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疏水穴状配体中烷烃的螺旋构象。

Helical conformation of alkanes in a hydrophobic cavitand.

作者信息

Trembleau Laurent, Rebek Julius

机构信息

Skaggs Institute for Chemical Biology and Department of Chemistry, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA.

出版信息

Science. 2003 Aug 29;301(5637):1219-20. doi: 10.1126/science.1086644.

Abstract

Alkanes adopt extended conformations in solution that minimize steric interactions and maximize surface area. Folding can reduce the amount of hydrophobic surface exposed to solvent, but sterically unfavorable gauche interactions result. However, we found that the alkyl chains of two common surfactants in aqueous solution adopt helical conformations when bound within a synthetic receptor. The receptor recognizes the helical alkane better than the extended conformation, even though 2 to 3 kilocalories per mole of strain is introduced. The proper filling of space and burial of hydrophobic surface drive the molecular recognition between the receptor and the coiled alkane.

摘要

烷烃在溶液中采取伸展构象,这种构象能使空间位阻相互作用最小化并使表面积最大化。折叠会减少暴露于溶剂的疏水表面面积,但会产生空间位阻不利的gauche相互作用。然而,我们发现水溶液中两种常见表面活性剂的烷基链在结合于合成受体内部时会采取螺旋构象。尽管每摩尔引入了2至3千卡的应变,但该受体对螺旋烷烃的识别优于伸展构象。空间的适当填充和疏水表面的埋藏驱动了受体与盘绕烷烃之间的分子识别。

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