Przylas I, Terada Y, Fujii K, Takaha T, Saenger W, Sträter N
Institut für Chemie-Kristallographie, Freie Universität Berlin, Germany.
Eur J Biochem. 2000 Dec;267(23):6903-13. doi: 10.1046/j.1432-1033.2000.01790.x.
As a member of the alpha-amylase superfamily of enzymes, amylomaltase catalyzes either the transglycosylation from one alpha-1,4 glucan to another or an intramolecular cyclization. The latter reaction is typical for cyclodextrin glucanotransferases. In contrast to these enzymes, amylomaltase catalyzes the formation of cyclic glucans with a degree of polymerization larger than 22. To characterize the factors that determine the size of the synthesized cycloamyloses, we have analyzed the X-ray structure of amylomaltase from Thermus aquaticus in complex with the inhibitor acarbose, a maltotetraose derivative, at 1.9 A resolution. Two acarbose molecules are bound to the enzyme, one in the active site groove at subsite -3 to +1 and a second one approximately 14 A away from the nonreducing end of the acarbose bound to the catalytic site. The inhibitor bound to the catalytic site occupies subsites -3 to +1. Unlike the situation in other enzymes of the alpha-amylase family, the inhibitor is not processed and the inhibitory cyclitol ring of acarbose, which mimicks the half chair conformation of the transition state, does not bind to catalytic subsite -1. The minimum ring size of cycloamyloses produced by this enzyme is proposed to be determined by the distance of the specific substrate binding sites at the active site and near Tyr54 and by the size of the 460s loop. The 250s loop might be involved in binding of the substrate at the reducing end of the scissile bond.
作为α-淀粉酶超家族酶的一员,淀粉麦芽糖酶催化从一种α-1,4-葡聚糖到另一种葡聚糖的转糖基化反应或分子内环化反应。后一种反应是环糊精葡糖基转移酶的典型反应。与这些酶不同的是,淀粉麦芽糖酶催化形成聚合度大于22的环状葡聚糖。为了表征决定合成环糊精大小的因素,我们以1.9埃的分辨率分析了嗜热栖热菌淀粉麦芽糖酶与抑制剂阿卡波糖(一种麦芽四糖衍生物)复合物的X射线结构。两个阿卡波糖分子与该酶结合,一个在亚位点-3至+1的活性位点凹槽中,另一个与结合在催化位点的阿卡波糖的非还原端相距约14埃。结合在催化位点的抑制剂占据亚位点-3至+1。与α-淀粉酶家族的其他酶不同,该抑制剂未被处理,且阿卡波糖的抑制性环醇环(模拟过渡态的半椅构象)不与催化亚位点-1结合。该酶产生的环糊精的最小环大小被认为由活性位点以及靠近Tyr54处的特定底物结合位点的距离和460s环的大小决定。250s环可能参与底物在可裂解键还原端的结合。