of the C18-C31 subunit of orevactaene (1) in an enantioselective and convergent manner is reported. Four chiral centers in the structure (i.e., carbons 23, 25, 32, and 33) have unknown configuration; thus, a modular approach has been devised to link the two stereocenter-containing ends of the structure together via a trisubstituted olefin template to ultimately produce all possible diastereomers of the target. Keys to the success of this approach include (i) an efficient synthesis of four diastereomeric hydrophobic tails (C22-C29) of the molecule with two stereogenic centers at C23 and C25; (ii) the synthesis of three stereodefined trisubstituted olefins 37, 38, and 43 using palladium(0)-catalyzed hydrometalation and metallometalation; and (iii) the convergent assembly of the aforementioned sections by a 'one-pot' lithium/halogen exchange, boron/lithium exchange, borate ester saponification, and Suzuki cross-coupling followed by oxidative deprotection. The sequence provided the desired aldehydes 49 and 50 as single isomers in good yields. Compiled spectroscopic data from the literature and present work provides evidence that the relative configuration of the methyl groups in the side chain of orevactaene may be 1,3-syn, which will be confirmed when the total synthesis has been completed. These results have paved the way for a parallel synthesis approach to prepare all 16 possible stereoisomers of orevactaene so that the relative and absolute stereochemistry of this compound can be determined.
报道了以对映选择性和汇聚式方式合成orevactaene(1)的C18 - C31亚基。该结构中的四个手性中心(即碳23、25、32和33)构型未知;因此,设计了一种模块化方法,通过三取代烯烃模板将结构中两个含立体中心的末端连接在一起,最终生成目标物的所有可能非对映异构体。该方法成功的关键包括:(i)高效合成分子的四个非对映体疏水尾(C22 - C29),在C23和C25处有两个立体ogenic中心;(ii)使用钯(0)催化的氢金属化和金属金属化反应合成三种立体定义的三取代烯烃37、38和43;(iii)通过“一锅法”锂/卤素交换、硼/锂交换、硼酸酯皂化和铃木交叉偶联,随后进行氧化脱保护,将上述部分汇聚组装。该序列以良好产率提供了所需的醛49和50作为单一异构体。来自文献和当前工作汇编的光谱数据提供了证据,表明orevactaene侧链中甲基的相对构型可能是1,3 - 顺式,当全合成完成时将得到证实。这些结果为平行合成方法制备orevactaene的所有16种可能立体异构体铺平了道路,从而可以确定该化合物的相对和绝对立体化学。