Department of Physics , Kazan Federal University , Kazan 420011 , Russia.
J Phys Chem B. 2019 Mar 14;123(10):2305-2315. doi: 10.1021/acs.jpcb.8b12511. Epub 2019 Mar 6.
The translational diffusion coefficient is highly sensitive to the size change of diffusing species and is ideally suited for the study of molecular association. Here, we used translational diffusion measurements by a pulsed-field gradient nuclear magnetic resonance (PFG NMR) technique to investigate the role of disulfide bonds in the formation of a supramolecular gel-like structure in the concentrated solution of α-casein. To reduce disulfide bonds, we added a commonly used reducing reagent tris(2-carboxyethyl)phosphine (TCEP) to α-casein solution. We found that the disruption of a disulfide bond Cys36-Cys40 in α-casein does not alter the translational diffusion or secondary structure of α-casein in dilute, 1 and 3% (wt %) solution. On the contrary, in concentrated, 15% (wt %) α-casein solution, in addition to the disruption of disulfide bonds, TCEP induced significant changes in gel properties. New long-lived intermolecular interactions formed, leading to the irreversible gel formation. While a few side reactions of TCEP (as well as other reducing agents, e.g., dithiothreitol) have been reported, this area is still understudied. Here, we provide new data on the side reaction of the reducing agent TCEP in concentrated protein solution, suggesting that at high protein concentrations TCEP should be used with caution.
平移扩散系数对扩散物种的大小变化非常敏感,非常适合研究分子缔合。在这里,我们使用脉冲场梯度核磁共振(PFG NMR)技术的平移扩散测量来研究二硫键在α-酪蛋白浓溶液中形成超分子凝胶状结构中的作用。为了减少二硫键,我们向α-酪蛋白溶液中添加了一种常用的还原剂三(2-羧乙基)膦(TCEP)。我们发现,α-酪蛋白中 Cys36-Cys40 二硫键的破坏不会改变α-酪蛋白在稀、1%和 3%(wt%)溶液中的平移扩散或二级结构。相反,在浓、15%(wt%)α-酪蛋白溶液中,除了二硫键的破坏外,TCEP 还诱导了凝胶性质的显著变化。形成了新的长寿命的分子间相互作用,导致不可逆的凝胶形成。虽然已经报道了 TCEP 的一些副反应(以及其他还原剂,例如二硫苏糖醇),但这个领域仍在研究中。在这里,我们提供了关于还原剂 TCEP 在浓蛋白质溶液中副反应的新数据,表明在高蛋白质浓度下,TCEP 的使用应谨慎。