Wiegand G, Epp O, Huber R
Max-Planck-Institut für Biochemie, Martinsried, F.R.G.
J Mol Biol. 1995 Mar 17;247(1):99-110. doi: 10.1006/jmbi.1994.0125.
The crystal structure of the complex formed between the 498 amino acid residue porcine pancreatic alpha-amylase (PPA) and the 74 amino acid residue inhibitor Tendamistat secreted from Streptomyces tendae, has been determined by multiple isomorphous replacement in a crystal of space group P6(5)22 (a = b = 77.7 A, c = 359.5 A). The model has been refined to an R-factor of 0.194 by Powell minimization applying strong energy constraints based on 17,964 independent reflections in the 7 to 2.5 A resolution range, and obeys standard geometry within 0.011 A in bond lengths and 1.78 degrees in bond angles. The final model consists of all 496 amino acid residues of PPA, 71 amino acid residues of Tendamistat (without the three N-terminal residues), one calcium ion, one chloride ion and 167 water molecules. PPA exhibits the same topological fold in the complex as the uncomplexed PPA recently published by others. About 30% of the water-accessible surface of Tendamistat is in contact with PPA. Four segments of the polypeptide chain, with a total of 15 amino acid residues, are involved in the binding. One segment containing the staggered side-chains of the triplet Trp18, Arg19, Tyr20, typical for this class of inhibitors, binds into the catalytic site. The other segments fill out the groove in the PPA molecule, which also binds the carbohydrate inhibitor acarbose and is assumed to be the substrate-binding region. This extended interaction between Tendamistat and alpha-amylase explains the very high inhibition constant of about 9 x 10(-12) M.
已通过在空间群P6(5)22(a = b = 77.7 Å,c = 359.5 Å)的晶体中进行多同晶置换,确定了由498个氨基酸残基的猪胰α-淀粉酶(PPA)与天蓝色链霉菌分泌的74个氨基酸残基的抑制剂腱糖胺形成的复合物的晶体结构。通过Powell最小化方法,基于7至2.5 Å分辨率范围内的17,964个独立反射,应用强能量约束,将模型精修至R因子为0.194,且键长在0.011 Å内、键角在1.78°内符合标准几何结构。最终模型包含PPA的所有496个氨基酸残基、腱糖胺的71个氨基酸残基(不含三个N端残基)、一个钙离子、一个氯离子和167个水分子。PPA在复合物中的拓扑折叠与其他人最近发表的未结合PPA相同。腱糖胺约30% 的可及水表面与PPA接触。多肽链的四个片段,共15个氨基酸残基,参与结合。包含此类抑制剂典型的三联体Trp18、Arg19、Tyr20交错侧链的一个片段,结合到催化位点。其他片段填充PPA分子中的凹槽,该凹槽也结合碳水化合物抑制剂阿卡波糖,被认为是底物结合区域。腱糖胺与α-淀粉酶之间的这种广泛相互作用解释了约9×10⁻¹² M的极高抑制常数。