Lewis Chad A, Gustafson Jeffrey L, Chiu Anna, Balsells Jaume, Pollard David, Murry Jerry, Reamer Robert A, Hansen Karl B, Miller Scott J
Department of Chemistry, Yale University, New Haven, Connecticut 06520, USA.
J Am Chem Soc. 2008 Dec 3;130(48):16358-65. doi: 10.1021/ja807120z.
We report a catalytic approach to the synthesis of a key intermediate on the synthetic route to a pharmaceutical drug candidate in single enantiomer form. In particular, we illustrate the discovery process employed to arrive at a powerful, peptide-based asymmetric acylation catalyst. The substrate this catalyst modifies represents a remarkable case of desymmetrization, wherein the enantiotopic groups are separated by nearly a full nanometer, and the distance between the reactive site and the pro-stereogenic element is nearly 6 A. Differentiation of enantiotopic sites within molecules that are removed from the prochiral centers by long distances presents special challenges to the field of asymmetric catalysis. As the distance between enantiotopic sites increases within a substrate, so too may the requirements for size and complexity of the catalyst. The approach presented herein contrasts enzymatic catalysts and small-molecule catalysts for this challenge. Ultimately, we report here a synthetic, miniaturized enzyme mimic that catalyzes a desymmetrization reaction over a substantial distance. In addition, studies relevant to mechanism are presented, including (a) the delineation of structure-selectivity relationships through the use of substrate analogs, (b) NMR experiments documenting catalyst-substrate interactions, and (c) the use of isotopically labeled substrates to illustrate unequivocally an asymmetric catalyst-substrate binding event.
我们报道了一种催化方法,用于合成一种药物候选物合成路线上关键中间体的单一对映体形式。具体而言,我们阐述了获得一种强大的基于肽的不对称酰化催化剂所采用的发现过程。该催化剂修饰的底物代表了一种显著的去对称化情况,其中对映异位基团相隔近一纳米,反应位点与前手性元素之间的距离近6埃。分子内距离前手性中心较远的对映异位位点的区分,给不对称催化领域带来了特殊挑战。随着底物内对映异位位点之间距离的增加,对催化剂大小和复杂性的要求也可能增加。本文介绍的方法对比了针对这一挑战的酶催化剂和小分子催化剂。最终,我们在此报道了一种合成的小型化酶模拟物,它能在相当远的距离上催化去对称化反应。此外,还介绍了与机理相关的研究,包括:(a) 通过使用底物类似物来描绘结构 - 选择性关系;(b) 记录催化剂 - 底物相互作用的核磁共振实验;(c) 使用同位素标记的底物明确说明不对称催化剂 - 底物结合事件。