Rotrekl V, Nejedlá E, Kucera I, Abdallah F, Palme K, Brzobohatý B
Institute of Biophysics, Academy of Sciences of the Czech Republic, Brno, Czech Republic.
Eur J Biochem. 1999 Dec;266(3):1056-65. doi: 10.1046/j.1432-1327.1999.00948.x.
The maize Zm-p60.1 gene encodes a beta-glucosidase that can release active cytokinins from their storage forms, cytokinin-O-glucosides. Mature catalytically active Zm-p60.1 is a homodimer containing five cysteine residues per a subunit. Their role was studied by mutating them to alanine (A), serine (S), arginine (R) or aspartic acid (D) using site-directed mutagenesis, and subsequent heterologous expression in Escherichia coli. All substitutions of C205 and C211 resulted in decreased formation and/or stability of the homodimer, manifested as accumulation of high levels of monomer in the bacterial expression system. Examination of urea- and glutathione-induced dissociation patterns of the homodimer to the monomers, HPLC profiles of hydrolytic fragments of reduced and oxidized forms, and a homology-based three-dimensional structural model revealed that an intramolecular disulfide bridge formed between C205 and C211 within the subunits stabilized the quaternary structure of the enzyme. Mutating C52 to R produced a monomeric enzyme protein, too. No detectable effects on homodimer formation were apparent in C170 and C479 mutants. Given the Km values for C170A/S mutants were equal to that for the wild-type enzyme, C170 cannot participate in enzyme-substrate interactions. Possible indirect effects of C170A/S mutations on catalytic activity of the enzyme were inferred from slight decreases in the apparent catalytic activity, k'cat. C170 is located on a hydrophobic side of an alpha-helix packed against hydrophobic amino-acid residues of beta-strand 4, indicating participation of C170 in stabilization of a (beta/alpha)8 barrel structure in the enzyme. In C479A/D/R/S mutants, Km and k'cat were influenced more significantly suggesting a role for C479 in enzyme catalytic action.
玉米Zm-p60.1基因编码一种β-葡萄糖苷酶,该酶可从其储存形式细胞分裂素-O-葡萄糖苷中释放出活性细胞分裂素。成熟的具有催化活性的Zm-p60.1是一种同型二聚体,每个亚基含有五个半胱氨酸残基。通过定点诱变将它们突变为丙氨酸(A)、丝氨酸(S)、精氨酸(R)或天冬氨酸(D),并随后在大肠杆菌中进行异源表达,以此来研究它们的作用。C205和C211的所有取代均导致同型二聚体的形成和/或稳定性降低,表现为细菌表达系统中高水平单体的积累。对同型二聚体向单体的尿素和谷胱甘肽诱导解离模式、还原型和氧化型水解片段的高效液相色谱图谱以及基于同源性的三维结构模型的研究表明,亚基内C205和C211之间形成的分子内二硫键稳定了该酶的四级结构。将C52突变为R也产生了单体酶蛋白。在C170和C479突变体中,未观察到对同型二聚体形成有明显影响。鉴于C170A/S突变体的Km值与野生型酶相等,C170不能参与酶-底物相互作用。从表观催化活性k'cat的轻微降低推断出C170A/S突变对该酶催化活性可能存在间接影响。C170位于与β链4的疏水氨基酸残基堆积的α螺旋的疏水一侧,表明C170参与了该酶中(β/α)8桶状结构的稳定。在C479A/D/R/S突变体中,Km和k'cat受到的影响更为显著,表明C479在酶催化作用中发挥作用。