Tsuruta Hiroki, Aizono Yasuo
Laboratory of Biological Chemistry, Department of Biofunctional Chemistry, Faculty of Agriculture, Kobe University, Nada-ku, Kobe, Hyogo 657-8501, Japan.
J Biochem. 2003 Feb;133(2):225-30. doi: 10.1093/jb/mvg029.
A procedure was established for expression and purification of abundant recombinant cold-active protein-tyrosine-phosphatase (RCPTPase), which showed identical enzymatic characteristics to the native enzyme (NCPTPase). The purified RCPTPase showed high catalytic activity at low temperature and maximal activity at 30 degrees C. RCPTPase has a thermodynamic characteristic in that its activation enthalpy was determined to be low, 4.3 kcal/mol, at temperatures below 19.3 degrees C, where the Arrhenius relationship exhibited an inflection point, in comparison with 20.3 kcal/mol above 19.3 degrees C. Also, the thermostability, DeltaG(water), of the catalytic site in the RCPTPase molecule was increased with a decrease in temperature. It was considered that cold-active protein-tyrosine-phosphatase could maintain its catalytic site in a stable conformation for eliciting high catalytic activity with low activation enthalpy at low temperature.
已建立一种用于表达和纯化大量重组冷活性蛋白酪氨酸磷酸酶(RCPTPase)的方法,该酶显示出与天然酶(NCPTPase)相同的酶学特性。纯化后的RCPTPase在低温下具有高催化活性,在30℃时具有最大活性。RCPTPase具有一种热力学特性,即与19.3℃以上的20.3千卡/摩尔相比,在低于19.3℃的温度下,其活化焓被确定为较低,为4.3千卡/摩尔,此时阿累尼乌斯关系出现拐点。此外,RCPTPase分子中催化位点的热稳定性ΔG(water)随温度降低而增加。据认为,冷活性蛋白酪氨酸磷酸酶可以将其催化位点维持在稳定构象,以便在低温下以低活化焓引发高催化活性。