Xu Chen, Han Arthur, Virgil Scott C, Reisman Sarah E
The Warren and Katharine Schlinger Laboratory for Chemistry and Chemical Engineering, Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, United States.
ACS Cent Sci. 2017 Apr 26;3(4):278-282. doi: 10.1021/acscentsci.6b00361. Epub 2017 Mar 9.
(+)-Ryanodine is a natural product modulator of ryanodine receptors, important intracellular calcium ion channels that play a critical role in signal transduction leading to muscle movement and synaptic transmission. Chemical derivatization of (+)-ryanodine has demonstrated that certain peripheral structural modifications can alter its pharmacology, and that the pyrrole-2-carboxylate ester is critical for high affinity binding to ryanodine receptors. However, the structural variation of available ryanodine analogues has been limited by the challenge of site-specific functionalization of semisynthetic intermediates, such as (+)-ryanodol. Here we report a synthetic strategy that provides access to (+)-ryanodine and the related natural product (+)-20-deoxyspiganthine in 18 and 19 steps, respectively. A key feature of this strategy is the reductive cyclization of an epoxide intermediate that possesses the critical pyrrole-2-carboxylate ester. This approach allows for the direct introduction of this ester in the final stage of the synthesis and provides a framework for the synthesis of previously inaccessible synthetic ryanoids.
(+)-ryanodine是ryanodine受体的天然产物调节剂,ryanodine受体是重要的细胞内钙离子通道,在导致肌肉运动和突触传递的信号转导中起关键作用。(+)-ryanodine的化学衍生化表明,某些外围结构修饰可改变其药理学性质,并且吡咯-2-羧酸酯对于与ryanodine受体的高亲和力结合至关重要。然而,可用的ryanodine类似物的结构变化受到半合成中间体(如(+)-ryanodol)位点特异性官能化挑战的限制。在此,我们报告了一种合成策略,该策略分别通过18步和19步合成可获得(+)-ryanodine和相关天然产物(+)-20-脱氧spiganthine。该策略的一个关键特征是具有关键吡咯-2-羧酸酯的环氧化物中间体的还原环化。这种方法允许在合成的最后阶段直接引入该酯,并为合成以前无法获得的合成ryanoids提供了一个框架。