首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Asymmetric Catalysis Special Feature Part II: Enantioselective Diels–Alder reactions catalyzed by hydrogen bonding
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Asymmetric Catalysis Special Feature Part II: Enantioselective Diels–Alder reactions catalyzed by hydrogen bonding

机译:不对称催化特征第二部分:氢键催化的对映选择性狄尔斯-阿尔德反应

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摘要

Like molecules of life (e.g., proteins and DNA), many pharmaceutical drugs are also asymmetric (chiral); they are not superimposable on their mirror images. One mirror image form (enantiomer) of a drug can have desirable activity, the other not. Consequently, the development of methods for the selective synthesis of one enantiomer is of great scientific and economic importance. We report here that a simple, commercially available chiral alcohol, α,α,α′,α′-tetraaryl-1,3-dioxolane-4,5-dimethanol (TADDOL), catalyzes the all-carbon Diels–Alder reactions of aminosiloxydienes and substituted acroleins to afford the products in good yields and high enantioselectivities (up to 92% enantiomeric excess). It is remarkable that the reactions are promoted by hydrogen bonding, the ubiquitous “glue” that helps to keep water molecules together and holds up the 3D structures of proteins. Hydrogen bond catalysis is little used in chemical synthesis, wherein most reactions are promoted by complexes of Lewis acidic metal salts coordinated to chiral ligands. As it does for enzymes, hydrogen bonding not only organizes TADDOL into a well defined conformation, but, functioning as a Brønsted acid catalyst, it also activates the dienophile toward reaction with the diene. The gross structure of the TADDOL has been found to have a profound influence on both the rate and the enantioselectivity of the cycloadditions. These structure–function effects are rationalized by evaluating the conformation adopted by the TADDOLs in the crystal state. It is suggested that π,π-stacking plays an central role in the overall catalytic cycle, in particular, the enantioselective step.
机译:就像生命分子(例如蛋白质和DNA)一样,许多药物也是不对称的(手性的)。它们不能在其镜像上重叠。药物的一种镜像形式(对映异构体)可以具有所需的活性,而另一种则没有。因此,开发一种选择性合成一种对映异构体的方法具有重大的科学和经济意义。我们在这里报告,一种简单的市售手性醇,α,α,α',α'-四芳基-1,3-二氧戊环-4,5-二甲醇(TADDOL),催化氨基甲硅烷氧基二烯的全碳Diels-Alder反应和取代的丙烯醛可提供高收率和高对映选择性(高达92%对映体过量)的产物。值得注意的是,反应是通过氢键促进的,氢键是无处不在的“胶水”,可将水分子保持在一起并保持蛋白质的3D结构。氢键催化在化学合成中很少使用,其中大多数反应是由与手性配体配位的路易斯酸性金属盐的络合物促进的。就像对酶一样,氢键不仅将TADDOL组织成定义明确的构象,而且还充当布朗斯台德酸催化剂,还激活了亲二烯体,使其与二烯反应。已经发现TADDOL的总结构对环加成的速率和对映选择性都具有深远的影响。通过评估TADDOL在晶体状态下所采用的构象,可以使这些结构功能效应合理化。建议在整个催化循环中,特别是对映选择性步骤中,π,π堆积起着核心作用。

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