Mareeva E A, Orlova M A, Doseeva V V, Loginov D B, Galkin A G, Gazarian I G, Tishkov V I
Chemical Faculty of Moscow State University, GSP, Russia.
Appl Biochem Biotechnol. 1996 Oct-Nov;61(1-2):13-23. doi: 10.1007/BF02785684.
Two horseradish peroxidase C (HRPC) mutants with substitutions in the active center, i.e., Phe41-->His and Phe143-->Glu, were compared to the wild-type recombinant enzyme expressed in Escherichia coli in terms of the enzymatic activity and stability under irradiation. Both mutations caused a significant decrease in activity, but it was still possible to follow the effect of mutations on the key steps of the reaction mechanism. Phe41 can be considered a nonpolar barrier separating histidine residues in the active center and providing a firm noncovalent binding with the highly hydrophobic porphyrin ring. The replacement of Phe41 with the ionizable His residue destabilizes the enzyme. The Phe143-->Glu replacement creates a negative charge at the entrance of the heme-binding pocket, and protects the latter from both donor substrates and free radicals. The radiolytic inactivation of the wild-type and mutant forms of recombinant HRP suggested different binding sites for iodide, 2,2'-bis(3-ethylbenzothiasoline-6-sulfonate (ABTS), guaiacol, and O-phenylene diamine. The study of kinetics and inactivation is in agreement with the direct binding of iodide to the heme porphyrin ring. The results also suggest that the ABTS binding site is less accessible than that for O-phenylene diamine.
将活性中心发生取代的两种辣根过氧化物酶C(HRPC)突变体,即苯丙氨酸41(Phe41)突变为组氨酸(His)以及苯丙氨酸143(Phe143)突变为谷氨酸(Glu),与在大肠杆菌中表达的野生型重组酶在酶活性和辐射稳定性方面进行了比较。两种突变均导致活性显著降低,但仍有可能追踪突变对反应机制关键步骤的影响。苯丙氨酸41可被视为一个非极性屏障,它分隔了活性中心的组氨酸残基,并与高度疏水的卟啉环形成牢固的非共价结合。用可电离的组氨酸残基取代苯丙氨酸41会使酶不稳定。苯丙氨酸143突变为谷氨酸在血红素结合口袋入口处产生了一个负电荷,并保护其免受供体底物和自由基的影响。重组辣根过氧化物酶野生型和突变型的辐射失活表明,碘化物、2,2'-双(3-乙基苯并噻唑啉-6-磺酸盐)(ABTS)、愈创木酚和邻苯二胺具有不同的结合位点。动力学和失活研究与碘化物直接结合到血红素卟啉环一致。结果还表明,ABTS的结合位点比邻苯二胺的结合位点更难接近。