Mishra R, Olofsson L, Karlsson M, Carlsson U, Nicholls I A, Hammarström P
IFM-Department of Chemistry, Linköping University, Linköping, Sweden.
Cell Mol Life Sci. 2008 Mar;65(5):827-39. doi: 10.1007/s00018-008-7517-4.
The basis for the stability of thermophilic proteins is of fundamental interest for extremophile biology. We investigated the folding and unfolding processes of the homotetrameric Thermoanaerobacter brockii alcohol dehydrogenase (TBADH). TBADH subunits were 4.8 kcal/mol less stable towards guanidinium chloride (GdmCl) unfolding compared to urea, indicating ionic modulation of TBADH stability. Strongly denaturing conditions promoted mono-exponential unfolding kinetics with linear dependence on denaturant concentration. Here TBADH unfolded >40-fold slower when extrapolated from urea as compared to GdmCl unfolding. A marked unfolding hysteresis was shown when comparing refolding and unfolding in urea. An unusual biphasic unfolding trajectory with an exceptionally slow phase at intermediate concentrations of GdmCl and urea was also observed. We advocate that TBADH forms two distinctly different tetrameric isoforms, and likely an ensemble of native states. This unusual supramolecular folding behavior has been shown responsible for formation of amyloidotic yeast prion strains and can have functional importance for TBADH.
嗜热蛋白稳定性的基础是嗜极生物生物学的根本兴趣所在。我们研究了嗜热栖热放线菌醇脱氢酶(TBADH)同四聚体的折叠和去折叠过程。与尿素相比,TBADH亚基对氯化胍(GdmCl)去折叠的稳定性低4.8千卡/摩尔,表明TBADH稳定性存在离子调节。强变性条件促进了单指数去折叠动力学,且与变性剂浓度呈线性相关。在此,与GdmCl去折叠相比,从尿素外推时TBADH去折叠速度慢40倍以上。比较尿素中的复性和去折叠时显示出明显的去折叠滞后现象。在GdmCl和尿素的中间浓度下还观察到异常的双相去折叠轨迹,其中一个阶段异常缓慢。我们认为TBADH形成两种明显不同的四聚体异构体,可能还有一组天然状态。这种不寻常的超分子折叠行为已被证明与淀粉样酵母朊病毒株的形成有关,并且可能对TBADH具有功能重要性。