Chemical Biology Platform, Broad Institute of MIT and Harvard, 7 Cambridge Center, Cambridge, Massachusetts 02142, United States.
J Am Chem Soc. 2010 Dec 1;132(47):16962-76. doi: 10.1021/ja105119r. Epub 2010 Nov 10.
An aldol-based build/couple/pair (B/C/P) strategy was applied to generate a collection of stereochemically and skeletally diverse small molecules. In the build phase, a series of asymmetric syn- and anti-aldol reactions were performed to produce four stereoisomers of a Boc-protected γ-amino acid. In addition, both stereoisomers of O-PMB-protected alaninol were generated to provide a chiral amine coupling partner. In the couple step, eight stereoisomeric amides were synthesized by coupling the chiral acid and amine building blocks. The amides were subsequently reduced to generate the corresponding secondary amines. In the pair phase, three different reactions were employed to enable intramolecular ring-forming processes: nucleophilic aromatic substitution (S(N)Ar), Huisgen [3+2] cycloaddition, and ring-closing metathesis (RCM). Despite some stereochemical dependencies, the ring-forming reactions were optimized to proceed with good to excellent yields, providing a variety of skeletons ranging in size from 8- to 14-membered rings. Scaffolds resulting from the RCM pairing reaction were diversified on the solid phase to yield a 14 400-membered library of macrolactams. Screening of this library led to the discovery of a novel class of histone deacetylase inhibitors, which display mixed enzyme inhibition, and led to increased levels of acetylation in a primary mouse neuron culture. The development of stereo-structure/activity relationships was made possible by screening all 16 stereoisomers of the macrolactams produced through the aldol-based B/C/P strategy.
基于羟醛缩合的构建/偶联/配对(B/C/P)策略被应用于生成一系列具有立体化学和骨架多样性的小分子。在构建阶段,进行了一系列不对称的顺式和反式羟醛缩合反应,以产生 Boc 保护的γ-氨基酸的四个立体异构体。此外,还生成了 O-PMB 保护的丙氨酸的两种立体异构体,以提供手性胺偶联试剂。在偶联步骤中,通过偶联手性酸和胺构建块合成了八种立体异构酰胺。酰胺随后被还原以生成相应的仲胺。在配对阶段,采用三种不同的反应来实现分子内环化过程:亲核芳香取代(S(N)Ar)、Huisgen [3+2]环加成和闭环复分解(RCM)。尽管存在一些立体化学依赖性,但环化反应被优化以获得良好至优秀的产率,提供了从 8 元到 14 元环的各种骨架。通过 RCM 配对反应得到的支架在固相上多样化,得到了 14400 个大环内酯的文库。对该文库进行筛选,发现了一类新型组蛋白去乙酰化酶抑制剂,其具有混合酶抑制作用,并导致原代小鼠神经元培养物中乙酰化水平升高。通过筛选通过基于羟醛缩合的 B/C/P 策略生成的所有 16 个大环内酯的立体异构体,实现了立体结构/活性关系的发展。