Department of Biophysical Chemistry and Molecular Oncology, Institute of Biophysics of the Czech Academy of Sciences, v.v.i., Kralovopolska 135, 612 65, Brno, Czech Republic.
Chempluschem. 2020 Jul;85(7):1596-1601. doi: 10.1002/cplu.202000348.
The hydrogen evolution reaction (HER), catalysed by proteins at mercury electrodes and reflected in chronopotentiometric stripping peak H, provides a label-free and reagentless analytical technique that is sensitive to protein structure. Here we show how the kinetic isotope effect affected the HER catalysed by the protein bovine serum albumin (BSA). We found that the deuteron bond, which is stronger than that of a proton, contributed to less effective transport of deuterons mediated by BSA at the Hg|D O interface, and enhanced structural stability of the surface-attached native BSA in D O solution. A structural transition was also observed in the surface-attached urea-denatured BSA, and is probably due to the destabilisation of some secondary structural remnants retained by the 17 SS-bonds. Because the catalytically active groups involved in proton or deuteron transfer in native proteins are often exposed towards solutions and their protons exchange almost instantly, no signs of H/D exchange were observed in native BSA using peak H under the given conditions.
氢的析出反应(HER)在汞电极上由蛋白质催化,并反映在计时电位 stripping 峰 H 中,提供了一种无标记和无需试剂的分析技术,对蛋白质结构敏感。在这里,我们展示了动力学同位素效应对蛋白质牛血清白蛋白(BSA)催化的 HER 的影响。我们发现,与质子相比,氘键更强,这导致 BSA 在 Hg|DO 界面介导的氘离子传输效果较差,并增强了表面结合的天然 BSA 在 DO 溶液中的结构稳定性。在表面结合的尿素变性 BSA 中也观察到结构转变,这可能是由于 17 个 SS 键保留的一些二级结构残余物的失稳。因为天然蛋白质中涉及质子或氘离子转移的催化活性基团通常朝向溶液暴露,并且它们的质子几乎瞬间交换,因此在给定条件下,使用峰 H 未在天然 BSA 中观察到 H/D 交换的迹象。