Morishita Y, Hasegawa K, Matsuura Y, Katsube Y, Kubota M, Sakai S
Institute for Protein Research, Osaka University, Suita, Japan.
J Mol Biol. 1997 Apr 4;267(3):661-72. doi: 10.1006/jmbi.1996.0887.
The three-dimensional structure of an exo-type alpha-amylase from Pseudomonas stutzeri which degrades starch from its non-reducing end to produce maltotetraose has been determined by X-ray structure analysis. The catalytic domain of this enzyme (G4-2), whose structure was determined, is a product of spontaneous limited proteolysis in culture broth. It has 429 amino acid residues and a molecular mass of 47,200, and crystallizes in ammonium sulfate solution at pH 7.5. The structure was elucidated by the multiple isomorphous replacement method and refined at 2.0 A resolution, resulting in a final R-factor of 0.178 for significant reflections with a root-mean-square deviation from ideality in bond distances of 0.013 A. The polypeptide chain of this molecule folds into three domains; the first with a (beta/alpha)8 barrel structure, the second with an excursed part from the first one, and the third with five-stranded antiparallel beta-sheets. The active cleft is formed on the C-terminal side of the beta-sheets in the (beta/alpha)8 barrel as in the known endo-type alpha-amylases. A histidine side-chain nitrogen ND1 is coordinated to one of the bound calcium ion. The recognition site of the non-reducing end of the amylose that determines exo-wise degradation is presumed to be at one end of this cleft where there is a disordered loop consisting of the 66th to 72nd residues, and a loop carrying an aspartic acid (Asp160). These structural features may be responsible for the binding of the non-reducing end of the substrate amylose.
已通过X射线结构分析确定了来自施氏假单胞菌的一种外切型α-淀粉酶的三维结构,该酶从淀粉的非还原端降解淀粉以产生麦芽四糖。已确定其结构的该酶催化结构域(G4-2)是在培养液中自发有限蛋白酶解的产物。它有429个氨基酸残基,分子量为47,200,在pH 7.5的硫酸铵溶液中结晶。通过多同晶置换法阐明了该结构,并在2.0 Å分辨率下进行了精修,对于显著反射,最终R因子为0.178,键长与理想值的均方根偏差为0.013 Å。该分子的多肽链折叠成三个结构域;第一个具有(β/α)8桶状结构,第二个从第一个结构域延伸出一部分,第三个具有五股反平行β-折叠片。如已知的内切型α-淀粉酶一样,活性裂隙在(β/α)8桶状结构中β-折叠片的C端侧形成。一个组氨酸侧链氮ND1与结合的钙离子之一配位。推测决定外切降解的直链淀粉非还原端的识别位点在该裂隙的一端,此处有一个由第66至72个残基组成的无序环,以及一个携带天冬氨酸(Asp160)的环。这些结构特征可能负责底物直链淀粉非还原端的结合。