Brzozowski A M, Davies G J
Department of Chemistry, University of York, Heslington, York YO1 5DD, England.
Biochemistry. 1997 Sep 9;36(36):10837-45. doi: 10.1021/bi970539i.
The three-dimensional structure of the Aspergillus oryzae alpha-amylase (TAKA-amylase), in complex with the inhibitor acarbose, has been determined by X-ray crystallography at a resolution of 1. 98 A. The tetrasaccharide inhibitor is present as a hexasaccharide presumably resulting from a transglycosylation event. The hexasaccharide occupies the -3 to +3 subsites of the enzyme, consistent with the known number of subsites determined by kinetic studies, with the acarbose unit itself in the -1 to +3 subsites of the enzyme. The transition state mimicking unsaturated pseudo-saccharide occupies the -1 subsite as expected and is present in a distorted 2H3 half-chair conformation. Careful refinement plus extremely well-resolved unbiased electron density suggest that the hexasaccharide represents a genuine transglycosylation product, but the possibility that this apparent species results from an overlapping network of tetrasaccharides is also discussed. Catalysis by alpha-amylase involves the hydrolysis of the alpha-1,4 linkages in amylose with a net retention of the anomeric configuration, via a double-displacement mechanism, as originally outlined by Koshland [Koshland, D. E. (1953) Biol. Rev. 28, 416-336]. The enzymatic acid/base and nucleophile, residues Glu230 and Asp206, respectively, are appropriately positioned for catalysis in this complex, and the hexasaccharide species allows mapping of all the noncovalent interactions between protein and ligand through the enzyme's six subsites.
米曲霉α-淀粉酶(TAKA淀粉酶)与抑制剂阿卡波糖复合物的三维结构已通过X射线晶体学在1.98埃的分辨率下确定。四糖抑制剂以六糖形式存在,推测是转糖基化事件的结果。六糖占据酶的-3至+3亚位点,与动力学研究确定的已知亚位点数量一致,阿卡波糖单元本身位于酶的-1至+3亚位点。模拟过渡态的不饱和假糖按预期占据-1亚位点,并以扭曲的2H3半椅构象存在。仔细的精修加上分辨率极高的无偏电子密度表明,六糖代表真正的转糖基化产物,但也讨论了这种明显的物种是由四糖重叠网络产生的可能性。α-淀粉酶的催化作用涉及直链淀粉中α-1,4键的水解,通过双置换机制,端基构型净保留,这是Koshland最初概述的[Koshland, D. E. (1953) Biol. Rev. 28, 416 - 336]。酶促酸碱和亲核试剂,分别为Glu230和Asp206残基,在该复合物中处于适合催化的位置,并且六糖物种允许通过酶的六个亚位点绘制蛋白质与配体之间所有的非共价相互作用。