Schneider Hans-Jörg
Universität des Saarlandes, FR Organische Chemie, D 66041 Saarbrücken, Germany.
Int J Mol Sci. 2015 Mar 25;16(4):6694-717. doi: 10.3390/ijms16046694.
The lock-and-key concept is discussed with respect to necessary extensions. Formation of supramolecular complexes depends not only, and often not even primarily on an optimal geometric fit between host and guest. Induced fit and allosteric interactions have long been known as important modifications. Different binding mechanisms, the medium used and pH effects can exert a major influence on the affinity. Stereoelectronic effects due to lone pair orientation can lead to variation of binding constants by orders of magnitude. Hydrophobic interactions due to high-energy water inside cavities modify the mechanical lock-and-key picture. That optimal affinities are observed if the cavity is only partially filled by the ligand can be in conflict with the lock-and-key principle. In crystals other forces than those between host and guest often dominate, leading to differences between solid state and solution structures. This is exemplified in particular with calixarene complexes, which by X-ray analysis more often than other hosts show guest molecules outside their cavity. In view of this the particular problems with the identification of weak interactions in crystals is discussed.
我们讨论了锁钥概念的必要扩展。超分子复合物的形成不仅(而且通常甚至不主要)取决于主体与客体之间的最佳几何匹配。诱导契合和变构相互作用长期以来一直被认为是重要的修正。不同的结合机制、使用的介质和pH效应会对亲和力产生重大影响。孤对电子取向引起的立体电子效应可导致结合常数变化几个数量级。腔内高能水引起的疏水相互作用改变了机械锁钥模型。如果配体仅部分填充腔时观察到最佳亲和力,这可能与锁钥原理相矛盾。在晶体中,除了主体与客体之间的作用力外,其他力通常占主导地位,导致固态结构和溶液结构之间存在差异。这在杯芳烃配合物中尤为明显,通过X射线分析,杯芳烃比其他主体更常显示出客体分子在其腔外。鉴于此,讨论了晶体中弱相互作用识别的特殊问题。