Sharif Shasad, Schagen David, Toney Michael D, Limbach Hans-Heinrich
Institut für Chemie und Biochemie, Takustrasse 3, Freie Universität Berlin, D-14195 Berlin, Germany.
J Am Chem Soc. 2007 Apr 11;129(14):4440-55. doi: 10.1021/ja066240h. Epub 2007 Mar 20.
We present a novel series of hydrogen-bonded, polycrystalline 1:1 complexes of Schiff base models of the cofactor pyridoxal-5'-phosphate (PLP) with carboxylic acids that mimic the cofactor in a variety of enzyme active sites. These systems contain an intramolecular OHN hydrogen bond characterized by a fast proton tautomerism as well as a strong intermolecular OHN hydrogen bond between the pyridine ring of the cofactor and the carboxylic acid. In particular, the aldenamine and aldimine Schiff bases N-(pyridoxylidene)tolylamine and N-(pyridoxylidene)methylamine, as well as their adducts, were synthesized and studied using 15N CP and 1H NMR techniques under static and/or MAS conditions. The geometries of the hydrogen bonds were obtained from X-ray structures, 1H and 15N chemical shift correlations, secondary H/D isotope effects on the 15N chemical shifts, or directly by measuring the dipolar 2H-15N couplings of static samples of the deuterated compounds. An interesting coupling of the two "functional" OHN hydrogen bonds was observed. When the Schiff base nitrogen atoms of the adducts carry an aliphatic substituent such as in the internal and external aldimines of PLP in the enzymatic environment, protonation of the ring nitrogen shifts the proton in the intramolecular OHN hydrogen bond from the oxygen to the Schiff base nitrogen. This effect, which increases the positive charge on the nitrogen atom, has been discussed as a prerequisite for cofactor activity. This coupled proton transfer does not occur if the Schiff base nitrogen atom carries an aromatic substituent.
我们展示了一系列新型的氢键连接的多晶型1:1配合物,这些配合物是辅因子磷酸吡哆醛(PLP)的席夫碱模型与羧酸形成的,它们在多种酶活性位点模拟辅因子。这些体系包含一个以快速质子互变异构为特征的分子内OHN氢键,以及辅因子吡啶环与羧酸之间的强分子间OHN氢键。特别地,合成了醛胺和醛亚胺席夫碱N-(吡啶亚甲基)甲苯胺和N-(吡啶亚甲基)甲胺及其加合物,并在静态和/或MAS条件下使用15N CP和1H NMR技术进行了研究。氢键的几何结构通过X射线结构、1H和15N化学位移相关性、二级H/D同位素对15N化学位移的影响,或直接通过测量氘代化合物静态样品的偶极2H-15N耦合获得。观察到了两种“功能性”OHN氢键的有趣耦合。当加合物的席夫碱氮原子带有脂肪族取代基时,如在酶环境中PLP的内醛亚胺和外醛亚胺中,环氮的质子化会使分子内OHN氢键中的质子从氧转移到席夫碱氮上。这种增加氮原子正电荷的效应已被讨论为辅因子活性的先决条件。如果席夫碱氮原子带有芳香族取代基,则不会发生这种耦合质子转移。