Sundd M, Kundu S, Jagannadham M V
Institute of Medical Sciences, Banaras Hindu University, Varanasi, Uttar Pradesh, India.
J Protein Chem. 2000 Apr;19(3):169-76. doi: 10.1023/a:1007010818108.
Alcohol-induced conformational transitions of erv C, a highly stable cysteine protease, were followed by CD, fluorescence, and activity. At acidic pH, the addition of different alcohols caused two types of conformational transitions. Increasing the concentration of nonfluorinated alkyl alcohols induced a conformational switch from alpha-helix to beta-sheet. Under these conditions, the protein lost its proteolytic activity and tertiary structure. The switch was a sudden one, observed in 50% methanol, 45% ethanol, and 40% propanol. Under similar conditions of pH and concentration, however, glycerol and TFE enhanced the alpha-helicity of the protein. Methanol-induced denaturation was observed to occur in two stages; the first is the beta-sheet state stabilized at low alcohol concentrations, and the other is the beta-sheet state with enhanced ellipticity stabilized at high alcohol concentrations. This beta-sheet conformation can be attained from the native as well as 6 M GuHCl-denatured state by addition of methanol and exhibits properties different from the native or unfolded state. This state shows loss of tertiary structure and activity, enhanced nonnative secondary structure, noncooperative temperature unfolding, and higher stability toward denaturants as compared to the native state, which are characteristic of the molten globule-like state or O-state, and thus this state may be functioning as an intermediate in the folding pathway of erv C.
通过圆二色光谱(CD)、荧光和活性测定,研究了高度稳定的半胱氨酸蛋白酶erv C在酒精诱导下的构象转变。在酸性pH条件下,添加不同的醇会引起两种类型的构象转变。增加非氟化烷基醇的浓度会导致构象从α-螺旋转变为β-折叠。在这些条件下,蛋白质失去其蛋白水解活性和三级结构。这种转变是突然发生的,在50%甲醇、45%乙醇和40%丙醇中可观察到。然而,在相似的pH和浓度条件下,甘油和2,2,2-三氟乙醇(TFE)会增强蛋白质的α-螺旋度。观察到甲醇诱导的变性分两个阶段发生;第一个阶段是在低醇浓度下稳定的β-折叠状态,另一个阶段是在高醇浓度下椭圆率增强的β-折叠状态。通过添加甲醇,这种β-折叠构象可从天然状态以及6 M盐酸胍(GuHCl)变性状态获得,并且表现出与天然状态或未折叠状态不同的性质。这种状态显示出三级结构和活性丧失、非天然二级结构增强、温度非协同解折叠以及与天然状态相比对变性剂具有更高的稳定性,这些都是类熔球态或O态的特征,因此这种状态可能在erv C的折叠途径中充当中间体。