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基于分子印迹聚合物的对映选择性酯酶新酶模型。

A new enzyme model for enantioselective esterases based on molecularly imprinted polymers.

作者信息

Emgenbroich Marco, Wulff Günter

机构信息

Institute of Organic Chemistry and Macromolecular Chemistry Heinrich-Heine-University Düsseldorf, Universitätsstrasse 1 40225 Düsseldorf, Germany.

出版信息

Chemistry. 2003 Sep 5;9(17):4106-17. doi: 10.1002/chem.200304783.

Abstract

An efficient enzyme model exhibiting enantioselective esterase activity was prepared by using molecular imprinting techniques. The enantiomerically pure phosphonic monoesters 4 L and 5 L were synthesized as stable transition-state analogues. They were used as templates connected by stoichiometric noncovalent interactions to two equivalents of the amidinium binding site monomer 1. After polymerization and removal of the template, the polymers were efficient catalysts for the hydrolysis of certain nonactivated amino acid phenylesters (2 L, 2 D, 3 L, 3 D) depending on the template used. Imprinted catalyst IP4 (imprinted with 4 L) enhanced the hydrolysis of the corresponding substrate 2 L by a factor of 325 relative to that of a buffered solution. Relative to a control polymer containing the same functionalities, prepared without template 4 L, the enhancement was still about 80-fold, showing the highest imprinting effect up to now. In cross-selectivity experiments a strong substrate selectivity of higher than three was found despite small differences in the structure of the substrate and template. Plots of initial velocities of the hydrolysis versus substrate concentration showed typical Michaelis-Menten kinetics with saturation behavior. From these curves, the Michaelis constant K(M) and the catalytic constant k(cat) can be calculated. The enantioselectivity shown in these values is most interesting. The ratio of the catalytic efficiency k(cat)/K(M), between the hydrolysis of 2 L- and 2 D-substrate with IP4, is 1.65. This enantioselectivity derives from both selective binding of the substrate (K(M)L/K(M)D=0.82), and from selective formation of the transition state (k(cat)L/k(cat)D=1.36). Thus, these catalysts give good catalysis as well as high imprinting and substrate selectivity. Strong competitive inhibition is caused by the template used in imprinting. This behavior is also quite similar to the behavior of natural enzymes, for which these catalysts are good models.

摘要

通过分子印迹技术制备了一种具有对映选择性酯酶活性的高效酶模型。合成了对映体纯的膦酸单酯4L和5L作为稳定的过渡态类似物。它们被用作模板,通过化学计量的非共价相互作用与两当量的脒基结合位点单体1相连。聚合反应并去除模板后,根据所用模板的不同,这些聚合物对某些未活化的氨基酸苯酯(2L、2D、3L、3D)的水解反应具有高效催化作用。印迹催化剂IP4(用4L印迹)相对于缓冲溶液,将相应底物2L的水解速率提高了325倍。相对于不含模板4L制备的具有相同官能团的对照聚合物,增强效果仍约为80倍,显示出迄今为止最高的印迹效果。在交叉选择性实验中,尽管底物和模板的结构差异很小,但仍发现了大于3的强底物选择性。水解初始速度与底物浓度的关系图显示出具有饱和行为的典型米氏动力学。从这些曲线中,可以计算出米氏常数K(M)和催化常数k(cat)。这些值中显示的对映选择性最为有趣。IP4催化2L-和2D-底物水解时,催化效率k(cat)/K(M)的比值为1.65。这种对映选择性既源于底物的选择性结合(K(M)L/K(M)D = 0.82),也源于过渡态的选择性形成(k(cat)L/k(cat)D = 1.36)。因此,这些催化剂具有良好的催化作用以及高印迹和底物选择性。印迹中使用的模板会引起强烈的竞争性抑制。这种行为也与天然酶的行为非常相似,而这些催化剂是天然酶的良好模型。

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