Brant Michael G, Friedmann Jordan N, Bohlken Connor G, Oliver Allen G, Wulff Jeremy E
Department of Chemistry, University of Victoria, Victoria, BC, CanadaV8W 3V6.
Org Biomol Chem. 2015 Apr 21;13(15):4581-8. doi: 10.1039/c5ob00387c.
The base-promoted reaction of 3-sulfolene with bis-vinyl ketones was shown in earlier work to proceed through a γ-1,2 addition/anionic oxy-Cope cascade; a subsequent treatment with base induced a second γ-1,2 addition to provide a [3.3.0] bicyclic framework that our group then exploited in the design of rigidified enzyme inhibitors for influenza neuraminidase. Out of a desire to expand the range of structural archetypes accessible through these couplings (and hopefully access additional conformationally-constrained inhibitor platforms) we have revisited this methodology, this time using substituted starting reagents. We show that judicious choice of the newly added substituent can control the exclusive formation of one of four new structural types, each formed as a single diastereomer. These include bicyclo[3.2.1] sulfones and spiro[5.4] sulfones, as well as an expanded collection of our original bicyclo[3.3.0] sulfone scaffolds, this time incorporating adjacent quaternary centres or additional rings.
在早期的研究中发现,3-硫杂环戊烯与双乙烯基酮在碱促进下的反应通过γ-1,2加成/阴离子氧杂-Cope串联反应进行;随后用碱处理引发第二次γ-1,2加成,以提供一个[3.3.0]双环骨架,我们小组随后利用该骨架设计了用于流感神经氨酸酶的刚性化酶抑制剂。出于扩大通过这些偶联反应可获得的结构原型范围(并有望获得更多构象受限的抑制剂平台)的愿望,我们重新审视了这种方法,这次使用了取代的起始试剂。我们表明,明智地选择新添加的取代基可以控制四种新结构类型之一的唯一形成,每种结构类型均以单一非对映异构体形式形成。这些包括双环[3.2.1]砜和螺[5.4]砜,以及我们原来的双环[3.3.0]砜支架的扩展集合,这次包含相邻的季碳中心或额外的环。