Alpeeva I S, Sakharov I Iu
Prikl Biokhim Mikrobiol. 2007 Jan-Feb;43(1):31-5.
We optimized the conditions for luminol oxidation by hydrogen peroxide in the presence of peroxidase (EC 1.11.1.7) from royal palm leaves (Roystonea regia). The pH range (8.3-8.6) corresponding to maximum chemiluminescence was similar for palm tree peroxidase and horseradish peroxidase. Variations in the concentration of the Tris buffer were accompanied by changes in chemiluminescence. Note that maximum chemiluminescence was observed in the 30 mM solution. The detection limit of the enzyme assay during luminol oxidation by hydrogen peroxide was 1 pM. The specific feature of palm tree peroxidase was the generation of a long-term chemiluminescent signal. In combination with the data on the high stability of palm tree peroxidase, our results indicate that this enzyme is promising for its use in analytical studies.
我们优化了在王棕(Roystonea regia)叶片过氧化物酶(EC 1.11.1.7)存在下,鲁米诺被过氧化氢氧化的条件。棕榈树过氧化物酶和辣根过氧化物酶对应最大化学发光的pH范围(8.3 - 8.6)相似。Tris缓冲液浓度的变化伴随着化学发光的改变。注意,在30 mM溶液中观察到最大化学发光。过氧化氢氧化鲁米诺期间酶测定的检测限为1 pM。棕榈树过氧化物酶的独特特征是产生长期化学发光信号。结合棕榈树过氧化物酶高稳定性的数据,我们的结果表明这种酶在分析研究中具有应用前景。