Pacific Northwest National Laboratory, Richland, WA 99352, USA.
Biochem Biophys Res Commun. 2009 Dec 25;390(4):1177-81. doi: 10.1016/j.bbrc.2009.10.112. Epub 2009 Oct 27.
We have previously reported that organophosphorus hydrolase (OPH) can be spontaneously entrapped in functionalized mesoporous silica (FMS) with HOOC- as the functional groups and the entrapped OPH in HOOC-FMS showed enhanced enzyme specific activity. This work is to study the mechanisms that why OPH entrapped in FMS displayed the enhanced activity in views of OPH-FMS interactions using spectroscopic methods. The circular dichroism (CD) spectra show that, comparing to the secondary structure of OPH free in solution, OPH in HOOC-FMS displayed increased alpha-helix/beta-strand transition of OPH with increased OPH loading density. The fluorescence emission spectra of Trp residues were used to assess the tertiary structural changes of the enzyme. There was a 42% increase in fluorescence. This is in agreement with the fact that the fluorescence intensity of OPH was increased accompanying with the increased OPH activity when decreasing urea concentrations in solution. The steady-state anisotropy was increased after OPH entrapping in HOOC-FMS comparing to the free OPH in solution, indicating that protein mobility was reduced upon entrapment. The solvent accessibility of Trp residues of OPH was probed by using acrylamide as a collisional quencher. Trp residues of OPH-FMS had less solvent exposure comparing with free OPH in solution due to its electrostatical binding to HOOC-FMS thereby displaying the increased fluorescence intensity. These results suggest the interactions of OPH with HOOC-FMS resulted in the protein immobilization and a favorable conformational change for OPH in the crowded confinement space and accordingly the enhanced activity.
我们之前报道过,有机磷水解酶(OPH)可以自发地被功能化介孔硅(FMS)包裹,其中 HOOC-作为功能基团,并且包裹在 HOOC-FMS 中的 OPH 显示出增强的酶比活性。这项工作是为了研究使用光谱方法从 OPH-FMS 相互作用的角度来解释为什么 OPH 包裹在 FMS 中会显示出增强的活性的机制。圆二色性(CD)光谱表明,与溶液中游离 OPH 的二级结构相比,HOOC-FMS 中的 OPH 显示出 OPH 负载密度增加时 OPH 的α-螺旋/β-折叠转变增加。色氨酸残基的荧光发射光谱用于评估酶的三级结构变化。荧光增加了 42%。这与事实是一致的,即在溶液中降低脲浓度时,OPH 的荧光强度增加伴随着 OPH 活性的增加。与溶液中游离的 OPH 相比,HOOC-FMS 中 OPH 包裹后稳态各向异性增加,表明蛋白质在包裹后流动性降低。使用丙烯酰胺作为碰撞猝灭剂探测 OPH 色氨酸残基的溶剂可及性。由于静电结合到 HOOC-FMS,HOOC-FMS 中的 OPH 色氨酸残基的溶剂暴露程度低于溶液中游离的 OPH,因此显示出增强的荧光强度。这些结果表明,OPH 与 HOOC-FMS 的相互作用导致蛋白质固定化和在拥挤的约束空间中有利于 OPH 的构象变化,从而提高了活性。