Pshezhetskiĭ A V, Beĭer E M, Buneeva O A, Vinogradova M V, Levashov A V, Vidershaĭn G Ia
Bioorg Khim. 1993 Feb;19(2):161-73.
Kinetic of hydrolysis, by lysosomal glycosidases, of their synthetic substrates were studied in systems of the Aerosol OT (AOT) reversed micelles in octane. Catalytic activity of all the tested enzymes, viz., GM1-galactosidase, beta-hexosaminidases A and B, neuraminidase, and galactocerebrosidase, in reversed micelles proved to be the same as or higher than in the water buffer. In the reversed micelles an effective inhibition of the enzymatic reactions by the resulting carbohydrates was however observed. The dependence of the enzymes' activity on the hydration degree was represented by curves with one or several maxima, corresponding to various oligomeric forms of the enzymes. Dependencies of effective Km on the hydration degree in reversed micelles are similar dependencies of the enzyme activities on the same parameter, which can be explained by corresponding changes of local substrate concentration near the enzyme active site. Dependencies of the enzymatic activity on the surfactant's concentration in the reversed micellar system were also studied. Catalytic activity of the soluble lysosomal glycosidases was found to be unaffected by the micelles concentration. Activity of the membrane lysosomal glycosidase, galactocerebrosidase, strongly increased when the surfactant's concentration decreased. Under optimal conditions the activity of galactocerebrosidase in reversed micelles was 10-fold as compared with its activity in the water buffer.
在辛烷中的气溶胶OT(AOT)反胶束体系中,研究了溶酶体糖苷酶对其合成底物的水解动力学。结果表明,在反胶束中,所有测试酶,即GM1-半乳糖苷酶、β-己糖胺酶A和B、神经氨酸酶和半乳糖脑苷脂酶的催化活性与在水缓冲液中相同或更高。然而,在反胶束中观察到生成的碳水化合物对酶促反应有有效抑制作用。酶活性对水合程度的依赖性由具有一个或几个最大值的曲线表示,这对应于酶的各种寡聚形式。反胶束中有效Km对水合程度的依赖性与酶活性对同一参数的依赖性相似,这可以通过酶活性位点附近局部底物浓度的相应变化来解释。还研究了酶活性对反胶束体系中表面活性剂浓度的依赖性。发现可溶性溶酶体糖苷酶的催化活性不受胶束浓度的影响。当表面活性剂浓度降低时,膜溶酶体糖苷酶半乳糖脑苷脂酶的活性强烈增加。在最佳条件下,反胶束中半乳糖脑苷脂酶的活性是其在水缓冲液中活性的10倍。