Anufrieva N V, Morozova E A, Revtovich S V, Bazhulina N P, Timofeev V P, Tkachev Ya V, Faleev N G, Nikulin A D, Demidkina T V
Engelhardt Institute of Molecular Biology of the Russian Academy of Sciences, Moscow, 119991 Russia.
Nesmeyanov Institute of Organoelement Compounds of the Russian Academy of Sciences, Moscow, 119991 Russia.
Acta Naturae. 2022 Apr-Jun;14(2):50-61. doi: 10.32607/actanaturae.11242.
Serine 339 of the active site of methionine γ-lyase (MGL) is a conserved amino acid in most pyridoxal 5'-phosphate-dependent enzymes of the cystathionine β-lyase subclass, to which MGL belongs. The reaction mechanism of the MGL-catalyzed γ-elimination reaction is poorly explored. We replaced serine 339 with alanine using site-directed mutagenesis. The replacement of serine 339 with alanine led to a significant (by two orders of magnitude) decrease in efficiency in the catalysis of the γ- and β-elimination reactions by the mutant form of the enzyme. The exchange rates of the C-α- and C-β-protons in the amino acids in complexes consisting of the enzyme and competitive inhibitors decreased by one-two orders of magnitude. The spectral characteristics of the mutant form indicated that the replacement did not lead to significant changes in the conformation and tautomerism of MGL internal aldimine. We crystallized the holoenzyme and determined its spatial structure at 1.7 E resolution. The replacement of serine 339 with alanine did not affect the overall course of the polypeptide chain of the MGL subunit and the tetrameric enzyme structure. An analysis of the obtained kinetic and spectral data, as well as the known spatial structures of MGL, indicates that serine 339 is necessary for efficient catalysis of γ- and β-elimination reactions at the stage of C-α-proton abstraction from the external aldimine, the γ-elimination reaction at the stages of coenzyme C4'-atom protonation, and C-β-proton abstraction from a ketimine intermediate.
甲硫氨酸γ-裂解酶(MGL)活性位点的丝氨酸339在MGL所属的胱硫醚β-裂解酶亚类的大多数磷酸吡哆醛依赖性酶中是一个保守氨基酸。MGL催化的γ-消除反应的反应机制尚未得到充分研究。我们使用定点诱变将丝氨酸339替换为丙氨酸。用丙氨酸替换丝氨酸339导致该酶突变形式催化γ-和β-消除反应的效率显著降低(降低了两个数量级)。由酶和竞争性抑制剂组成的复合物中氨基酸的C-α-和C-β-质子交换速率降低了一到两个数量级。突变形式的光谱特征表明,这种替换并未导致MGL内部醛亚胺的构象和互变异构发生显著变化。我们使全酶结晶,并在1.7埃分辨率下确定了其空间结构。用丙氨酸替换丝氨酸339并不影响MGL亚基的多肽链的整体走向以及四聚体酶的结构。对所获得的动力学和光谱数据以及已知的MGL空间结构的分析表明,丝氨酸339对于在从外部醛亚胺夺取C-α-质子阶段高效催化γ-和β-消除反应、在辅酶C4'-原子质子化阶段的γ-消除反应以及从酮亚胺中间体夺取C-β-质子是必需的。