Wang Yu-Hsiang, Narayan Mahesh
Department of Biological Sciences, The University of Texas at El Paso, El Paso, TX 79968, USA.
Protein J. 2008 Apr;27(3):181-5. doi: 10.1007/s10930-007-9121-0.
The isomerase efficacy of the oxidoreductase, protein disulfide isomerase (PDI), has been examined by a simple method. Using this technique, the pH-dependence of relative efficiency of isomerization reactions by PDI has been evaluated and its impact on a key structure-forming step in the oxidative folding pathway of a model protein determined. Results reveal that PDI has a greater relative impact on thiol-disulfide reshuffling (isomerization) reactions and consequently the structure-forming step in oxidative folding at pH 7, as opposed to pH's 8 and 9. These results suggest that PDI, which possesses an anomalously low thiol pKa, is fine-tuned to catalyze oxidative folding in the lumen of the endoplasmic reticulum where the ambient pH of approximately 7 would otherwise retard thioldisulfide exchange reactions and hinder acquisition of the native fold. The pH-dependent impact on isomerization catalysis has important implications for the development of synthetic chaperones for in vivo and in vitro applications.
通过一种简单的方法对氧化还原酶——蛋白质二硫键异构酶(PDI)的异构酶活性进行了检测。利用该技术,评估了PDI催化异构化反应的相对效率对pH的依赖性,并确定了其对模型蛋白氧化折叠途径中关键结构形成步骤的影响。结果表明,与pH值为8和9时相比,PDI在pH值为7时对硫醇-二硫键重排(异构化)反应以及氧化折叠过程中的结构形成步骤具有更大的相对影响。这些结果表明,PDI的硫醇pKa异常低,经过微调以在内质网腔中催化氧化折叠,否则内质网腔中约7的环境pH会阻碍硫醇-二硫键交换反应并妨碍天然折叠的形成。pH对异构化催化的依赖性影响对于开发用于体内和体外应用的合成伴侣具有重要意义。