Biophysical Chemistry Laboratory, Department of Physical Chemistry, University of Sofia, Sofia, Bulgaria.
Colloids Surf B Biointerfaces. 2011 Aug 1;86(1):71-80. doi: 10.1016/j.colsurfb.2011.03.018. Epub 2011 Mar 23.
The purpose of this article was to describe the kinetics of the enzymatic action of one or more enzymes on mixture of substrates organized in 2D structures in order to mimic some situations existing in biological or industrial systems. Hydrolysis of the mixed monomolecular films of tricaprylin/dilauroylphosphatidylcholine (TC8/DiC12PC) by Thermomyces lanuginosus lipase (TLL) and phospholipase A₂ (PLA₂) was studied by measuring the decrease of the surface area and change of the surface potential at barostatic conditions. The decrease of the surface area detects the transition of the substrate into reaction products and their solubilization while the change of the surface potential detects the contribution of dipole moment of the molecules remaining at the interface during the hydrolysis. The kinetic models, describing the interfacial hydrolysis allowed us to estimate the values of the global kinetic constants for TC8 and DiC12PC hydrolysis, respectively. The role of interaction between all participants of the catalytic act in that complex catalytic system is shown. The catalytic activity of TLL and PLA₂ is affected by the molecular environment in TC8/DiC12PC mixed monolayers.
本文的目的是描述一种或多种酶在二维结构中组织的混合物上的酶促作用的动力学,以模拟生物或工业系统中存在的某些情况。通过在等压条件下测量表面积的减少和表面电势的变化,研究了Thermomyces lanuginosus 脂肪酶(TLL)和磷脂酶 A₂(PLA₂)对三辛酸甘油酯/二硬脂酰基磷脂酰胆碱(TC8/DiC12PC)混合单分子膜的水解作用。表面积的减少检测到底物向反应产物的转变及其增溶,而表面电势的变化则检测到水解过程中界面上剩余分子的偶极矩的贡献。描述界面水解的动力学模型允许我们分别估计 TC8 和 DiC12PC 水解的整体动力学常数的值。显示了在该复杂催化体系中所有催化作用参与者之间相互作用的作用。TLL 和 PLA₂ 的催化活性受 TC8/DiC12PC 混合单层中分子环境的影响。