Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, Box 422, New York, NY 10065, USA.
Proc Natl Acad Sci U S A. 2011 Apr 26;108(17):6745-50. doi: 10.1073/pnas.1015268108. Epub 2011 Mar 30.
Alkaloid and terpenoid natural products display an extensive array of chemical frameworks and biological activities. However such scaffolds remain underrepresented in current screening collections and are, thus, attractive targets for the synthesis of natural product-based libraries that access underexploited regions of chemical space. Recently, we reported a systematic approach to the stereoselective synthesis of multiple alkaloid/terpenoid-like scaffolds using transition metal-mediated cycloaddition and cyclization reactions of enyne and diyne substrates assembled on a tert-butylsulfinamide lynchpin. We report herein the synthesis of a 190-membered library of alkaloid/terpenoid-like molecules using this synthetic approach. Translation to solid-phase synthesis was facilitated by the use of a tert-butyldiarylsilyl (TBDAS) linker that closely mimics the tert-butyldiphenysilyl protecting group used in the original solution-phase route development work. Unexpected differences in stereoselectivity and regioselectivity were observed in some reactions when carried out on solid support. Further, the sulfinamide moiety could be hydrolyzed or oxidized efficiently without compromising the TBDAS linker to provide additional amine and sulfonamide functionalities. Principal component analysis of the structural and physicochemical properties of these molecules confirmed that they access regions of chemical space that overlap with bona fide natural products and are distinct from areas addressed by conventional synthetic drugs and drug-like molecules. The influences of scaffolds and substituents were also evaluated, with both found to have significant impacts on location in chemical space and three-dimensional shape. Broad biological evaluation of this library will provide valuable insights into the abilities of natural product-based libraries to access similarly underexploited regions of biological space.
生物碱和萜类天然产物展示出广泛的化学结构框架和生物活性。然而,这些支架在当前的筛选库中仍然代表性不足,因此是合成基于天然产物的文库的有吸引力的目标,这些文库可以访问化学空间中未充分利用的区域。最近,我们报道了一种使用过渡金属介导的环加成和烯炔和二炔底物的环化反应,对基于叔丁基亚磺酰胺连接子的多个生物碱/萜烯样支架进行立体选择性合成的系统方法。我们在此报告了使用这种合成方法合成的 190 个成员的生物碱/萜烯样分子文库。通过使用叔丁基二芳基硅基(TBDAS)接头,可将翻译转化为固相合成,该接头紧密模拟了在原始溶液相路线开发工作中使用的叔丁基二苯基硅基保护基。在固相中进行某些反应时,观察到立体选择性和区域选择性的意外差异。此外,亚磺酰胺部分可以有效地水解或氧化,而不会破坏 TBDAS 接头,从而提供额外的胺和磺酰胺官能团。这些分子的结构和物理化学性质的主成分分析证实,它们可以访问与真正的天然产物重叠的化学空间区域,并且与常规合成药物和类药物分子所涉及的区域不同。还评估了支架和取代基的影响,发现它们都对化学空间中的位置和三维形状有重大影响。对该文库进行广泛的生物学评估将为基于天然产物的文库访问同样未充分利用的生物学空间区域的能力提供有价值的见解。