Nielsen Mette M, Andersen Kell K, Westh Peter, Otzen Daniel E
Centre for Insoluble Protein Structures (inSPIN), Department of Life Sciences, Aalborg University, Aalborg, Denmark.
Biophys J. 2007 May 15;92(10):3674-85. doi: 10.1529/biophysj.106.101238. Epub 2007 Mar 9.
Beta-sheet proteins are particularly resistant to denaturation by sodium dodecyl sulfate (SDS). Here we compare unfolding of two beta-sandwich proteins TNfn3 and TII27 in SDS. The two proteins show different surface electrostatic potential. Correspondingly, TII27 unfolds below the critical micelle concentration via the formation of hemimicelles on the protein surface, whereas TNfn3 only unfolds around the critical micelle concentration. Isothermal titration calorimetry confirms that unfolding of TII27 sets in at lower SDS concentrations, although the total number of bound SDS molecules is similar at the end of unfolding. In mixed micelles with the nonionic detergent dodecyl maltoside, where the concentration of monomeric SDS is insignificant, the behavior of the two proteins converges. TII27 unfolds more slowly than TNfn3 in SDS and follows a two-mode behavior. Additionally TNfn3 shows inhibition of SDS unfolding at intermediate SDS concentrations. Mutagenic analysis suggests that the overall unfolding mechanism is similar to that observed in denaturant for both proteins. Our data confirm the kinetic robustness of beta-sheet proteins toward SDS. We suggest this is related to the inability of SDS to induce significant amounts of alpha-helix structure in these proteins as part of the denaturation process, forcing the protein to denature by global rather than local unfolding.
β-折叠蛋白对十二烷基硫酸钠(SDS)变性具有特别的抗性。在此我们比较了两种β-三明治蛋白TNfn3和TII27在SDS中的展开情况。这两种蛋白表现出不同的表面静电势。相应地,TII27在临界胶束浓度以下通过在蛋白表面形成半胶束而展开,而TNfn3仅在临界胶束浓度附近展开。等温滴定量热法证实,TII27在较低的SDS浓度下开始展开,尽管在展开结束时结合的SDS分子总数相似。在含有非离子洗涤剂十二烷基麦芽糖苷的混合胶束中,单体SDS的浓度可忽略不计,两种蛋白的行为趋同。在SDS中,TII27比TNfn3展开得更慢,且呈现出双模式行为。此外,TNfn3在中等SDS浓度下表现出对SDS展开的抑制作用。诱变分析表明,两种蛋白的整体展开机制与在变性剂中观察到的相似。我们的数据证实了β-折叠蛋白对SDS的动力学稳健性。我们认为这与SDS在变性过程中无法在这些蛋白中诱导大量α-螺旋结构有关,从而迫使蛋白通过整体而非局部展开来变性。