Corr M J, Sharma S V, Pubill-Ulldemolins C, Bown R T, Poirot P, Smith D R M, Cartmell C, Abou Fayad A, Goss R J M
Department of Chemistry & BSRC , University of St Andrews , St Andrews , KY16 9ST , UK . Email:
Ecole Nationale Supérieure de Chimie de Lille , France.
Chem Sci. 2017 Mar 1;8(3):2039-2046. doi: 10.1039/c6sc04423a. Epub 2016 Nov 11.
The blending together of synthetic chemistry with natural product biosynthesis represents a potentially powerful approach to synthesis; to enable this, further synthetic tools and methodologies are needed. To this end, we have explored the first Sonogashira cross-coupling to halotryptophans in water. Broad reaction scope is demonstrated and we have explored the limits of the scope of the reaction. We have demonstrated this methodology to work excellently in the modification of model tripeptides. Furthermore, through precursor directed biosynthesis, we have generated for the first time a new to nature brominated natural product bromo-cystargamide, and demonstrated the applicability of our reaction conditions to modify this novel metabolite.
将合成化学与天然产物生物合成相结合是一种极具潜力的合成方法;要实现这一点,还需要更多的合成工具和方法。为此,我们探索了在水中进行的首例卤代色氨酸的Sonogashira交叉偶联反应。该反应展现出广泛的反应范围,我们还探究了反应范围的极限。我们已证明此方法在修饰模型三肽方面表现出色。此外,通过前体导向生物合成,我们首次合成了一种自然界中全新的溴化天然产物溴代胱星酰胺,并证明了我们的反应条件对修饰这种新型代谢产物的适用性。