Kundu S, Sundd M, Jagannadham M V
Molecular Biology Unit, Institute of Medical Sciences, Banaras Hindu University, Varanasi, 221 005, India.
Biochem Biophys Res Commun. 1999 Nov 2;264(3):635-42. doi: 10.1006/bbrc.1999.1550.
Ervatamin C, a novel cysteine protease, belongs to alpha + beta class of proteins, probably with two domains, and retains both secondary and tertiary structures along with biological activity over a wide range of pH (2-12). Under neutral conditions, GuHCl and temperature-induced unfolding was cooperative with high transition midpoints and shows no structural changes in the presence of urea reflecting a remarkable stability. The fluorescence emission maximum at 350 nm suffers a blue shift of 4-5 nm upon lowering the pH and a red shift of 5 nm under denatured conditions. Unfolding transition curves at pH 2.0 are non-coincidental indicating the presence of intermediates in the unfolding pathway. At extremely low pH, the enzyme loses all the tertiary structure and proteolytic activity but retains a predominant secondary structure and a strong binding to ANS. GuHCl-induced unfolding of the enzyme in this intermediate state is noncooperative and indicates sequential unfolding of the domains.
埃尔瓦他明C是一种新型半胱氨酸蛋白酶,属于α+β类蛋白质,可能有两个结构域,在很宽的pH范围(2-12)内都能保持二级和三级结构以及生物活性。在中性条件下,盐酸胍和温度诱导的去折叠是协同的,具有较高的转变中点,并且在尿素存在下没有结构变化,这反映出其具有显著的稳定性。当降低pH时,350nm处的荧光发射最大值会发生4-5nm的蓝移,在变性条件下会发生5nm的红移。pH 2.0时的去折叠转变曲线不重合,表明去折叠途径中存在中间体。在极低的pH下,该酶失去所有三级结构和蛋白水解活性,但保留主要的二级结构以及与ANS的强结合。在这种中间状态下,盐酸胍诱导的该酶去折叠是非协同的,表明结构域是顺序去折叠的。