Kulikova V V, Zakomirdina L N, Bazhulina N P, Dementieva I S, Faleev N G, Gollnick P D, Demidkina T V
Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Moscow, 119991, Russia.
Biochemistry (Mosc). 2003 Nov;68(11):1181-8. doi: 10.1023/b:biry.0000009131.78603.8b.
In the spatial structure of tryptophanase from Proteus vulgaris the guanidinium group of arginine 226 forms a salt bridge with the 3;-oxygen atom of the coenzyme. The replacement of arginine 226 with alanine using site-directed mutagenesis reduced the affinity of the coenzyme for the protein by one order of magnitude compared to the wild-type enzyme. The catalytic activity of the mutant enzyme in the reaction with L-tryptophan was reduced 10(5)-fold compared to the wild-type enzyme. The rates of the reactions with some other substrates decreased 10(3)-10(4)-fold. The mutant enzyme catalyzed exchange of the C-alpha-proton in complexes with some inhibitors with rates reduced 10(2)-fold compared to the wild-type enzyme. Absorption and circular dichroism spectra of the mutant enzyme and the enzyme-inhibitor complexes demonstrate that the replacement of arginine 226 with alanine does not significantly affect the tautomeric equilibrium of the internal aldimine, but it leads to an alteration of the optimal conformation of the coenzyme-substrate intermediates.
在普通变形杆菌色氨酸酶的空间结构中,精氨酸226的胍基与辅酶的3'-氧原子形成盐桥。通过定点诱变将精氨酸226替换为丙氨酸后,与野生型酶相比,辅酶对该蛋白质的亲和力降低了一个数量级。与野生型酶相比,突变酶在与L-色氨酸反应中的催化活性降低了10^5倍。与其他一些底物反应的速率降低了10^3 - 10^4倍。突变酶催化与某些抑制剂形成的复合物中α-碳原子上质子的交换,与野生型酶相比,速率降低了10^2倍。突变酶以及酶-抑制剂复合物的吸收光谱和圆二色光谱表明,将精氨酸226替换为丙氨酸不会显著影响内部醛亚胺的互变异构平衡,但会导致辅酶-底物中间体的最佳构象发生改变。