Department of Molecular Biology and Biochemistry, The University of California, Irvine, California 92697-3900, USA.
Biochemistry. 2010 Apr 13;49(14):3101-15. doi: 10.1021/bi902183w.
Further refinement of the model using maximum likelihood procedures and reevaluation of the native electron density map has shown that crystals of pig pancreatic alpha-amylase, whose structure we reported more than 15 years ago, in fact contain a substantial amount of carbohydrate. The carbohydrate fragments are the products of glycogen digestion carried out as an essential step of the protein's purification procedure. In particular, the substrate-binding cleft contains a limit dextrin of six glucose residues, one of which contains both alpha-(1,4) and alpha-(1,6) linkages to contiguous residues. The disaccharide in the original model, shared between two amylase molecules in the crystal lattice, but also occupying a portion of the substrate-binding cleft, is now seen to be a tetrasaccharide. There are, in addition, several other probable monosaccharide binding sites. Furthermore, we have further reviewed our X-ray diffraction analysis of alpha-amylase complexed with alpha-cyclodextrin. alpha-Amylase binds three cyclodextrin molecules. Glucose residues of two of the rings superimpose upon the limit dextrin and the tetrasaccharide. The limit dextrin superimposes in large part upon linear oligosaccharide inhibitors visualized by other investigators. By comprehensive integration of these complexes we have constructed a model for the binding of polysaccharides having the helical character known to be present in natural substrates such as starch and glycogen.
进一步使用最大似然程序对模型进行细化,并重新评估天然电子密度图,结果表明,我们在 15 年前报道的猪胰腺α-淀粉酶晶体实际上含有大量碳水化合物。碳水化合物片段是糖原为蛋白质纯化过程的一个必要步骤进行消化的产物。特别是,底物结合裂隙包含一个含有六个葡萄糖残基的极限糊精,其中一个与相邻残基既有α-(1,4)和α-(1,6)连接。在原始模型中,位于晶格中两个淀粉酶分子之间的二糖,但也占据了一部分底物结合裂隙,现在被认为是四糖。此外,还有其他几个可能的单糖结合位点。此外,我们还进一步回顾了我们对与α-环糊精结合的α-淀粉酶的 X 射线衍射分析。α-淀粉酶结合三个环糊精分子。两个环的葡萄糖残基叠加在极限糊精和四糖上。限制糊精在很大程度上与其他研究人员观察到的线性低聚糖抑制剂重合。通过这些复合物的综合整合,我们构建了一个具有螺旋特征的多糖结合模型,这种特征存在于天然底物如淀粉和糖原中。