Lin S J, Yoshimura E, Sakai H, Wakagi T, Matsuzawa H
Department of Biotechnology, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-8657, Japan.
Biochim Biophys Acta. 1999 Aug 17;1433(1-2):132-8. doi: 10.1016/s0167-4838(99)00140-5.
Aqualysin I is a heat-stable protease; in the presence of 1 mM Ca(2+), the enzyme is stable at 80 degrees C and shows the highest activity at the same temperature. After gel filtration to remove free Ca(2+) from the purified enzyme sample, the enzyme (holo-aqualysin I) still bound Ca(2+) (1 mol/mol of the enzyme), but was no longer stable at 80 degrees C. On treatment of the holo-enzyme with EDTA, bound Ca(2+) decreased to about 0.3 mol/mol of the enzyme. The thermostability of holo-aqualysin I was dependent on the concentration of added Ca(2+), and 1 mM added Ca(2+) stabilized the enzyme completely, suggesting that aqualysin I has at least two Ca(2+) binding sites, i.e. stronger and weaker binding ones. Titration calorimetry showed single binding of Ca(2+) to the holo-enzyme with an association constant of 3.1 x 10(3) M(-1), and DeltaH and TDeltaS were calculated to be 2.3 and 6.9 kcal/mol, respectively, at 13 degrees C. La(3+), Sr(2+), Nd(3+), and Tb(3+) stabilized the holo-enzyme at 80 degrees C, as Ca(2+) did. These results suggest that the weaker binding site exhibits structural flexibility to bind several metal cations different in size and valency, and that the metal binding to the weaker binding site is essential for the thermostability of aqualysin I.
嗜水产气单胞菌蛋白酶I是一种热稳定蛋白酶;在1 mM Ca(2+)存在的情况下,该酶在80℃时稳定,并在相同温度下表现出最高活性。对纯化的酶样品进行凝胶过滤以去除游离Ca(2+)后,该酶(全酶-嗜水产气单胞菌蛋白酶I)仍结合Ca(2+)(每摩尔酶1摩尔),但在80℃时不再稳定。用EDTA处理全酶后,结合的Ca(2+)降至约每摩尔酶0.3摩尔。全酶-嗜水产气单胞菌蛋白酶I的热稳定性取决于添加的Ca(2+)浓度,添加1 mM Ca(2+)可使酶完全稳定,这表明嗜水产气单胞菌蛋白酶I至少有两个Ca(2+)结合位点,即结合力较强和较弱的位点。滴定热分析法表明Ca(2+)与全酶的结合为单结合,结合常数为3.1×10(3) M(-1),在13℃时,ΔH和TDeltaS分别计算为2.3和6.9 kcal/mol。La(3+)、Sr(2+)、Nd(3+)和Tb(3+)与Ca(2+)一样,能在80℃时使全酶稳定。这些结果表明,较弱的结合位点具有结构灵活性,可结合几种大小和价态不同的金属阳离子,并且金属与较弱结合位点的结合对于嗜水产气单胞菌蛋白酶I的热稳定性至关重要。