Kachurin A M, Protasenya S V, Shabalin K A, Isaev-Ivanov V V, Golubev A M, Neustroev K N
St. Petersburg Konstantinov Nuclear Physics Institute, Gatchina, 188351, Russia.
Biochemistry (Mosc). 1998 Oct;63(10):1183-90.
Tryptophan residues in alpha-galactosidase were modified with bromosuccinimide. The fact that galactose, a specific inhibitor of alpha-galactosidase, does not prevent this modification demonstrates that tryptophan residues are not located in galactose binding sites. Analysis of the inactivation kinetics revealed two groups of Trp residues (8.5 and 7.5 residues) with different accessibility for N-bromosuccinimide. We studied specific quenching of alpha-galactosidase fluorescence resulting from modification of an sulfhydryl group in the active site of the enzyme with Hg2+ and Ag+ ions. The specific quenching is due to conformational changes of the enzyme. Forster's radii were determined for various protein--chromophore complexes. Dynamic quenching of alpha-galactosidase fluorescence was investigated. To describe abnormal dynamic quenching in alpha-galactosidase, a modification of the Stern--Volmer equation is suggested.
用溴化琥珀酰亚胺修饰了α-半乳糖苷酶中的色氨酸残基。α-半乳糖苷酶的特异性抑制剂半乳糖不能阻止这种修饰,这一事实表明色氨酸残基不在半乳糖结合位点中。对失活动力学的分析揭示了两组对N-溴化琥珀酰亚胺具有不同可及性的色氨酸残基(8.5个和7.5个残基)。我们研究了Hg2+和Ag+离子对酶活性位点中巯基修饰导致的α-半乳糖苷酶荧光的特异性猝灭。特异性猝灭是由于酶的构象变化所致。测定了各种蛋白质-发色团复合物的福斯特半径。研究了α-半乳糖苷酶荧光的动态猝灭。为了描述α-半乳糖苷酶中的异常动态猝灭,提出了对斯特恩-沃尔默方程的一种修正。