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非对映异构体(H/H)-对映异构体在溶解度上的定量差异。

Quantitative Difference in Solubility of Diastereomeric (H/H)-Isotopomers.

机构信息

Department of Applied Chemistry, Tokyo University of Science, Kagurazaka, Shinjuku-ku, Tokyo 162-8601, Japan.

Department of Materials Science and Engineering, University of Fukui, Bunkyo, Fukui 910-8507, Japan.

出版信息

J Am Chem Soc. 2021 Nov 24;143(46):19525-19531. doi: 10.1021/jacs.1c09253. Epub 2021 Nov 5.

Abstract

Many achiral organic compounds become chiral by an isotopic substitution of one of the enantiotopic moieties in their structures. Although spectroscopic methods can recognize the molecular chirality due to an isotopic substitution, the effects of isotopically chiral compounds in enantioselective reactions have remained unsolved because the small chirality arises only from the difference between the number of neutrons in the atomic nuclei. The difference between the diastereomeric isotopomers of reactive sources should be the key to these effects. However, the energy difference between them is difficult to calculate, even using present computational methods, and differences in physical properties have not yet been reported. Here, we demonstrate that the small energy difference between the diastereomeric isotopomers at the molecular level can be enhanced to appear as a solubility difference between the diastereomeric (H/H) isotopomers of α-aminonitriles, synthesized from an isotopically chiral amine, achiral aldehyde, and HCN. This small, but measurable, difference induces the chiral (d/l) imbalance in the suspended α-aminonitrile; therefore, a second enhancement in the solid-state chirality proceeds to afford a highly stereoimproved aminonitrile (>99% selectivity) whose handedness arises completely from the excess enantiomer of isotopically chiral amine, even in a low enantiomeric excess and low deuterium-labeling ratio. Because α-aminonitriles can be hydrolyzed to chiral α-amino acids with the removal of an isotope-labeling moiety, the current sequence of reactions represents a highly enantioselective Strecker amino acid synthesis induced by the chiral hydrogen (H/H) isotopomer. Thus, hydrogen isotopic chirality links directly with the homochirality of α-amino acids via a double enhancement of α-aminonitrile, the chiral intermediate of a proposed prebiotic mechanism.

摘要

许多手性有机化合物通过其结构中对映异构部分之一的同位素取代而变得手性。虽然光谱方法可以识别由于同位素取代而产生的分子手性,但同位素手性化合物在对映选择性反应中的影响仍然没有解决,因为这种小的手性仅来自于原子核中中子数量的差异。反应性来源的对映异构体之间的差异应该是这些影响的关键。然而,即使使用目前的计算方法,它们之间的能量差异也很难计算,并且尚未报道物理性质的差异。在这里,我们证明了分子水平上对映异构体之间的小能量差异可以增强为合成的α-氨基腈的对映异构体(H/H)同位素之间的溶解度差异,α-氨基腈由同位素手性胺、无手性醛和 HCN 合成。这种小但可测量的差异会导致悬浮的α-氨基腈中(d/l)的手性不平衡;因此,在固态手性中会进行第二次增强,从而提供高度立体改进的氨基腈(>99%选择性),其手性完全来自同位素手性胺的过量对映异构体,即使在低对映体过量和低氘标记比下也是如此。由于α-氨基腈可以通过去除同位素标记部分水解为手性α-氨基酸,因此当前的反应序列代表了通过手性氢(H/H)同位素对映异构体诱导的高度对映选择性 Strecker 氨基酸合成。因此,氢同位素手性通过对映异构体的α-氨基腈的双重增强,与α-氨基酸的同手性直接相关,这是拟议的前生物机制的手性中间体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b72/8630799/40caa96bdd7e/ja1c09253_0001.jpg

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