Gudzenko E V, Varbanets L D
Mikrobiol Z. 2013 Sep-Oct;75(5):27-32.
It was established, as a result of investigations of the alpha-L-rhamnosidase of Eupenicillium erubescens kinetic properties, that K(m) and V(max) for the corresponding synthetic substrate were 1.0 mM and 120 micromol/min/mg of protein, respectively. alpha-L-Rhamnosidase was also competitively inhibited by the reaction product- L-rhamnose, the inhibition constant was 5.2 x 10(-2) M. One could also observe the inhibition of alpha-L-rhamnosidase reaction in the presence of 10(-3) M of glucose. It was shown that the rate of enzymatic hydrolysis of nitrophenyl substrate was directly proportional to the concentration of enzyme, and the increase of the substrate concentration leads to the increase of hydrolysis rate. The substrate concentration being increased above the optimal one (5.0 mg/ml), the reaction rate decreases due to the formation of inactive enzyme-substrate complex FS2.
通过对红青霉α-L-鼠李糖苷酶动力学特性的研究确定,相应合成底物的K(m)和V(max)分别为1.0 mM和120微摩尔/分钟/毫克蛋白质。α-L-鼠李糖苷酶也受到反应产物L-鼠李糖的竞争性抑制,抑制常数为5.2×10(-2)M。在10(-3)M葡萄糖存在的情况下,也可以观察到α-L-鼠李糖苷酶反应受到抑制。结果表明,硝基苯基底物的酶促水解速率与酶浓度成正比,底物浓度的增加会导致水解速率增加。当底物浓度增加到高于最佳浓度(5.0毫克/毫升)时,由于形成无活性的酶-底物复合物FS2,反应速率降低。