Diermayr P, Kroll S, Klostermeyer H
Biol Chem Hoppe Seyler. 1987 Jan;368(1):57-61. doi: 10.1515/bchm3.1987.368.1.57.
The inactivation of a metalloproteinase from Pseudomonas fluorescens Biotype I with EDTA was investigated at 22 degrees C and 37 degrees C. At 22 degrees C proteolytic activity decreases linearly with time and an inactive apoenzyme is obtained by dialysis. Proteolytic activity can be restored with several metal-ions, Ca2+, Zn2+, Mg2+, Sr2+ and co2+ give the best results. Activity and substrate specificity are influenced by the metal-ions. Reactivation depends on the concentration of the metal-ions, optimum concentration is 1 mM for Ca2+ and 50 microM for Zn2+. The isoelectric point of the apoenzyme is around 8.0, this is about 0.3 pH-units lower than the isoelectric point of the native proteinase. At 37 degrees C inactivation follows first order kinetics and is irreversible because of autolysis as shown by a gel filtration-experiment.
在22℃和37℃下研究了用乙二胺四乙酸(EDTA)使荧光假单胞菌I型生物变种的一种金属蛋白酶失活的情况。在22℃时,蛋白水解活性随时间呈线性下降,通过透析可得到无活性的脱辅基酶。几种金属离子可恢复蛋白水解活性,Ca2+、Zn2+、Mg2+、Sr2+和Co2+的效果最佳。金属离子会影响活性和底物特异性。再活化取决于金属离子的浓度,Ca2+的最佳浓度为1 mM,Zn2+的最佳浓度为50 μM。脱辅基酶的等电点约为8.0,这比天然蛋白酶的等电点低约0.3个pH单位。在37℃时,失活遵循一级动力学且是不可逆的,这是由于凝胶过滤实验表明的自溶作用。