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三氟甲基:一种两亲性非共价键合伙伴。

Trifluoromethyl: An Amphiphilic Noncovalent Bonding Partner.

作者信息

Esterhuysen Catharine, Heßelmann Andreas, Clark Timothy

机构信息

Department of Chemistry and Polymer Science, Stellenbosch University, Private Bag X1, Matieland, Stellenbosch, 7602, South Africa.

Lehrstuhl für Theoretische Chemie, Department Chemie und Pharmazie, Friedrich-Alexander-Universität Erlangen-Nürnberg, Egerlandstr. 3, 91054, Erlangen, Germany.

出版信息

Chemphyschem. 2017 Apr 5;18(7):772-784. doi: 10.1002/cphc.201700027. Epub 2017 Feb 14.

Abstract

The traditional "F " picture of fluorine suggests that it can only interact with electrophilic centers such as backbone-carbonyl carbon atoms or hydrogen-bond donors in proteins. We show that this view, which neglects polarization, is incomplete and the trifluoromethyl groups can act both as electrophiles and nucleophiles to form noncovalent interactions. The underlying polarization mechanism is based on the anomeric effect and is only fully operative if the geometry is allowed to relax. MP2/aug-cc-pVDZ calculations on model systems demonstrate the effect of the unusual group polarizability of trifluoromethyl. A survey of the Protein Databank reveals more than 600 weak interactions involving a trifluorotoluene moiety. The unique combination of the anomeric effect and the group-polarization process associated with it in CF allows its most negative molecular electrostatic potential (MEP) on the surface in contact with a nucleophile to become zero, so that the area of positive MEP on the backside of the carbon atom becomes dominant. However, the reverse polarization is also facile, so that CF can also act as an H-bond acceptor for cations such as the guanidinium group of arginine.

摘要

传统的氟的“F”图像表明,它只能与蛋白质中的亲电中心相互作用,如主链羰基碳原子或氢键供体。我们表明,这种忽视极化作用的观点是不完整的,三氟甲基基团既可以作为亲电试剂,也可以作为亲核试剂形成非共价相互作用。潜在的极化机制基于异头效应,并且只有在几何结构允许弛豫时才会完全起作用。对模型系统进行的MP2/aug-cc-pVDZ计算证明了三氟甲基不同寻常的基团极化率的影响。对蛋白质数据库的一项调查显示,有600多个涉及三氟甲苯部分的弱相互作用。在CF中,异头效应及其相关的基团极化过程的独特组合,使得其与亲核试剂接触的表面上最负的分子静电势(MEP)变为零,从而碳原子背面的正MEP区域占主导地位。然而,反向极化也很容易发生,因此CF也可以作为阳离子(如精氨酸的胍基)的氢键受体。

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