Structural and Kinetic Analysis of Schwanniomyces occidentalis Invertase Reveals a New Oligomerization Pattern and the Role of Its Supplementary Domain in Substrate Binding

被引:67
作者
Alvaro-Benito, Miguel [2 ]
Polo, Aitana [1 ]
Gonzalez, Beatriz [1 ]
Fernandez-Lobato, Maria [2 ]
Sanz-Aparicio, Julia [1 ]
机构
[1] CSIC, Inst Quim Fis Rocasolano, Grp Cristalog Macromol & Biol Estruct, Madrid 28006, Spain
[2] Univ Autonoma Madrid, CSIC, Ctr Biol Mol Severo Ochoa, Dept Biol Mol, E-28049 Madrid, Spain
关键词
CRYSTAL-STRUCTURE; SACCHAROMYCES-CEREVISIAE; BETA-FRUCTOSIDASE; ALPHA-AMYLASE; PROTEIN; EXPRESSION; PURIFICATION; YEAST; GLYCOSYLATION; ENZYMES;
D O I
10.1074/jbc.M109.095430
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Schwanniomyces occidentalis invertase is an extracellular enzyme that hydrolizes sucrose and releases beta-fructose from various oligosaccharides and essential storage fructan polymers such as inulin. We report here the three-dimensional structure of Sw. occidentalis invertase at 2.9 angstrom resolution and its complex with fructose at 1.9 angstrom resolution. The monomer presents a bimodular arrangement common to other GH32 enzymes, with an N-terminal 5-fold beta-propeller catalytic domain and a C-terminal beta-sandwich domain for which the function has been unknown until now. However, the dimeric nature of Sw. occidentalis invertase reveals a unique active site cleft shaped by both subunits that may be representative of other yeast enzymes reported to be multimeric. Binding of the tetrasaccharide nystose and the polymer inulin was explored by docking analysis, which suggested that medium size and long substrates are recognized by residues from both subunits. The identified residues were mutated, and the enzymatic activity of the mutants against sucrose, nystose, and inulin were investigated by kinetic analysis. The replacements that showed the largest effect on catalytic efficiency were Q228V, a residue putatively involved in nystose and inulin binding, and S281I, involved in a polar link at the dimer interface. Moreover, a significant decrease in catalytic efficiency against inulin was observed in the mutants Q435A and Y462A, both located in the beta-sandwich domain of the second monomer. This highlights the essential function that oligomerization plays in substrate specificity and assigns, for the first time, a direct catalytic role to the supplementary domain of a GH32 enzyme.
引用
收藏
页码:13930 / 13941
页数:12
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